CN100565062C - Be used to prepare the technology of lyophilised material - Google Patents

Be used to prepare the technology of lyophilised material Download PDF

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Publication number
CN100565062C
CN100565062C CNB2005800446793A CN200580044679A CN100565062C CN 100565062 C CN100565062 C CN 100565062C CN B2005800446793 A CNB2005800446793 A CN B2005800446793A CN 200580044679 A CN200580044679 A CN 200580044679A CN 100565062 C CN100565062 C CN 100565062C
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China
Prior art keywords
penetration device
penetrable region
container
penetration
bottle
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Expired - Fee Related
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CNB2005800446793A
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CN101087985A (en
Inventor
J·蒂利
C·范德卡西里
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GlaxoSmithKline Biologicals SA
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Anticorrosion Technology Co
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Publication of CN101087985A publication Critical patent/CN101087985A/en
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Abstract

A kind of technology that is used to prepare lyophilised material (111), provide and have penetrable big envelope and in carrier fluid (17), hold this container of material (10), utilizing thus provides the penetration device (20) of the conduit that runs through big envelope to penetrate penetrable region (14), and carrier fluid evaporates container (10) through conduit, after this extracts penetration device (20) out.The device that is suitable for carrying out this technology is also disclosed.

Description

Be used to prepare the technology of lyophilised material
Technical field
The present invention relates to a kind of device of the technology of lyophilised material being provided and being used for this technology of being used to.
Background technology
Freeze drying is a well-known technology in pharmacy and the vaccine industry, wherein the dispersion (for example solution or suspension) of the material in the carrier fluid (normally water) is freezed, be subjected to hypotensive effect subsequently, so that the liquid evaporation, the distillation of for example carrying out from the frozen state to the gaseous state changes.This technology makes draws back the water that is included in the material so that material is more stable at ambient temperature and thereby be convenient to its preservation and become possibility.A kind of typical freeze drying process is disclosed in EP-A-0 048194.
Normally, dispersion is contained in the container of bottle normally, and this container is subjected to hypotensive effect makes liquid to evaporate through vessel port, for example through the uncovered mouth of bottle.It is known that bottle is closed thing, and it can cooperate with the bottle mouth at first upper position, stays to be used for the ventilating opening that evaporating liquid is overflowed, and be moved down into the second place so that sealed vial when freeze drying process is finished.Usually, closing bottle that thing is in the overdraught position becomes two-dimensional array to be configured on the shelf so that freeze and be subjected to hypotensive effect subsequently.A plurality of shelves vertically stack each other, and the bottle of the downside of last shelf on following shelf closed above the thing, and when freeze drying process is finished, and last shelf drops to closing on the thing of bottle on the shelf of tight below, is pushed into down the closed position so that will close thing.
The device of carrying out many types of freeze drying process on this container is known, generally include when container can hermetically closing during in inside and within it portion can keep the suitable temperature and the chamber of step-down state.
In WO-A-04/018317, disclose a kind of have close thing but and the unexposed bottle that is used for the particular type of freeze drying process.
Use some problem of the known freeze drying process of above-described bottle to be that the mouth shape opening of these known bottles and ventilating opening offer an opportunity for entering at dispersion of materials body introducing bottle after stain thing, for example are loaded in the process in the stage on the shelf that is suitable for freeze drying plant and these bottles is sent to freeze drying plant at the follow-up bottle that will hold dispersion.
As hereinafter disclosed, the objective of the invention is to address these problems, and further advantage is provided.
Summary of the invention
In first aspect, the invention provides a kind of technology that is used to prepare lyophilised material, comprising:
The container that is fettered and comprised the dispersion of materials body by the big envelope with penetrable region in carrier fluid is provided,
Utilize penetration device to penetrate penetrable region and make penetration device provide to run through the conduit of big envelope so that when penetration device penetrates penetrable region, between the inboard of container and the outside, provide connection,
Through conduit carrier fluid is evaporated container,
Extract penetration device out from penetrable region.
This technology can be carried out in the following manner: the container that is fettered and comprised the dispersion of materials body by the big envelope with penetrable region in carrier fluid is provided, utilizing penetration device to penetrate penetrable region makes penetration device provide to run through the conduit of big envelope so that provide connection between the inboard of container and the outside when penetration device penetrates penetrable region, through conduit carrier fluid is evaporated container, extract penetration device out from penetrable region subsequently.
Container can be the bottle of being made by glass or plastic material with mouth shape opening, for example typical pharmacy bottle, mouth shape opening is for example closed thing by the elastomer that inserts mouth shape opening and is closed, and penetrable region can comprise that this elastomer closes certain zone of thing.In this structure, bottle comprises described big envelope with the combination of closing thing.
Can carrier fluid be evaporated container through conduit by general normal freeze-drying condition, for example dispersion be remained on the solidification point of carrier fluid, and apply the feasible liquid that freezes of step-down directly from the solid-state gaseous state that is sublimate into.Suitable temperature and pressure-lowering condition are for example disclosed in the example of EP-A-0 048194.
" penetrate " and the application uses the term of deriving to comprise partial penetration at least, and this term comprises opens the communication passage that runs through penetrable region, for example penetration device from big envelope one surface to another surperficial physical channel, the for example puncture of big envelope and physics division, hole by the penetration device expansion has existed divides the atenuator region of big envelope so that produce the opening that runs through big envelope by penetration device.
Penetrable region can comprise preformed puncturing hole.For example, this puncturing hole that is pre-formed can pass penetrable region and forms by driving puncture mechanism (for example pin).This pin can be be incorporated into hollow catheter needle in the bottle through it by big envelope and dispersion, subsequently pin is extracted out, and follow-up liquid to such introducing cools off and freezes so that carry out freeze drying.For example, this pin can be closed thing by the elastomer of bottle.Normally, owing to close the suitable thickness of the elastomeric material of thing, the flexible nature of closing thing makes elastomeric material close when pin is extracted out, reduces the possibility that pollutant enters bottle through puncturing hole before the hole is sealed so that fully close residual pin hole thus.The advantage that this situation provides is to use catheter needle to insert the liquid into pollutant after the bottle, and to enter the chance Billy of bottle much smaller with the situation of above-mentioned known bottle.In these cases, liquid is introduced and to be closed thing behind the bottle and insert little bottle neck but be in the ventilation state that part is opened wide.Also advantageously, after using this catheter needle to pour into and stay the puncturing hole of closing, can carry out the particulate inspection to bottle by transparent wall, the threat Billy of pollutant is little with known bottle.
Thereby, technology of the present invention comprises abovementioned steps: the container by the big envelope constraint that has penetrable region in it is provided, by making the hollow catheter needle pass big envelope, through this pin dispersion is introduced container, follow-up extraction pin is so that stay residual puncturing hole in closing thing.This catheter needle preferably has the pyramid form point, thereby finds this pin cutting hole on controlled direction.This pyramid form point preferably has three faces, so as on three controlled directions cutting hole.The preferred structure of this catheter needle for example, is disclosed in WO2004/096114.
In WO-A-04/018317, disclose this bottle and closed the appropriate configuration of thing, specifically as among Fig. 6 and disclosed with reference to Fig. 6.This bottle has mouth shape opening and the shutdown system towards the top that is defined by the edge, this shutdown system comprises that shape is defined as and mouth shape opening sealed engagement, have towards the lower surface of bottle inside and towards relative upper surface away from the bottle direction, and the elastomer shut-off block that can be punctured by pin and can engaging with bottle, particularly the edge with mouth shape opening engages, and can be bearing on the upper surface of shut-off block so that shut-off block is remained the clamping part that becomes to close relation with mouth shape opening, this clamping part has the perforate that expose in certain zone of the upper surface that makes shut-off block when clamping part engages with bottle.
In this embodiment, when being punctured in advance by pin as described above, the described zone of exposing that this elastomer is closed thing comprises penetrable region.The advantage of this bottle is and can seals by closing thing, and has aseptic inside, for example by radiosterilization or for example when making with germ-free condition by the disclosed manufacturing process of WO2005/005128.
This optimal process is included in penetration device and extracts the further step that the back sealed or otherwise covered penetrable region out from penetrable region.
On the other hand, the invention provides the device that is applicable to the described technology of the application, comprising:
Can penetrate by the big envelope constraint that has penetrable region in it and in carrier fluid, comprise the penetration device of penetrable region of the container of dispersion of materials body, the conduit that makes when penetrating penetrable region penetration device provide to run through big envelope is so that provide connection between the inboard of container and the outside when penetration device penetrates penetrable region
Make penetration device penetrate the mechanism of penetrable region,
Carrier fluid is evaporated the mechanism of container through conduit,
With the mechanism of penetration device from the penetrable region extraction.
The suitable embodiment of technology, the container that is applicable to this technology and device and the work relationship between them will be described now.
Penetration device is suitable for forming the hole of the penetrable region (elastomer that for example runs through bottle is closed thing) that runs through big envelope or the hole that expansion is pre-existing in.For example, penetration device can provide the conduit that runs through big envelope being shaped on the cross section when penetration device penetrates big envelope.In one embodiment, penetration device can comprise the generally tubular member with the end (for example wedge angle end) that is suitable for penetrating penetrable region.As alternative, penetration device can have one or more recesses so that this conduit is provided at its outer surface between the adjacently situated surfaces of penetration device and penetrable region.Usually, this end generally is angular.For example, penetration device can comprise the member of general conical, for example have open bottom or with its adjacent opening in bottom and the opening adjacent with its summit, hollow taper with conduit of opening that for example connects the summit by penetration device and open bottom, make its summit can penetrate penetrable region and the carrier fluid steam can enter the summit, inner and export by the hollow of taper through conduit.This conduit should have suitable size, flows so that the steam that allows evaporating liquid, promptly is similar to the speed of known freeze drying process to be enough to realizing freeze drying in acceptable time, and these technologies are known to those skilled in the art.In order to realize this situation, usually at its narrowest place, the cross section of conduit should be 1mm at least, preferred 2mm or more.
Conduit can be with infiltration gas but is stopped that the barrier that particulate (particularly microorganism particulate) passes through cooperates, so that reduce the possibility that pollutant enters container thus.This barrier can comprise the thin permeable membrane of for example being made by the aseptic filtration medium.
In first embodiment of technology of the present invention and device, penetration device can be installed on the container, for example on the bottle, make penetration device to move (suitably moving alternately) in external container and the primary importance that do not penetrate penetrable region and penetrate the second place of penetrable region, and preferably return at external container and the primary importance that do not penetrate penetrable region towards penetration device subsequently to penetration device from penetration device.
In a kind of form of this first embodiment, the penetration device that makes up with guide is provided, penetration device can be installed on the container thus.This combination comprises another aspect of the present invention, comprising:
Be suitable for penetrating the penetration device of the penetrable region of container big envelope, provide the conduit that runs through big envelope thus so that when penetration device penetrates penetrable region, between the inboard of container and the outside, provide connection, and
Can be installed in the guide on the container, make penetration device to move to the second place that penetration device penetrates penetrable region so that support penetration device thus, and the primary importance that does not penetrate penetrable region towards penetration device is alternatively returned from the primary importance that penetration device does not penetrate penetrable region.
For example, guide is removably mounted on the container, can support and guide penetration device and carry out this motion.In one embodiment, be specially adapted to above-mentioned general conical penetration device, and especially when container be to have elastomer when closing the bottle of thing, guide can comprise that penetration device can move the roughly cylindrical sleeve or the part sleeve of (suitably moving alternately) therein.
In the preferred structure of the device of in the end mentioning, penetration device and guide can be made into integration by for example plastic material by injection mo(u)lding.In this structure, penetration device can be made at first by one or more thin easily broken one connecting portions with guide and be connected, and penetration device is in primary importance, makes along with penetration device moves towards the second place from primary importance the fracture of connecting portion to take place.
When bottle is among the WO-A-04/018317 during disclosed the above-mentioned type, this guide can utilize clamping part to be installed on the bottle by detachable joint.In WO-A-04/018317 in the bottle of disclosed preferred type, clamping part itself is provided with the mechanism that is used to engage cover, disclosed in Fig. 1 of WO-A-04/018317 is groove 37, and guide can engage in the snap fit mode with this groove.Before preferably the liquid contents in bottle freezes with this detachable guide and container (for example, bottle) engages, (for example, snap fit engages) just is being usually used in becoming frangible under the low temperature of frozen liquid and following the string in freeze drying process because assembling parts.
Can make the end be suitable for penetrating penetrable region contact penetrable region and penetrate it by relatively moving of penetration device and container makes penetration device penetrate penetrable region.If for example penetration device comprises tubular element or the conial vertex with wedge angle end, this can be the moving of bottom-apex axis that is parallel to the longitudinal axis of tubular element or taper.
Produce this moving by applying active force so that on this direction, actuate penetration device to penetration device.As mentioned above, on shelf, become in the two-dimensional array configuration bottle so that be subjected to the effect of step-down, and with a plurality of shelves each other the vertical stacking effect be the common practice in freeze drying field.Thereby, in this technology, apply active force so that the penetration device of primary importance is actuated and can member supporting realized on the penetration device so that actuate penetration device on this direction by become two-dimensional array dispensing containers (for example bottle) on shelf towards second place direction to penetration device.This member can comprise be bearing on the penetration device in case actuate on this direction penetration device vertically above the part of adjacent shelves.In the liquid evaporation process, this member (for example going up shelf) can be bearing on the penetration device so that penetration device is remained on the appropriate location.
Penetration device and/or guide can be cooperated with suitable ventilating mechanisms (for example perforate), make shelf can not hinder the transcatheter outflow of carrier fluid steam with contacting of penetration device.
In the another kind of form of first embodiment, provide the penetration device that itself can be installed on the container (for example bottle) in the position that penetration device penetrates penetrable region (for example the elastomer of bottle is closed thing).
Above the same, this penetration device comprises the member of general conical, and can be made by plastic material by injection mo(u)lding.This penetration device can engage by snap fit and be installed on the container (for example bottle).When bottle is the disclosed the above-mentioned type of WO-A-04/018317, this penetration device can utilize its clamping part to be installed on the bottle by detachable joint, as mentioned above, clamping part itself is provided with the mechanism that is used to engage cover, disclosed in Fig. 1 of WO-A-04/018317 is groove 37, and penetration device can engage in the snap fit mode with this groove.For example this penetration device can comprise the member of the taper of being surrounded by the skirt section of extending to small part on conical lower portion-zenith directions, this skirt section has the snap fit engaging mechanism near the edge away from conical lower portion.The conduit that runs through penetration device cuts out by the barrier film that allows gas but do not allow particulate pollutant to pass through.
Before preferably the liquid in bottle freezes this penetration device is engaged with container (for example bottle), because assembling parts (for example snap fit joint) just is being usually used in becoming easily broken under the low temperature of frozen liquid and following the string in freeze drying process.
During use, the penetration device of this form for example is installed on the bottle by snap fit, and the penetrating projectile gonosome is closed thing makes liquid to evaporate from bottle, usually after becoming freeze solid.Thereby penetration device removes from the state that is fixed on the bottle.For the ease of penetration device is installed on the container, provide erecting tools so that be bearing in the feasible for example snap fit joint that forms on the penetration device.For the ease of removing penetration device, can provide removing tool from container.In a kind of structure, the snap fit features of penetration device can be provided with separating mechanism, and for example removing tool can support thereon so that separate the pivoting lever that snap fit engages.
In second embodiment of technology of the present invention and device, a plurality of containers (for example bottle) can be positioned at following shelf on the surface of top, and vertically adjacent last shelf can comprise a plurality of penetration devices, and last shelf and following shelf can relatively move towards each other, make its penetration device move to the second place that penetration device penetrates penetrable region alternately thus, and get back to the primary importance that penetration device to small part does not penetrate penetrable region from the primary importance that penetration device does not penetrate penetrable region.
Thereby, a kind of device that is specially adapted to second embodiment of this technology is provided, comprise: have the following shelf that is suitable for locating a plurality of containers (for example bottle) on it towards the surface of top, and has a vertical adjacent last shelf that comprises a plurality of penetration devices towards surface below, last shelf and following shelf can relatively move towards each other, make its penetration device move to the second place that penetration device penetrates penetrable region thus, and return alternately to the primary importance that penetration device does not penetrate penetrable region from the primary importance that penetration device does not penetrate penetrable region.
This shelf, following shelf and the penetration device gone up of the device of second embodiment can be made by the material that is suitable for freeze drying process, for example stainless steel.
In a second embodiment, last shelf can be downwards down shelf move, shelf moves perhaps to descend shelf can make progress up, perhaps going up shelf can move down, and shelf can move up down.
For example as described above, in this second embodiment, each penetration device can comprise the member of general conical, its summit is from the lower surface shelf sensing down downwards of last shelf, for example have the opening adjacent and the hollow taper of open bottom with its summit, the steam that makes its summit can penetrate penetrable region and carrier fluid can enter the summit, exports by the hollow inside of taper and through open bottom.This penetration device can be made into integration with last shelf, perhaps can be attached on the shelf.
Second embodiment of this device can comprise a plurality of containers (for example bottle) positions last shelf towards the surface of top thereon, and with this on first shelf vertically adjacent have this towards above the surface comprise shelf on another of a plurality of penetration devices, and this another on shelf can be similar to above-described on shelf move.Shelf itself has the surface towards the top thereon, a plurality of bottles position on another, makes a plurality of such shelves vertical stacking toward each other.
In these two embodiment of device, the weight of last shelf is enough to penetration device remained on and overcomes the second place that the elasticity of closing thing penetrates penetrable region (for example plastics are closed thing), and/or will go up shelf and following shelf keeps together in the evaporation program process.After this, last shelf can be removed vertically relatively with following shelf, makes penetration device move towards primary importance.The elasticity that elastomer is closed thing is tended to actuate penetration device and is left the second place.
When using the weight that goes up shelf that penetration device is remained on the second place that penetrates penetrable region, for example the elastomer elasticity of closing thing is not enough to follow-up penetration device be actuated back primary importance from closing thing, in this case, can provide relatively moves goes up the mechanism that shelf and following shelf are more close and more separate, and this mechanism knownly is used to rise and/or the traditional mechanism of decline shelf.For example, vertically adjacent shelf can be for example spring mechanism by therebetween towards the primary importance elastic biasing.
Be applied to the activity restriction of active force on the penetration device and/or penetration device, the weight that for example is bearing in the last shelf on the penetration device downwards is essential, so that overcome the elasticity of closing thing penetration device is remained on the second place that the penetrating projectile gonosome is closed thing.When for example no longer being bearing in up to last shelf and discharging this active force on the penetration device or when limiting, elasticity is tended to resilience, so that penetration device is upspring from closing thing by increasing the vertical spacing gone up between shelf and the following shelf.Can close thing at elastomer and be in the temperature of reduction and allow to close thing subsequently and when environment temperature warms, increase vertical spacing, perhaps alternatively before the increase vertical spacing, allow to close thing and be warmed to environment temperature.
Make the end be suitable for penetrating penetrable region extract out by penetration device relative to moving of container, penetration device can be extracted out towards primary importance from penetrable region from penetrable region.Can use bottle to close the elasticity of the elastomeric material of thing from the suitable mechanism that penetrable region is extracted out penetration device.
For example, comprising that a plurality of bottles can become two-dimensional array configuration following shelf thereon, and second shelf technology and the device that vertically are arranged on first shelf and can move down, suitable mechanism can comprise the mechanism that last shelf and following shelf are removed.This mechanism can be general habitual in the freeze drying process.
Alternatively, last shelf and following shelf can be towards above-mentioned primary importance biasings.
When technology of the present invention is that dispersion remains under the solidification point of carrier fluid, and under step-down directly with liquid during from the solid-state freeze drying process that is sublimate into gaseous state, the elastomer of closing thing as bottle under the temperature of this reduction elasticity that may become is littler, stops penetration device penetrating projectile gonosome to close the ability of thing.Thereby preferred penetration device penetrated this thing of closing before liquid is freezed by cooling.Can use bottle closes the elasticity of the elastomeric material of thing penetration device is retracted the primary importance that penetration device is in external container and does not extend through penetrable region.This flexible nature of closing thing is tended to close the through hole that is penetrated generation by penetration device, and tends to resilience so that penetration device is ejected from closing thing.The elastomeric material that bottle the is closed thing elasticity that becomes at low temperatures is littler.Thereby when technology of the present invention was above-mentioned freeze drying process, preferably the temperature that allowed to close thing before the extraction penetration device rose towards environment temperature, and preferably rises to environment temperature, made that the elasticity of closing thing is more effective.
When evaporation operation is finished, pass through aseptic atmo, for example air or inert gas enters, pressure in the container turns back to atmospheric pressure (in this application, the term " aseptic " and the term of deriving are meant that the grade with undesirable material (for example microorganism) is reduced to the grade that can receive in lyophilised material (for example medicine or vaccine) field).Preferably before penetration device is extracted out, do like this, make atmosphere to enter container, and close thing resilience so that before closing puncturing hole at the elastomer of bottle through conduit.
Suitably, device comprises that also temperature with carrier fluid is reduced to it and is the temperature of freeze solid.This mechanism comprises wherein can packaging container and penetration device, and suitably encapsulation make the suitable mechanism of penetration device partial penetration penetrable region at least and suitably encapsulation make the refrigeration shell of penetration device from the sealability sealing of the mechanism that penetrable region is extracted out.
Suitably, this device also comprises the mechanism that carrier fluid is evaporated container through conduit.This mechanism can comprise that the traditional vacuum chamber that is used in traditional freeze drying process is so that apply the atmospheric pressure of reduction to the liquid that is in frozen state.
Suitably, this device also comprises when evaporation operation is finished the mechanism that pressure is turned back to atmospheric pressure that enters by aseptic atmo.
Suitably, this device also comprises by form the mechanism that puncturing hole provides penetrable region in big envelope.For example, this mechanism can comprise by big envelope (elastomer that for example passes bottle is closed thing), and can dispersion be filled in the bottle by it, and the hollow catheter needle that can follow-uply take out.This mechanism is with discussed above the same.
Thereby, the preferred sequence of technological operation of the present invention is: at first insert the liquid into container, utilize penetration device to penetrate penetrable region subsequently, reducing the temperature of liquid in container subsequently freezes up to it, the liquid that evaporation is subsequently freezed is so that the freeze drying content, the temperature that allows subsequently to close thing rises towards environment temperature, and pressure is returned towards atmospheric pressure, extracts penetration device subsequently out.
Preferably, in the subsequent step of this technology, the residual pores that runs through penetrable region that is stayed by penetration device is sealed.This can accomplished in various ways.For example, in a kind of mode,, and allow to cool off and fix for example by heating or apply the material of other radiation fusing big envelope (for example bottle is closed thing).This technology is for example disclosed in US-A-2002/0023409 and WO-A-2004/026735.Additional or alternatively, lid mechanism can be attached on the container so that close the position that penetration device has penetrated container.Can use alternative sealing mechanism, for example sealing mechanism (for example liquid substance of sticking patch (patch) or subsequent fixed) is fixed to penetration site.If advantageously use then before seal operation, remove above-mentioned detachable guide from container.This container can by suitable mechanism (conveyer belt) be delivered to can carry out seal operation work station so that the hermetic penetrant position.
After the residual pores that runs through penetrable region that stays by penetration device of sealing,, can engage with bottle so that cover the penetrable region of novel sealing as disclosed cover wherein if container is the bottle of disclosed type among the WO-A-2004/018317.
Suitably, as discussed above, this device also comprises the mechanism that is used to seal the residual pores that runs through penetrable region that is stayed by penetration device, and this can accomplished in various ways.This mechanism can be included in the mechanism of residual pores position guiding laser emission.
Suitably, if container is the bottle of disclosed type among the WO-A-04/018317, this device can comprise cover and bottle so that cover the mechanism of the penetrable region of sealing.
Thereby whole technologies of the present invention can may further comprise the steps:
By the hollow catheter needle being closed thing by elastomer and introducing liquid and the dispersion of materials body in the carrier fluid is incorporated into closed by elastomer in the bottle that thing closes through pin, extracting pin out subsequently so that stay runs through the residual puncturing hole of closing thing;
Utilizing penetration device penetrating projectile gonosome to close thing makes penetration device provide to run through the conduit of big envelope so that provide connection between the container inside and the outside when penetration device penetrates penetrable region;
The temperature that reduces liquid makes liquid be frozen into solid;
By reducing air pressure carrier fluid is evaporated container through conduit;
The temperature that makes elastomer close thing rises towards environment temperature, preferably rises to environment temperature, and preferably utilizes the aseptic atmo bottle inside of pressurizeing again;
Extract penetration device out from penetrable region,
The residual puncturing hole of preferred subsequently sealing.
In aspect another, the invention provides the technology that is applicable to above-described first embodiment or the container of device, has the movable penetration device of installing on it, for example be installed on the bottle, this penetration device can move to the second place that penetration device penetrates penetrable region alternately from the primary importance that penetration device is in outside of containers and does not penetrate penetrable region, make penetration device provide and run through the conduit of big envelope, and preferably return the primary importance that penetration device is in outside of containers and does not penetrate penetrable region so that when penetration device penetrates penetrable region, between the container inside and the outside, provide connection.
In the device of in the end mentioning, penetration device can be described as being used for the same of aforementioned aspect of the present invention, and can be installed on the guide as described above.For example, in being particularly suitable for the embodiment that container is bottle and above-mentioned tubulose or taper penetration device, guide can comprise roughly cylindrical sleeve or the part sleeve that penetration device moves therein alternately.
Suitable and preferable feature with this container that is movably arranged on the penetration device on it is with discussed above the same.
The present invention also provides to use in technology aspect of the present invention first and second and the device has the container that is movably arranged on the penetration device on it.
Description of drawings
Only describe the present invention in the mode of limiting examples now, wherein shown with reference to appended accompanying drawing:
Fig. 1 and Fig. 2 are the bottles with the penetration device that is in first and second positions;
Fig. 3 is whole exemplary process;
Fig. 4 is positioned at following shelf and comprises bottle on the last shelf of penetration device;
Fig. 5 is the schematic diagram according to the configuration of Fig. 4;
Fig. 6 is the schematic diagram according to the alternative configurations of Fig. 4;
Fig. 7 is the perspective view of penetration device and guide combination;
Fig. 8 and Fig. 9 are two cross sectional view of the combination of Fig. 7;
Figure 10, Figure 11 and 12 are mounted in the cross sectional view of the penetration device on the bottle.
The specific embodiment
See figures.1.and.2, shown pharmacy bottle 10 with the longitudinal cross-section, it is the bottle of disclosed type among the WO-A-04/018317.This bottle 10 comprises the roughly column of being made by transparent plastic material 11 with last mouth 12, and this column 11 is closed thing 13 by the elastomer connector with last dome zone 14 and closed.Close thing 13 and remain on appropriate location on the small bottle body 11 by plastic material clamping part 15, clamping part 15 snap fit are on the flange 16 of small bottle body 10.The combination that small bottle body 10 and connector are closed thing 13 comprises the big envelope as the application's indication.
Bottle 10 is contained in and follow-uply is frozen into the aqueous solution 17 that carries out cryodesiccated vaccine material after the solid plug by reducing its temperature.Close thing 13 and have the puncturing hole 18 that connects it fully.Carry out radiosterilization by inside, hollow catheter needle (not shown) is connected close thing 13, solution 17 is incorporated in the bottle 10 by this pin, extract pin out subsequently and solution 17 is incorporated in the bottle 10 in advance so that stay the process of puncturing hole 18 to bottle 10.The elasticity of closing thing 13 is enough to make the elastomeric material of closing thing after pin is extracted out to be bound to together, so that close puncturing hole 18 by the side physics of extruded hole 18.
Penetration device 20 is shown as and is movably arranged on the bottle 10.Penetration device 20 comprises the member of the taper of general hollow, and its summit is pointed to towards the last outer surface of closing thing 13 downwards.The member 20 of taper has the opening 21 that minimum sectional area is about 2mm on its summit, and the inside with open bottom and hollow.The member 20 of taper is movably arranged on the bottle 10 by the member 20 that can move alternately in column guide 30, guide 30 detachably is installed on the clamping part 15 by the snap fit convex shoulder 31 adjacent with its lower end, and snap fit convex shoulder 31 can engage with the groove 19 in the outer surface of clamping part 15.For the ease of mutual move of member 20 in guide 30, member 20 is integrally formed with outer back-up ring 22, and outer back-up ring 22 closely even (close conforming) is slidingly fitted in the guide 30.
Penetration device 20 can be in bottle 10 outsides and moves alternately to the primary importance that small part does not penetrate the penetrable region 14 of closing thing 13 from penetration device shown in Figure 1 20.In this position, penetration device 20 is still in the upper surface of parts 14, and is adjacent with puncturing hole 18.Penetration device 20 can be from summit that this primary importance moves to penetration device shown in Figure 2 20 at least partial penetration close the second place of the penetrable region 14 of thing 12.
Penetration device 20 moves to the second place shown in Figure 2 by the member 40 above the assembly that is positioned at bottle 10, penetration device 20 and guide 30 from primary importance shown in Figure 1.In practice, 10 one-tenth two-dimensional arraies of a plurality of bottles are configured on first shelf 50, and another shelf (not shown) of bottle 10 is and shelf 50 vertical stackings.Member 40 comprises and being bearing on the penetration device 20 so that penetration device 20 is actuated the part of the vertical adjacent shelf of the second place shown in Figure 2.This situation can realize that stand supports them so that realize this situation with certain vertical spacing by shelf 40,50 being loaded into stand (not shown).The back-up ring 22 of penetration device 20 has the top 23 that has the perforate 24 that is communicated with perforate (not shown) in the guide 30 in it.Permeable gas but open bottom setting that the barrier film 25 that stops particulate to pass through is crossed the member 20 of taper.In addition, the upper edge of part 23 can be configured to city shape (castellated).
As appreciable among Fig. 2, when being in this position, the wedge angle apex portion of penetration device 20 is opened elastomer parts tightly adjacent with puncturing hole 18 that puncturing hole 18 and effect close thing by effect and is separated and penetrate the dome top 14 of closing thing 13.These adjacent resilient body parts 110 of internal action towards bottle 10.In position shown in Figure 2, the opening 21 of the member 20 of taper and hollow inside and perforate 24 comprise the conduit between bottle 10 inside and outside.
In configuration shown in Figure 2, the assembly of bottle 10, penetration device 20 and guide 30 has been cooled to solution 17 is held in the temperature of freeze solid and the effect of the atmospheric pressure that reduced subsequently.By the carrier fluid of distillation evaporating liquid 17, its steam stays the wherein vaccine of dissolving via opening 21 and the inside of hollow and the conduit effusion that perforate 24 forms of the member 20 of taper up to the form with freeze drying solid 111.
When freeze drying process is finished, by allowing aseptic gas (for example air) to enter bottle and being pressurizeed again in the inside of bottle 10.
Promote shelf 40 subsequently, promptly rise to the position corresponding with Fig. 1.Utilization is closed the elasticity of the elastomeric material of thing 13 penetration device 20 is retracted the corresponding first location with Fig. 1.The flexible nature of closing thing tends to close the through hole shown in Figure 2 that penetrates generation by penetration device 20, and tends to towards effect penetration device 20 in position shown in Figure 1.Be applied to the active force of penetration device 20 and penetration device 20 remained on the elastomer that runs through shown in Figure 2 and close the position that thing 13 extends by the mobile restriction of 40 pairs of penetration devices 20 of last shelf.When shelf 40 rose away from penetration device 20, this active force and showing discharged, and the elasticity of closing thing 13 bounces back into primary importance shown in Figure 1 with penetration device.Equally, the elasticity physics of closing thing 13 is closed puncturing hole 18.
After this, can pull down guide 30 from bottle 10.Can seal running through the residual pores 18 of closing thing 13, for example this can be by guiding laser radiation beam at puncturing hole 18 so that the processes well known realization of puncture position is fixed and sealed to the material of fusing adjacent resilient body material and follow-up permission fusing.Cover (not shown) can engage with clamping part 15 so that cover the penetrable region 18 of novel sealing subsequently.
The alternative construction of penetration device 20 (not shown) can have except that having the member that the wedge angle summit also has the taper of one or more outer recess (for example groove), when member 20 was in the position corresponding with Fig. 2, this recess forms the carrier fluid of solution 17 between the side of hole 18 and penetration device 20 can be through the conduit of its effusion.
Fig. 3 A schematically illustrates whole technologies to Fig. 3 M.
In Fig. 3 A, shown bottle 10 with the sky of closing thing 13 and clamping part 15, because radiosterilization or aseptic manufacturing, its inside is aseptic.
In Fig. 3 B, catheter needle 60 produces puncturing hole 18 by closing thing 13, and the solution 17 that will carry out cryodesiccated material is introduced bottles 10 through pin 60.
In Fig. 3 C, catheter needle 60 is extracted out from closing thing 13, stays residual puncturing hole 18, and puncturing hole 18 is closed by the adjacent resilient body material of closing thing 13 that rebounds under its elastic reaction.
In Fig. 3 D, penetration device 20, guide 30 and film are assembled.Fig. 3 D has shown to be to comprise that annular frame 32 and following hasp cooperate the guide 30 of the part cylindrical sleeve of leg 33.
In Fig. 3 E and Fig. 3 F, use assembly tool 70 to engage penetration device 20 and guide 30 and the combination of holding the bottle 10 of solution 17.
In Fig. 3 G, assembly tool 70 separates with assembly 20,30, and bottle 10 adds that assembly 20,30 is configured in down on the pallet 50, and top tray 40 is vertical spacing up, and has the array of similar bottle 10 (not shown) on it.Penetration device 20 is still in the top of closing thing 13.
In Fig. 3 H, the same with Fig. 2, shelf 40 descends shelf 50 to descend relatively, and is bearing on the penetration device 20.Penetration device 20 partial penetration is at least closed thing 13, and elastic reaction returns near the elastomeric material of closing thing the puncturing hole 18.
In Fig. 3 I, make shelf 40,50 one-tenth configurations identical with Fig. 3 H, reduce temperature and make solution 17 be freeze solid.
In Fig. 3 J, the atmospheric pressure influence that frozen solution 17 is reduced under the temperature that reduces makes the steam of frozen liquid of solution 17 through penetration device 20 distillations, so that stay the material of dried freeze drying solid 111 forms.
In Fig. 3 K, freeze drying process is finished, and all liq from frozen solution 17 distillation, utilizes aseptic atmo (for example nitrogen) that bottle is pressurizeed again, and the temperature that allows bottle 10 and close thing rises to ambient temperature.Shelf 40 is bearing in position on the penetration device 20 from it promote to make the elasticity of closing thing 13 upwards towards the primary importance penetration device 20 that rebounds.
Fig. 3 G can carry out in general habitual freeze-dryer to the step shown in Fig. 3 K, and the decline of shelf 40 and rise and can carry out by general habitual machine.
In Fig. 3 L, assembly 20,30 separates from bottle 10.Can use extracting tool (not shown) for this reason, and be easily, bottle 10 has the lower flange 112 that the pulling force that makes progress that permission maintaining body (not shown) overcomes this extracting tool holds down bottle.The elasticity of closing thing 13 makes puncturing hole 18 close once more.
In Fig. 3 M, as described above, near the elastomeric material guiding laser beam 80 puncturing hole 18 is so that seal this hole.
As seen from Figure 3, bottle 10 has been filled the back and has been in the freeze drying chamber up to bottle 10, and bottle 10 is never to opening by contaminated environment.As Fig. 3 C, keep puncturing hole 18 to close because close the elasticity of thing 13, can also be at the fume of not fearing to check under the situation about further polluting bottle.
Can use suitable transmission to bring and transport bottle 10, and can use suitable automaton to come assembling parts 20,30 also this assembly to be engaged with bottle 10 by this technology.Piling up of shelf 40,50 can vertically be moved up and down by well known organization, for example with hydraulic way.Parts 20,30 can re-use behind suitable cleaning and disinfection.
Fig. 4 and Fig. 5 have shown technology and the appropriate device of second embodiment.With reference to Fig. 4, a plurality of bottles 10 of disclosed type among the WO-A-04/018317 have been shown.Bottle 10 be positioned at following shelf 41 on the surface 40 of top.The surface 40 is provided with the connector 42 that centers, normally taper, and the respective socket of the bottom of its bottle 10 of packing into is so that fixedly positioning precalculated position on shelf 40 with bottle 10.There is vertically adjacent last shelf 43.Shelf 41,43 is made by metal (for example stainless steel).That extend from the lower surface 44 of last shelf 43 is a plurality of penetration device 45A, 45B, 45C, 45D, 45E.Each penetration device 45A, 45B, 45C, 45D, 45E comprise the member of general conical, and its summit is from lower surface 44 shelf 40 sensings down downwards of last shelf 43.Similar above is described, penetration device 45A, 45B, 45C, 45D and 45E have the hole 46 adjacent with its summit, hollow taper with open bottom, make its summit can penetrate the penetrable region of closing thing 13 of bottle 10 and the steam of carrier fluid can enter the summit, inner and export by the hollow of taper through open bottom.Penetration device 45A, 45B and 45E show with the cross section, so that its structure is described.Penetration device 45A, 45B, 45C, 45D and 45E are made into integration by metal and last shelf.Be positioned at upper surface 47 tops of shelf 43 and contact be allow gas by but the aseptic filtration sheet 48 that stops particulate to pass through, filter 48 itself remains on the appropriate location by the upper plate 49 with perforation perforate corresponding with the position of the open bottom of penetration device 45A-E.In Fig. 4 A, penetration device 4A-4C is in the primary importance of closing thing 13 that penetration device 4A-4C is in bottle 10 outsides and does not penetrate bottle 10.In Fig. 4 A, penetration device 45B, 45C are in the penetration device 20 similar positions with Fig. 3 G.
Fig. 4 B has shown how last shelf 43 descends shelf 41 to move to the second place of closing thing 13 that penetration device 45D penetrates bottle 10 relatively downwards.In this position, the steam that the hollow inside of penetration device 45D allows to freeze carrier fluid through the hole 46 and the open bottom of taper overflow from bottle 10.In Fig. 4 B, penetration device 45D be in Fig. 3 H-Fig. 3 J in penetration device 20 similar positions.
Fig. 4 C has shown how last shelf 43 turns back to penetration device 45E subsequently and be in bottle 10 outsides and do not penetrate the primary importance of closing thing 13.In Fig. 4 B and Fig. 4 C.For clarity, filter 48 and plate 49 have been omitted.In Fig. 4 C, penetration device 45E be in Fig. 3 G in penetration device 20 similar positions.
With reference to Fig. 5, shown the configuration of the following shelf 41 of the bottle 10 that has on it as shown in Figure 4.In Fig. 5 A, last shelf 43 rises, and is so that penetration device 45 is in primary importance, promptly the same with Fig. 4 C with Fig. 4 A.In Fig. 5 B, last shelf 43 is in down position, makes penetration device 45 be in the second place shown in Fig. 4 B.Last shelf and following shelf 41,43 are biased to the second place shown in Fig. 5 A by being positioned at telescopic cylindrical case 51,52 interior springs 50.In Fig. 5 B, spring 50 is in compressive state.In Fig. 4 and configuration shown in Figure 5, bottle 10 can be gone up shelf 43 subsequently and can locate down on the shelf 41 being positioned under the situation that does not have shelf 43 down on the shelf 41. Telescopic spring shell 51,52 help biasing that penetration device 45 is positioned at bottle 10 and overcomes spring 50 along with last shelf 43 down shelf 41 descend and towards bottle 10 guiding penetration devices 45.Last shelf 43 can overcome spring 50 in will freezing the step process that carrier fluid evaporates bottle 10 biasing remains on the position shown in Fig. 5 B by suitable mechanism (for example brake).
With reference to Fig. 6, last shelf 43 have a plurality of bottles 10 with Fig. 4 and surface 60 thereon, the similar mode of Fig. 5 position towards the top.Vertically adjacent with shelf on this 43 have this towards above the surface have shelf 61 on another of a plurality of penetration devices 451. Shelf 43 and 61 is by being positioned at spring 62 in the collapsible tubular shell 63,64 to offset away with the similar mode of Fig. 5.Shelf 61 can move towards shelf 43 downwards similarly with the mode that moves with reference to the described shelf 43 downward shelves 41 down of Fig. 5 as mentioned on this another.On another shelf 61 itself have a plurality of bottles (not shown) can thereon surface 65, position towards the top, make a plurality of such shelves vertical stacking relative to one another.
Fig. 4-configuration shown in Figure 6 can be used for being similar in the technology of Fig. 3.Hold the bottle 10 that will carry out cryodesiccated material solution and can be positioned at down on the shelf 41, last shelf 43 can be located shown in Fig. 4 A and 5A.Subsequently, the biasing that last shelf 43 can for example overcome spring 50 drops to the position shown in Fig. 4 B and Fig. 5 B, and what make that penetration device 45 penetrates bottle 10 closes thing 13.Subsequently, can freeze carrier fluid in the bottle 10 by the influence of being lowered the temperature.Subsequently, the carrier fluid that freezes can evaporate bottle 10 through penetration device 45.Subsequently, can utilize aseptic atmo (for example nitrogen) that bottle 10 is pressurizeed again, and allow its temperature to rise towards environment temperature.Subsequently, shelf 43 makes shelf 43,41 be in the position shown in Fig. 4 C and Fig. 5 A can to descend shelf 41 to raise upward relatively.
Thereby bottle 10 can remove from following shelf 41, and utilizes the residual puncturing hole 18 in the laser beam hermetically closing thing 13 that focuses on as Fig. 3 M.
Fig. 3, Fig. 4, Fig. 5 and technology shown in Figure 6 and device are suitably carried out in sterile enclosure respectively and are located, the temperature of sterile enclosure can be controlled between the solidification point of environment temperature and carrier fluid, and the air pressure of sterile enclosure can be controlled between the atmospheric pressure of environmental pressure and reduction.
With reference to Fig. 7, Fig. 8 and Fig. 9, shown the combination 70 of penetration device 71 and guide 72, in Fig. 8 and 9, be shown as and be installed on the bottle 10.As Fig. 8 with Fig. 9 is clearer sees that penetration device 71 has the member 73 of general conical, the opening 75 that it has hollow inner 74 and is positioned at its summit.The summit of the member of this taper is suitable for penetrating the penetrable region of closing the puncturing hole 18 of thing 13 as the elastomer of bottle 10.The penetrable region of closing thing 80 comprises introduces the residual puncturing hole (not shown) that the catheter needle (not shown) of bottle 81 forms by being used for carrying out cryodesiccated liquid contents (not shown).
Guide 72 comprises that penetration device 71 is installed in roughly cylindrical sleeve wherein.As shown in Figure 8, penetration device 71 is in primary importance, the summit 75 of taper penetration device 73 as institute see that ground points to down, and penetration device 71 does not penetrate closes thing 13, and the summit 75 of penetration device 71 and close thing 13 on have the space of about 0.1mm between (as can be seen) surface.
Penetration device 71 and guide 72 are made into integration by plastic material, and the thin easily broken one connecting portion 76 that is made at first by a plurality of (being shown as six, can be more or less) connects, and penetration device is in primary importance as shown in Figure 8 simultaneously.
As shown in Figure 9, penetration device 71 is similar to be moved towards the second place illustrated in figures 1 and 2ly, makes penetration device 71 penetrate thus and closes thing 13, opens residual puncturing hole 18.The fracture of connecting portion 76 takes place.The liquid contents that in Fig. 8 and Fig. 9, does not show bottle 10.
Penetration device 71 has the upper edge that has with ventilating opening 24 corresponding opening 77 of Fig. 1.Use the resilient fingers 78 that engages with the groove 19 of bottle 10, guide 72 detachably is installed on the bottle 10 by the snap fit connection that is similar to Fig. 1.Be similar to Fig. 1 barrier film 25 can infiltration gas but hinder the open bottom setting that barrier film that particulate passes through is crossed the member 73 of taper.
With reference to Figure 10, Figure 11 and Figure 12, penetration device 100 is shown as on the bottle 10 that is installed in previous shown type.Penetration device 100 comprises with the penetration device of above demonstration similar, and the member 101 of the general conical of being made by plastic material by injection mo(u)lding.Penetration device 100 engages the clamping part 15 that is installed in bottle 10 by snap fit.This snap fit is provided by the skirt section 102 of the member 101 of extension on the bottom-zenith directions of taper and encirclement taper, above the same, the skirt section 102 with snap fit engage finger 103 be with away from the adjacent mechanism in edge of the conical lower portion of the groove engagement of clamping part 15.Run through penetration device taper member 101 conduit 104 by for example as shown in the figure the permission gas of the open bottom of crossing hollow taper inside but the barrier film 108 that do not allow fume to pass through close.Barrier film stops pollutant to enter bottle 10 inside through the conduit 104 of penetration device 100.
As Figure 10, Figure 11 and shown in Figure 12, penetration device 100 penetration device with above similarly the mode elastomer that penetrates bottle 10 position of closing the residual puncturing hole (not shown) of thing 13 be installed on the bottle 10.This installation is finished so that carry out the erecting tools 105 of snap fit joint by being bearing in downwards on the penetration device 100.
Above equally, utilize into the penetration device 100 and the bottle 10 of configuration relation shown in Figure 11, the liquid content of freezing (not shown) in the bottle 10 can evaporate through conduit 104.
When evaporation was finished, penetration device 100 removed from bottle 10.As shown in figure 12, this is to realize by the removing tool on the upwardly extending part that is bearing in pivoting lever 107 106, has shown the operation of its relative finger piece 103, separates snap fit thus and engages.The elasticity of closing thing 13 subsequently can eject penetration device itself and the relation that penetrates of closing thing 13.

Claims (23)

1. method that is used to prepare lyophilised material comprises:
Big envelope constraint with penetrable region and the container that comprises the dispersion of described material in carrier fluid are provided,
Utilize penetration device to penetrate described penetrable region, make described penetration device that the conduit that runs through described big envelope is provided, between the inboard of described container and the outside, provide connection when having penetrated described penetrable region with the described penetration device of box lunch,
Described carrier fluid is evaporated described container through described conduit,
Extract described penetration device out from described penetrable region,
It is characterized in that,
Described penetration device comprises the member of general conical, the member of described general conical has the opening adjacent with its summit, open bottom or the opening adjacent with its bottom and has the conduit that is connected these two openings by described penetration device, the steam that makes its summit can penetrate described penetrable region and described carrier fluid can enter described summit, the inner and output by the hollow of described taper
Described method is carried out in sterile enclosure, and the temperature of described sterile enclosure can be controlled between the solidification point of environment temperature and described carrier fluid, and the air pressure of described sterile enclosure can be controlled between the atmospheric pressure of environmental pressure and reduction.
2. method according to claim 1, it is characterized in that: carry out described method: big envelope constraint with penetrable region and the container that comprises the dispersion of described material in carrier fluid are provided by following steps, utilize described penetration device to penetrate described penetrable region, make described penetration device that the conduit that runs through described big envelope is provided, so that when described penetration device has penetrated described penetrable region, between the inboard of described container and the outside, provide connection, described carrier fluid is evaporated described container through described conduit, extract described penetration device out from described penetrable region subsequently.
3. method according to claim 1 and 2 is characterized in that: described container is a bottle, have by elastomer to close the mouth shape opening that thing is closed, and described penetrable region comprises that this elastomer closes the zone of thing.
4. method according to claim 1 and 2, it is characterized in that: it is to make described carrier fluid freeze by described dispersion being remained on uniform temperature that described carrier fluid is evaporated described container through described conduit, and applies step-down and make described frozen liquid directly from the solid-state gaseous state that is sublimate into.
5. method according to claim 1 and 2 is characterized in that: described penetrable region is included in preformed puncturing hole in the described penetrable region.
6. one kind is applicable to according to the device of any described method in the claim 1 to 5, comprising:
Penetration device, described penetration device can penetrate the penetrable region of big envelope constraint that is wherein had penetrable region and the container of the dispersion that comprises described material in carrier fluid, make described penetration device that the conduit that runs through described big envelope is provided when penetrating described penetrable region, between the inboard of described container and the outside, provide connection when having penetrated described penetrable region with the described penetration device of box lunch
Make described penetration device penetrate the mechanism of described penetrable region,
Make described carrier fluid evaporate the mechanism of described container through described conduit,
With the mechanism of described penetration device from described penetrable region extraction,
It is characterized in that,
Described penetration device comprises the member of general conical, the member of described general conical has the opening adjacent with its summit, open bottom or the opening adjacent with its bottom and has the conduit that is connected these two openings by described penetration device, the steam that makes its summit can penetrate described penetrable region and described carrier fluid can enter described summit, the inner and output by the hollow of described taper
Described device is positioned in the sterile enclosure and carries out, and the temperature of described sterile enclosure can be controlled between the solidification point of environment temperature and described carrier fluid, and the air pressure of described sterile enclosure can be controlled between the atmospheric pressure of environmental pressure and reduction.
7. device according to claim 6, it is characterized in that: described penetration device comprises the generally tubular member with the end that is suitable for penetrating described penetrable region, perhaps be positioned at one or more recesses of its outer surface, so that such conduit is provided between the adjacently situated surfaces of described penetration device and described penetrable region.
8. according to claim 6 or 7 described devices, it is characterized in that: described penetration device can be installed on the described container, make described penetration device to be in described outside of containers and not penetrate the primary importance of described penetrable region, and move to the second place that wherein said penetration device penetrates described penetrable region from wherein said penetration device.
9. device according to claim 8 is characterized in that: described penetration device and guide form combination, and described combination comprises:
Be suitable for penetrating the penetration device of penetrable region of the big envelope of described container, the conduit that runs through described big envelope is provided thus, when having penetrated described penetrable region, between the inboard of described container and the outside, provide connection with the described penetration device of box lunch, and
Can be installed in the guide on the described container, so that support described penetration device thus, make described penetration device to move to the second place that wherein said penetration device penetrates described penetrable region, and the primary importance that does not penetrate described penetrable region towards wherein said penetration device is alternatively returned from the primary importance that wherein said penetration device does not penetrate described penetrable region.
10. device according to claim 9 is characterized in that: described penetration device comprises the member of general conical, and described guide comprises and can move described penetration device therein and can be installed in roughly cylindrical sleeve or part sleeve on the bottle.
11. according to claim 9 or 10 described devices, it is characterized in that: described penetration device and described guide are made integratedly by plastic material, and be made at first by one or more thin easily broken connection of one connecting portions and described penetration devices and be in described primary importance, therefore along with described penetration device moves towards the described second place from described primary importance, the fracture of described connecting portion just takes place.
12. according to claim 6 or 7 described devices, it is characterized in that: have and be suitable for a plurality of containers location following shelf thereon towards the surface of top, and has a vertical adjacent last shelf that comprises a plurality of penetration devices towards the surface of below, described upward shelf and described shelf down relatively move towards each other, make described penetration device move to the second place that wherein said penetration device penetrates described penetrable region alternately from the primary importance that wherein said penetration device does not penetrate described penetrable region thus, and the primary importance that does not penetrate described penetrable region towards wherein said penetration device to small part is alternatively returned.
13. device according to claim 12 is characterized in that: each penetration device comprises the member of general conical respectively, and its summit is pointed to towards described shelf down downwards from the described lower surface of going up shelf.
14. according to any described method in the claim 1 to 5, it is characterized in that: operating sequence is:
At first the described dispersion of materials body in the carrier fluid is incorporated into described container,
Utilize described penetration device to penetrate described penetrable region then,
The fluid temperature that reduces then in the described container freezes up to it,
Evaporate described frozen liquid then so that freeze drying content thus,
Allow described temperature of closing thing to rise subsequently towards environment temperature,
Subsequently pressure is returned towards atmospheric pressure,
Extract described penetration device subsequently out.
15. method according to claim 14 is characterized in that: described container is to have a bottle that elastomer is closed thing, and described penetrable region comprises that the elastomer bottle closes the puncturing hole in the thing, and the further operation that seals described residual puncturing hole.
16. one kind is applicable to according to the device of any described method in the claim 1 to 5, comprises:
Penetration device, described penetration device is suitable for penetrating the penetrable region of container big envelope, and the conduit that runs through described big envelope is provided thus, when having penetrated described penetrable region with the described penetration device of box lunch, provides connection between described container inside and outside, and
Guide, described guide can be installed on the described container, so that support described penetration device therefrom, so that described penetration device can move to the second place that wherein said penetration device penetrates described penetrable region from the primary importance that wherein said penetration device does not penetrate described penetrable region, and the primary importance that does not penetrate described penetrable region towards wherein said penetration device is alternatively returned.
17. device according to claim 16, it is characterized in that: described penetration device comprises generally tubular member with the end that is suitable for penetrating described penetrable region or the one or more recesses that are positioned at its outer surface, so that such conduit is provided between the adjacently situated surfaces of described penetration device and described penetrable region.
18. according to claim 16 or 17 described devices, it is characterized in that: described penetration device comprises the member of general conical, and described guide comprises can moving described penetration device therein and can being installed to have elastomer and cut out roughly cylindrical sleeve or part sleeve on the bottle of thing.
19. according to any described device in the claim 16 to 17, it is characterized in that: described penetration device and described guide are made integratedly by plastic material, and be made at first by one or more thin easily broken connection of one connecting portions and described penetration devices and be in described primary importance, therefore along with described penetration device moves towards the described second place from described primary importance, the fracture of described connecting portion just takes place.
20. one kind is applicable to according to the device in any described method in the claim 1 to 5, it is characterized in that: penetration device is provided, described penetration device itself can described therein penetration device penetrate described container penetrable region the position and be installed on the described container.
21. device according to claim 20 is characterized in that: comprise the member of general conical and can be installed in penetration device on the described container by the snap fit juncture.
22. according to claim 20 or 21 described devices, it is characterized in that: described penetration device comprises the member of the taper of being surrounded by the skirt section of extending to small part on the bottom-zenith directions of described taper, described skirt section have with away from the adjacent snap fit engaging mechanism in the edge of described conical lower portion.
23. one kind is applicable to that described external member comprises device according to the external member in any described method in the claim 1 to 5, described device comprises:
Penetration device, described penetration device can penetrate the penetrable region of big envelope constraint that is wherein had penetrable region and the container of the dispersion that comprises described material in carrier fluid, make described penetration device that the conduit that runs through described big envelope is provided when penetrating described penetrable region, between the inboard of described container and the outside, provide connection when having penetrated described penetrable region with the described penetration device of box lunch
Make described penetration device penetrate the mechanism of described penetrable region,
Make described carrier fluid evaporate the mechanism of described container through described conduit,
With the mechanism of described penetration device from described penetrable region extraction,
It is characterized in that,
Described penetration device comprises the member of general conical, the member of described general conical has the opening adjacent with its summit, open bottom or the opening adjacent with its bottom and has the conduit that is connected these two openings by described penetration device, the steam that makes its summit can penetrate described penetrable region and described carrier fluid can enter described summit, the inner and output by the hollow of described taper
Described external member also comprises sterile enclosure, and the temperature of described sterile enclosure can be controlled between the solidification point of environment temperature and described carrier fluid, and the air pressure of described sterile enclosure can be controlled between the atmospheric pressure of environmental pressure and reduction.
CNB2005800446793A 2004-10-27 2005-10-25 Be used to prepare the technology of lyophilised material Expired - Fee Related CN100565062C (en)

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GB0423861A GB0423861D0 (en) 2004-10-27 2004-10-27 Novel process
GB0501651.4 2005-01-26

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB450147A (en) * 1934-01-31 1936-07-06 Sharp & Dohme Inc Lyophilic biologically active substances
US3810469A (en) * 1972-05-24 1974-05-14 Ampoules Inc Multiple compartment hypodermic devices
US6090083A (en) * 1996-01-31 2000-07-18 Scimed Life Systems, Inc. Low profile valve and balloon catheter
WO2004018371A1 (en) * 2002-07-31 2004-03-04 Heye International Gmbh Patrix mechanism of a glass-molding machine
WO2004026735A2 (en) * 2002-09-17 2004-04-01 Glaxosmithkline Biologicals S.A. Article holding means and conveyor system

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB450147A (en) * 1934-01-31 1936-07-06 Sharp & Dohme Inc Lyophilic biologically active substances
US3810469A (en) * 1972-05-24 1974-05-14 Ampoules Inc Multiple compartment hypodermic devices
US6090083A (en) * 1996-01-31 2000-07-18 Scimed Life Systems, Inc. Low profile valve and balloon catheter
WO2004018371A1 (en) * 2002-07-31 2004-03-04 Heye International Gmbh Patrix mechanism of a glass-molding machine
WO2004026735A2 (en) * 2002-09-17 2004-04-01 Glaxosmithkline Biologicals S.A. Article holding means and conveyor system

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ZA200703338B (en) 2008-08-27
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