JP2008164520A - Detection device utilizing antigen-antibody reaction - Google Patents

Detection device utilizing antigen-antibody reaction Download PDF

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JP2008164520A
JP2008164520A JP2006356492A JP2006356492A JP2008164520A JP 2008164520 A JP2008164520 A JP 2008164520A JP 2006356492 A JP2006356492 A JP 2006356492A JP 2006356492 A JP2006356492 A JP 2006356492A JP 2008164520 A JP2008164520 A JP 2008164520A
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antibody
test
film
immobilized
membrane
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Atsushi Hattori
篤 服部
Masahito Kon
雅人 近
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Aisin Corp
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Aisin Seiki Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a detection device capable of detecting a test material by a simple method by utilizing antigen-antibody reaction. <P>SOLUTION: This invention is completed from such a conception that a labor for collecting test solution can be omitted by being brought into direct contact with the test solution instead of collection of the test solution by washing from a specimen. Namely, this detection device has an antibody holding film permeable by the test solution existing on the surface of the specimen, for holding a test material bonding antibody bonding specifically to the test material in the test solution; and an antibody immobilization film having an immobilizing antibody bonding specifically to the test material and/or the test material bonding antibody, and laminated on the antibody holding film, and is characterized by being used by bringing the antibody holding film side into contact with the surface of the specimen. Namely, the test solution on the surface of the specimen penetrates successively from the antibody holding film side of the detection device, to thereby progress the antigen-antibody reaction, and the test material is detected when being included in the test solution. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、被検液中に含有する被検物質を抗原抗体反応を用いて検出する検出装置に関する。   The present invention relates to a detection apparatus for detecting a test substance contained in a test liquid using an antigen-antibody reaction.

従来から、被検体の表面に存在する細菌や生理活性物質などを検出する試みが為されている。被検体としては、飲食店の厨房機器の表面、魚介類などの食料品などの食中毒菌の存在が疑われるもの、傷口などの病原菌の存在が疑われるもの、汗が付着した皮膚や分泌液が付着した粘膜などの生理活性物質の存在が問題になるものなどが例示できる。   Conventionally, attempts have been made to detect bacteria, physiologically active substances, and the like present on the surface of a subject. Examples of subjects include the surface of kitchen equipment at restaurants, suspected food poisoning such as foods such as seafood, suspected pathogenic bacteria such as wounds, sweaty skin and secretions. Examples include those in which the presence of physiologically active substances such as attached mucous membranes is a problem.

細菌などは肉眼で見ることができないので、被検体の表面に押し当てた寒天培地や、被検体の表面を生理食塩水などで洗浄して得られる液体をろ過したフィルタなどを培養することで細菌のコロニーを形成させて検出する手法などがあった。   Bacteria and the like cannot be seen with the naked eye. Bacteria can be obtained by culturing an agar medium pressed against the surface of the subject or a filter that filters the liquid obtained by washing the surface of the subject with physiological saline. There is a method of detecting the colony by forming a colony.

しかしながら、これらの手法は煩雑なので、非水溶性高分子化合物を主成分としてなる粘着層を有する微生物試験用粘着シートの該粘着層を被検体の表面に圧着、剥離して微生物を集積した後、微生物を染色し得る1種以上の発色性物質を含有する水溶液を該粘着層の表面に接触させることにより該微生物を検出することを含む、該被検体中に存在する微生物の試験方法が提案されている(特許文献1)。   However, since these techniques are complicated, after the pressure-sensitive adhesive layer of the pressure-sensitive adhesive sheet for microorganism testing having a pressure-sensitive adhesive layer mainly composed of a water-insoluble polymer compound is pressure-bonded to the surface of the specimen and peeled to accumulate the microorganisms, A method for testing microorganisms present in the specimen has been proposed, comprising detecting the microorganisms by bringing an aqueous solution containing one or more chromogenic substances capable of staining the microorganisms into contact with the surface of the adhesive layer. (Patent Document 1).

また、抗原抗体反応を利用して微生物などを検出する方法が開示されている(特許文献2、3など)。特許文献2に開示の方法はいわゆるフロースルーイムノアッセイ法であり、特許文献3に開示の方法はいわゆるラテラルフローイムノアッセイ法である。   In addition, methods for detecting microorganisms using antigen-antibody reaction have been disclosed (Patent Documents 2, 3, etc.). The method disclosed in Patent Document 2 is a so-called flow-through immunoassay method, and the method disclosed in Patent Document 3 is a so-called lateral flow immunoassay method.

そして、これらイムノアッセイ法に用いられるイムノメンブレンについて扱いやすく保存性を向上する目的で、試薬が固着された台紙の裏面に、表面に粘着層が設けられ、該粘着層に剥離ライナーが積層された透明な熱可塑性樹脂製保護シートが折り返されている試験紙が開示されている(特許文献4)。
特開2002−142797号公報 特許2818191号公報 特開平6−167497号公報 特開2001−56339号公報
For the purpose of improving the storability and ease of handling of the immunomembranes used in these immunoassay methods, a transparent layer is provided on the back surface of the backing sheet to which the reagent is fixed, and a release liner is laminated on the adhesive layer. A test paper in which a protective sheet made of a thermoplastic resin is folded is disclosed (Patent Document 4).
JP 2002-142797 A Japanese Patent No. 2818191 JP-A-6-167497 JP 2001-56339 A

しかしながら、従来技術は、以下に述べるように、簡便に検出操作が行えるものではなかった。すなわち、特許文献1に開示の方法は短時間で検出可能であるが、粘着シートに発色性物質を接触させることを要し簡便に測定できるとは言い難かった。特許文献2及び3に記載の方法は被検体の表面を洗うなどして被検液を採取する必要があり、これも簡便な方法であるとは言い難かった。特許文献4に開示の方法は反応部分を素手などにて汚染することを防止する技術であり測定方法を簡略化するものではない。   However, the conventional technology has not been able to perform a detection operation simply as described below. That is, although the method disclosed in Patent Document 1 can be detected in a short time, it is difficult to say that it is easy to measure because it requires a color developing substance to be brought into contact with the adhesive sheet. In the methods described in Patent Documents 2 and 3, it is necessary to collect the test liquid by washing the surface of the test object, and it is difficult to say that this is also a simple method. The method disclosed in Patent Document 4 is a technique for preventing the reaction portion from being contaminated with bare hands and the like, and does not simplify the measurement method.

本発明は上記実情に鑑み完成されたものであり、検査者の技量によらず、簡便な手法で被検物質を抗原抗体反応を利用して検出することができる検出装置及び方法を提供することを解決すべき課題とする。   The present invention has been completed in view of the above circumstances, and provides a detection apparatus and method capable of detecting a test substance using an antigen-antibody reaction by a simple technique regardless of the skill of the examiner. Is a problem to be solved.

上記課題を解決する目的で本発明者らは鋭意検討を行い、被検体の表面から洗浄などによって被検液を採取することに代えて、被検体の表面に存する被検液に対し、直接接触させることで被検液の採取の手数を減らすという着想に想到し、以下の発明を完成した。すなわち、上記課題を解決する本発明の抗原抗体反応を利用した検出装置は、被検体の表面に在る被検液が厚み方向に透過可能であって、該被検液中に含有される1以上の被検物質に特異的に結合する被検物質結合抗体が透過する該被検液に対して溶解可能に保持される抗体保持膜と、
前記被検物質及び/又は前記被検物質結合抗体に特異的に結合する固定化抗体を1種以上もち、該抗体保持膜の一面側に一面側が接するように積層された抗体固定化膜と、
を有し、
前記抗体保持膜側を前記被検体の表面に接触させて用いることを特徴とする。
In order to solve the above-mentioned problems, the present inventors have conducted intensive studies, and instead of collecting the test liquid from the surface of the specimen by washing or the like, they directly contact the test liquid existing on the surface of the specimen. As a result, the inventors have conceived the idea of reducing the number of steps for collecting the test liquid, and completed the following invention. That is, the detection apparatus using the antigen-antibody reaction of the present invention that solves the above-described problems allows the test solution on the surface of the specimen to pass in the thickness direction and is contained in the test solution 1 An antibody-holding membrane that is held so that it can be dissolved in the test solution through which the test substance-binding antibody that specifically binds to the test substance passes,
An antibody-immobilized membrane that has one or more immobilized antibodies that specifically bind to the test substance and / or the test substance-binding antibody, and is laminated so that one side is in contact with one side of the antibody-holding film;
Have
The antibody holding film side is used in contact with the surface of the subject.

また、上記課題を解決する本発明の検出方法は、前記被検体の表面が濡れていない場合に該被検体の表面を濡らす工程と、
本発明の抗原抗体反応を利用する検出装置の前記抗体保持膜側を該被検体の表面に接触させる工程と、
該検出装置の前記抗体固定化膜にまで該被検液が至るまで放置する工程と、
該抗体固定化膜の他面側に現れる前記被検物質の量にて該被検物質を検出する工程とを有することを特徴とする。
In addition, the detection method of the present invention that solves the above problems includes a step of wetting the surface of the subject when the surface of the subject is not wet;
Contacting the surface of the analyte with the antibody-holding membrane side of the detection apparatus using the antigen-antibody reaction of the present invention;
Leaving the test solution up to the antibody-immobilized membrane of the detection device;
And a step of detecting the test substance with the amount of the test substance appearing on the other surface side of the antibody-immobilized membrane.

つまり、被検体の表面の被検液は、本発明の検出装置の抗体保持膜側から順次浸透していくことで抗原抗体反応が進行し、被検物質が被検液中に含有される場合に検出されることになる。具体的には、まず被検液は抗体保持膜に浸透していく過程で被検物質結合抗体を溶解する。溶解した被検物質結合抗体は、被検液中に被検物質を含む場合に、その被検物質と特異的に結合する。その後、被検液は抗体固定化膜に至ることになる。抗体固定化膜では被検液中の被検物質(及び/又は被検物質結合抗体)が固定化抗体に捕捉されることになる。被検液中の被検物質の量によって固定化抗体に捕捉される量が変化するので、固定化抗体に捕捉された量により被検物質の有無や量を検出することができる。   In other words, when the test liquid on the surface of the specimen permeates sequentially from the antibody holding film side of the detection apparatus of the present invention, the antigen-antibody reaction proceeds, and the test substance is contained in the test liquid Will be detected. Specifically, first, the test substance-bound antibody is dissolved in the process in which the test solution permeates the antibody holding membrane. The dissolved test substance-binding antibody specifically binds to the test substance when the test substance contains the test substance in the test solution. Thereafter, the test solution reaches the antibody-immobilized membrane. In the antibody-immobilized membrane, the test substance (and / or test substance-binding antibody) in the test solution is captured by the immobilized antibody. Since the amount captured by the immobilized antibody varies depending on the amount of the test substance in the test solution, the presence / absence and amount of the test substance can be detected from the amount captured by the immobilized antibody.

そして、前記抗体保持膜及び前記抗体固定化膜の間に積層され、前記被検液が厚み方向に透過可能な第1多孔質膜をもつことが望ましい。前記抗体保持膜及び前記抗体固定化膜の間に第1多孔質膜を介在させることで、両者の間での被検液の逆流が抑制できる。また、前記抗体保持膜側に積層され、前記被検液が厚み方向に透過可能な第2多孔質膜を有することが望ましい。第2多孔質膜を介して被検液に接触させることで、抗体保持膜に一旦浸透した被検物質結合抗体が被検体の表面に逆流することを防止できる。   And it is desirable to have a 1st porous film | membrane laminated | stacked between the said antibody holding | maintenance film | membrane and the said antibody fixed film | membrane, and the said test liquid can permeate | transmit in the thickness direction. By interposing the first porous membrane between the antibody holding membrane and the antibody-immobilized membrane, the backflow of the test solution between them can be suppressed. Moreover, it is desirable to have a second porous membrane that is laminated on the antibody holding membrane side and that allows the test solution to permeate in the thickness direction. By contacting the test solution through the second porous membrane, the test substance-bound antibody that has once permeated the antibody holding membrane can be prevented from flowing back to the surface of the test sample.

また、前記抗体固定化膜は前記被検液が厚み方向に透過可能であり、該抗体固定化膜の他面側に該被検液を吸収する吸収膜を有することが望ましい。抗体固定化膜の他面側に被検液を吸収可能な吸収膜を有することで、抗体保持膜及び抗体固定化膜の双方に大量の被検液を透過させることが可能になって被検物質の検出感度が向上できる。吸収膜は被検物質の検出を妨げないように、前記吸収膜は前記被検液を吸収した後に透明乃至半透明になることが望ましい。   The antibody-immobilized membrane preferably has an absorption membrane that allows the test solution to pass through in the thickness direction and absorbs the test solution on the other side of the antibody-immobilized membrane. By having an absorption membrane that can absorb the test solution on the other side of the antibody-immobilized membrane, a large amount of test solution can be permeated through both the antibody holding membrane and the antibody-immobilized membrane. Substance detection sensitivity can be improved. It is desirable that the absorption film becomes transparent or translucent after absorbing the test liquid so that the absorption film does not interfere with detection of the test substance.

更に、前記被検液が透過できない材料からなり、前記抗体保持膜の前記他面側に積層され、所定の大きさの切り欠きが形成された被検液整流膜を有することで、被検液が浸透する部位を制御して均一に流れるようにすることができる。特に、前記被検液整流膜の前記切り欠きは2以上形成されており、前記抗体保持膜及び前記抗体固定化膜における前記被検物質結合抗体及び前記固定化抗体は、該孔が形成された位置に対応する位置毎に異なる種類又は組み合わせの前記被検物質に対応している構成を採用することで1つの検出装置にて複数の被検物質を独立して検出することが可能になる。   Furthermore, the test solution has a test solution rectifying film made of a material that cannot pass the test solution, laminated on the other surface side of the antibody holding film, and having a notch of a predetermined size. It is possible to control the site where the water penetrates to flow uniformly. In particular, two or more of the cutouts of the test solution rectifying membrane are formed, and the test substance-bound antibody and the immobilized antibody in the antibody holding membrane and the antibody-immobilized membrane have holes formed therein. By adopting a configuration corresponding to different types or combinations of the test substances for each position corresponding to the position, it becomes possible to detect a plurality of test substances independently with one detection device.

そして、前記抗体固定化膜の他面側の最表面に配置された前記被検液が透過できない保護膜を有することで、被検液に触れる虞が少なくなり、取り扱い性が良くなる。   And by having the protective film which the said test liquid arrange | positioned on the outermost surface of the other surface side of the said antibody fixed film cannot permeate | transmit, there is less possibility of touching a test liquid and handling property improves.

更にまた、前記被検物質結合抗体は標識されており、前記抗体固定化膜は、前記固定化抗体にて捕捉された該被検物質結合抗体の該標識により前記被検物質を検出することで、光学的な手段によっても被検物質の検出を行うことが可能になる。   Furthermore, the test substance binding antibody is labeled, and the antibody-immobilized membrane detects the test substance by the label of the test substance binding antibody captured by the immobilized antibody. It becomes possible to detect the test substance also by optical means.

本発明の検出装置は上記構成を有することから被検体の表面からの被検液の採取の手間を省くことができ、簡便に被検物質を検出することができる。   Since the detection apparatus of the present invention has the above-described configuration, it is possible to save labor for collecting the test liquid from the surface of the test object and to easily detect the test substance.

以下、本発明の検出装置及び方法について実施形態に基づき詳細に説明する。本実施形態の検出装置は被検体の表面における被検物質を検出する方法である。被検物質としては抗原抗体反応における抗原として作用可能な物質であれば特に限定されない。例えば、細菌(病原性の菌など)、特定のタンパク質(食物中のアレルゲン、生体の皮膚から染み出した生理活性物質など)などである。   Hereinafter, the detection apparatus and method of the present invention will be described in detail based on embodiments. The detection apparatus of this embodiment is a method for detecting a test substance on the surface of a test object. The test substance is not particularly limited as long as it can act as an antigen in an antigen-antibody reaction. For example, bacteria (pathogenic fungi, etc.), specific proteins (allergens in food, physiologically active substances exuded from the skin of a living body, etc.), etc.

これら被検物質は液中に溶解された状態で本検出装置に適用される。被検物質が最初から水などに溶解して液状であればそのまま被検液として適用することも可能であり、液量が充分でなかったり、乾燥している場合には被検物質を含有しない水などを被検体の表面を霧吹きなどで湿潤させることで被検液とすることができる。   These test substances are applied to this detection apparatus in a state of being dissolved in a liquid. If the test substance is dissolved in water from the beginning and is liquid, it can be applied as it is as the test liquid, and if the liquid volume is insufficient or dry, it does not contain the test substance. A test liquid can be obtained by moistening the surface of the subject with water spray or the like.

(構成)
本実施形態の検出装置は抗体保持膜と抗体固定化膜とがこの順に積層された積層体である。必要に応じてその他の部材を有することもできる。
(Constitution)
The detection device of this embodiment is a laminate in which an antibody holding film and an antibody immobilization film are laminated in this order. Other members may be included as necessary.

抗体保持膜は膜状・多孔質の部材であり、被検液が厚み方向に透過可能になっており、毛細管現象などにより被検液が厚み方向に浸透可能になっている。例えば、不織布が例示される。抗体保持膜には被検物質に対応する抗体である被検物質結合抗体が保持されている。被検物質結合抗体は物理的な吸着により抗体保持膜上に保持されたり、抗体保持膜に固定化された被検物質などに対して抗原抗体反応を利用して結合させることで保持することもできる。透過する被検液に対して被検物質結合抗体が溶解・溶出する。抗原抗体反応を利用して保持する場合には被検液中の被検物質と競合的に結合することで被検物質結合抗体が溶出する。   The antibody-holding membrane is a membrane-like and porous member, and the test solution can penetrate in the thickness direction, and the test solution can penetrate in the thickness direction by capillary action or the like. For example, a nonwoven fabric is illustrated. A test substance binding antibody that is an antibody corresponding to the test substance is held on the antibody holding film. The analyte-bound antibody can be retained on the antibody retention membrane by physical adsorption, or can be retained by binding to the analyte immobilized on the antibody retention membrane using an antigen-antibody reaction. it can. The test substance-bound antibody dissolves and elutes in the permeated test solution. In the case of holding using an antigen-antibody reaction, the test substance-bound antibody is eluted by binding competitively with the test substance in the test solution.

被検物質結合抗体は後の検出を容易にする目的で何らかの標識がなされていることが望ましい。標識としては金コロイド、蛍光物質、酵素などが挙げられる。金コロイド、蛍光物質は発色や蛍光を検出することが可能であり、酵素は反応を促進する基質を加えてその基質の変化により検出することができる。   It is desirable that the analyte-bound antibody is labeled in some way for the purpose of facilitating later detection. Examples of the label include colloidal gold, a fluorescent substance, and an enzyme. Colloidal gold and fluorescent materials can detect color development and fluorescence, and enzymes can be detected by adding a substrate that promotes the reaction and changing the substrate.

抗体固定化膜は毛細管現象などにより被検液が厚み方向に浸透可能になっている。被検液が厚み方向に透過可能にすることもできる。抗体固定化膜としては不織布が例示される。抗体固定化膜には被検物質及び/又は被検物質結合抗体に特異的に結合する固定化抗体を1種以上もつ。固定化抗体は抗体固定化膜上に結合されている。ここでいう固定化抗体の固定化(結合)は被検液に溶出しない程度で充分である。   The antibody-immobilized membrane can be penetrated in the thickness direction by a capillary phenomenon or the like. It is also possible to make the test solution permeate in the thickness direction. Nonwoven fabric is exemplified as the antibody-immobilized membrane. The antibody-immobilized membrane has at least one type of immobilized antibody that specifically binds to the test substance and / or test substance-binding antibody. The immobilized antibody is bound on the antibody-immobilized membrane. The immobilization (binding) of the immobilized antibody here is sufficient as long as it does not elute in the test solution.

固定化抗体に被検物質(及び/又は被検物質結合抗体)が結合された後、同時に結合している被検物質結合抗体(及び/又は被検物質)の存在を検出することで被検物質の存在を検出する。   After the test substance (and / or test substance binding antibody) is bound to the immobilized antibody, the test is performed by detecting the presence of the test substance binding antibody (and / or test substance) that is bound simultaneously. Detect the presence of a substance.

固定化抗体は種々の形状(+、−、○、×、陽、陰など)を示すように抗体固定化膜上に固定化することで被検物質を検出したときにその形状を表出させることができる。   Immobilized antibodies are immobilized on an antibody-immobilized membrane so as to show various shapes (+,-, ◯, x, positive, negative, etc.), and the shape is revealed when a test substance is detected. be able to.

その他必要に応じて有することができる部材としては、第2多孔質膜、吸収膜、被検液整流膜、保護膜などである。   Other members that can be included as necessary include a second porous film, an absorption film, a test liquid rectifying film, and a protective film.

第1多孔質膜は被検液が厚み方向に透過可能な膜状の部材である。毛細管現象などにより被検液が厚み方向に浸透する。第1多孔質膜により抗体保持膜から抗体固定化膜への被検液の流れが逆流することを防止できる。   The first porous membrane is a membrane-like member through which the test solution can permeate in the thickness direction. The test solution penetrates in the thickness direction due to capillary action. The first porous membrane can prevent the flow of the test solution from the antibody holding membrane to the antibody-immobilized membrane from flowing backward.

第2多孔質膜は第1多孔質膜と概ね同じ構成をもつ部材である。第2多孔質膜は抗体保持膜の他面側に積層されている。抗体保持膜との間は接していても良いし、他の部材を介して積層されていても良い。第2多孔質膜は抗体保持膜が直接被検体の表面に接することを防いで被検液の流れの逆流を防止し、被検物質結合抗体による被検体の表面の汚染を防止することができる。   The second porous membrane is a member having substantially the same configuration as the first porous membrane. The second porous membrane is laminated on the other side of the antibody holding membrane. It may be in contact with the antibody holding film, or may be laminated via another member. The second porous membrane prevents the antibody-holding membrane from directly contacting the surface of the specimen, thereby preventing the backflow of the flow of the test liquid and preventing contamination of the surface of the specimen by the test substance binding antibody. .

吸収膜は抗体固定化膜の他面側に積層される部材である。多孔質体などから形成される。吸収膜が被検液を吸収することで、抗体保持膜、第1多孔質膜、抗体固定化膜の順で被検液を大量に流すことが可能になり、被検液中の被検物質の検出感度が向上できる。   The absorption membrane is a member laminated on the other side of the antibody-immobilized membrane. It is formed from a porous body or the like. The absorption membrane absorbs the test solution, so that a large amount of the test solution can flow in the order of the antibody holding membrane, the first porous membrane, and the antibody-immobilized membrane, and the test substance in the test solution The detection sensitivity can be improved.

抗体固定化膜上での被検物質を光学的な検出を容易にする目的で、吸収膜は被検液が浸透した際に透明乃至は半透明になることが望ましい。例えば、透明な繊維(セルロース、化学処理したセルロース、ポリビニルアルコール、アクリル樹脂、PET、ポリアミドなど)などから形成した不織布を採用することができる。   For the purpose of facilitating optical detection of the test substance on the antibody-immobilized film, it is desirable that the absorption film becomes transparent or translucent when the test solution permeates. For example, a nonwoven fabric formed from transparent fibers (cellulose, chemically treated cellulose, polyvinyl alcohol, acrylic resin, PET, polyamide, etc.) can be employed.

被検液整流膜は被検液が透過しない素材から形成されている。被検液整流膜は本検出装置の抗体保持膜側に積層される。抗体保持膜との間は接していても良いし、他の部材を介して積層されていても良い。被検液整流膜は所定の大きさの切り欠きが形成されている。この切り欠きの部分のみ被検液が浸透する。切り欠きを2以上設け、それぞれ設けた切り欠きの位置毎に異なる種類の被検物質や異なる濃度の被検物質に対応する、被検物質結合抗体及び固定化抗体を保持・固定させることで一回の測定で2以上の被検物質や被検物質の濃度を検出することが可能になる。   The test liquid rectifying film is formed of a material that does not allow the test liquid to pass therethrough. The test liquid rectifying film is laminated on the antibody holding film side of the detection apparatus. It may be in contact with the antibody holding film, or may be laminated via another member. The test solution rectifying film has a notch of a predetermined size. The test solution penetrates only in the notched portion. Two or more cutouts are provided, and a test substance binding antibody and an immobilized antibody corresponding to different types of test substances or test substances at different concentrations are held and fixed at each notch position. It is possible to detect two or more test substances and the concentration of the test substance in one measurement.

保護膜は被検液を透過しない材料から形成されている。光学的な検出を妨げないように透明乃至は半透明な素材から形成されていることが望ましい。本実施形態の検出装置の操作者が被検液に触れる虞が少なくなる。   The protective film is made of a material that does not pass through the test liquid. It is desirable to be formed from a transparent or translucent material so as not to hinder optical detection. The possibility that the operator of the detection apparatus of the present embodiment touches the test liquid is reduced.

(作用効果)
以下に本実施形態の検出装置を用いて被検物質の検出を行う方法について説明する。本実施形態の検出装置は抗体保持膜側を被検体の表面に付着させて用いる。被検体の表面は湿潤していることが要求される。湿潤していない場合には被検物質を含有しない水(適正な緩衝液、純水など)を吹き付けるなどして湿潤させる。
(Function and effect)
Hereinafter, a method for detecting a test substance using the detection apparatus of the present embodiment will be described. The detection apparatus of this embodiment is used with the antibody holding film side attached to the surface of the subject. The surface of the subject is required to be wet. If it is not moistened, it is moistened by spraying water (such as an appropriate buffer or pure water) that does not contain the test substance.

被検体の表面に抗体保持膜側を付着させると、被検体の表面に在る被検液が抗体保持膜に染み込んでくる。ここで、被検液整流膜が在る場合には被検液整流膜の切り欠き部分のみから染み込んでくる。第2多孔質膜を有する場合には速やかに被検液が浸透される。   When the antibody holding film side is attached to the surface of the subject, the test solution on the surface of the subject soaks into the antibody holding membrane. Here, when the test liquid rectifying film is present, it penetrates only from the cutout portion of the test liquid rectifying film. When the second porous membrane is provided, the test solution is rapidly permeated.

抗体保持膜に至った被検液は保持された被検物質結合抗体を溶解する。被検液中に含有する被検物質には被検物質結合抗体が特異的に結合する。被検液はそのまま第1多孔質膜を介して抗体固定化膜に浸透していく。吸収膜を採用した場合には、被検液を吸収して大量の被検液を抗体保持膜、第1多孔質膜、抗体固定化膜の順で透過させることができる。   The test solution reaching the antibody holding film dissolves the held test substance-bound antibody. The test substance binding antibody specifically binds to the test substance contained in the test solution. The test solution permeates the antibody-immobilized membrane as it is through the first porous membrane. When the absorption membrane is employed, the test solution can be absorbed and a large amount of the test solution can be permeated in the order of the antibody holding membrane, the first porous membrane, and the antibody-immobilized membrane.

抗体固定化膜では、被検物質と被検物質結合抗体とが結合した複合体に対して固定化抗体が結合する。その結果、固定化抗体が固定化された部位に被検物質及び被検物質結合抗体の複合体が濃縮される。   In the antibody-immobilized membrane, the immobilized antibody binds to a complex in which the test substance and the test substance-bound antibody are bound. As a result, the complex of the test substance and the test substance binding antibody is concentrated at the site where the immobilized antibody is immobilized.

固定化抗体に被検物質などが結合することで被検物質が検出できる。被検物質結合抗体として標識された化合物を採用した場合には、その標識部分を検出することで被検物質が検出できる。   The test substance can be detected by binding the test substance or the like to the immobilized antibody. When a labeled compound is employed as the test substance binding antibody, the test substance can be detected by detecting the labeled portion.

従って、本実施形態の検出装置は被検体の表面からの試験試料の採取の手間を省略することが可能になり誰でも簡単に被検物質の検出を行うことができる。   Therefore, the detection apparatus of this embodiment can omit the labor of collecting the test sample from the surface of the subject, and anyone can easily detect the test substance.

(試験1)
図1に示すように、被検液整流膜としてのポリエチレンシート11と、抗体保持膜、第1多孔質膜、抗体固定化膜にそれぞれ対応する3枚のニトロセルロースメンブレン12〜14(Millipore#HABG04700)とを積層し、検出装置のモデルを形成した。ポリエチレンシート11は、直径6mmの穴(切り欠き)を2箇所ずつ3組開けて形成した。
(Test 1)
As shown in FIG. 1, a polyethylene sheet 11 as a test solution rectifying membrane, and three nitrocellulose membranes 12 to 14 (Millipore # HABG04700) corresponding to the antibody holding membrane, the first porous membrane, and the antibody-immobilized membrane, respectively. ) To form a model of the detection device. The polyethylene sheet 11 was formed by opening 3 pairs of holes (notches) each having a diameter of 6 mm.

150mMリン酸緩衝液0.5mLを被検体としての卓90上に垂らし、検出装置を上からポリエチレンシート11側が接するように被せた。ポリエチレンシート11に形成した穴から緩衝液が浸透し3枚のメンブレン12〜14に円形の切り欠きの形状を保ったまま染み込ませることができた。   A 150 mM phosphate buffer solution (0.5 mL) was hung on a table 90 as an object, and the detection device was put on the polyethylene sheet 11 side from above. The buffer solution permeated from the hole formed in the polyethylene sheet 11 and was able to be infiltrated into the three membranes 12 to 14 while maintaining the shape of the circular notch.

被検液整流膜及びを採用することで、測定部位を厳密に選択することなく必要な部位に被検液を染み込ませることができた。   By adopting the test liquid rectifying membrane and the test liquid, it was possible to infiltrate the test liquid into the necessary part without strictly selecting the measurement part.

(試験2)
図2に示すように、下からグラスファイバーシート(Millipore#GFCP103000)からなる抗体保持膜21、ニトロセルロースメンブレン(Millipore Durapore メンブレンフィルター、0.1mmVVPP)からなる抗体固定化膜22、キムワイプ(商標)からなる吸収膜23、ポリエチレンシートからなる保護膜24の順に積層して検出装置を製造した。
(Test 2)
As shown in FIG. 2, from the bottom, an antibody holding membrane 21 made of a glass fiber sheet (Millipore # GFCP103000), an antibody-immobilized membrane 22 made of a nitrocellulose membrane (Millipore Durapore membrane filter, 0.1 mmVVPP), and Kimwipe (trademark) The detection device was manufactured by laminating an absorption film 23 and a protective film 24 made of a polyethylene sheet in this order.

抗体保持膜21は、グラスファイバーシート上に被検物質結合抗体としてのRabbit polyclonal to Ovalbumin(abcam)を保持させた膜である。   The antibody holding film 21 is a film in which Rabbit polyclonal to Ovalbumin (abcam) as a test substance binding antibody is held on a glass fiber sheet.

まず、直径40nmの金コロイド(British-biocell International)に対しRabbit polyclonal to Ovalbumin(abcam)を混合した。緩衝液には10%NaClを用いたものと、10%Sucroseを用いたものとの2種類を用意した。   First, Rabbit polyclonal to Ovalbumin (abcam) was mixed with colloidal gold (British-biocell International) having a diameter of 40 nm. Two types of buffers were used, one using 10% NaCl and the other using 10% Sucrose.

10%Sucroseを用いた金コロイド溶液を25μLと、10%NaClを用いた金コロイド溶液を25μLとをグラスファイバーシート上にそれぞれ2箇所ずつ滴下して風乾することで抗体保持膜21を得た。   An antibody holding film 21 was obtained by dropping 25 μL of a gold colloid solution using 10% Sucrose and 25 μL of a gold colloid solution using 10% NaCl two times onto a glass fiber sheet and air drying.

抗体固定化膜22は、ニトロセルロースメンブレンに対し、Anti OVA(Rabbit Polyclonal to Ovaalbumin(abcam))とAnti Rabbit(GtxRabbitIgG#AP132(CHEMICON))とを滴下し、風乾して4箇所222に固定した。固定化抗体を固定化した部位222は、Anti OVAが周りを囲む円形の部位222aに、Anti Rabbitが中央の線状の部位222bにそれぞれ固定化されている。従って、被検液中に被検物質としてのOVAを含有する場合には中央の線状の部位222bが金コロイドにより発色し、その周りの円形の部位222aは被検液中の被検物質の有無に係わらず被検液の透過によって発色することになる。   The antibody-immobilized membrane 22 was fixed to four locations 222 by dropping Anti OVA (Rabbit Polyclonal to Ovaalbumin (abcam)) and Anti Rabbit (GtxRabbitIgG # AP132 (CHEMICON)) on the nitrocellulose membrane and air-drying. In the portion 222 where the immobilized antibody is immobilized, the anti OVA is immobilized on the circular portion 222a surrounding the anti-OVA, and the anti-rabbit is immobilized on the central linear portion 222b. Therefore, when the test solution contains OVA as the test substance, the central linear part 222b is colored by the gold colloid, and the circular part 222a around it is the test substance in the test liquid. Regardless of the presence or absence, color is developed by permeation of the test solution.

被検体としてのスライドグラス90上に100μg/mL OVA(Wako, Albumin from Chicken Egg#010-17071)25μLを2箇所に滴下し、150mMリン酸緩衝液25μLを更に2箇所滴下した。   On a slide glass 90 as an object, 25 μL of 100 μg / mL OVA (Wako, Albumin from Chicken Egg # 010-17071) was dropped in two places, and 25 μL of 150 mM phosphate buffer was further dropped in two places.

前記スライドガラス90上に製造した検出装置を載せたところ、被検液が浸透して吸収膜23が透明になり、保護膜24を通してシグナルを観察することができた。Sucrose緩衝液を用いて調製した金コロイド溶液とOVAとの組み合わせでは円状及び棒状のシグナルが観察された。NaCl緩衝液を用いて調製した金コロイド溶液とOVAとの組み合わせでは円状のシグナルが観察され、線状のシグナルはうっすらと観察できた。リン酸緩衝液では円状のシグナルのみが観察された。   When the manufactured detection device was placed on the slide glass 90, the test solution permeated, the absorption film 23 became transparent, and a signal could be observed through the protective film 24. Circular and rod-shaped signals were observed in the combination of colloidal gold solution prepared using Sucrose buffer and OVA. In the combination of gold colloid solution prepared using NaCl buffer and OVA, a circular signal was observed, and a linear signal was slightly observed. Only a circular signal was observed in the phosphate buffer.

つまり、被検液としてOVAを含有する場合には調製に用いた緩衝液の種類によって反応性に差はあるものの被検物質(OVA)の存在が検出され、OVAを含有しない場合には発色せずにOVAが存在しないことを検知できることが判った。   In other words, when OVA is included as a test solution, the presence of the test substance (OVA) is detected although there is a difference in reactivity depending on the type of buffer used for the preparation, and when OVA is not included, color development occurs. It was found that it was possible to detect the absence of OVA.

試験1にて用いた検出装置を示す概略分解斜視図である。3 is a schematic exploded perspective view showing a detection device used in Test 1. FIG. 試験2にて用いた検出装置を示す概略分解斜視図である。6 is a schematic exploded perspective view showing a detection device used in Test 2. FIG.

符号の説明Explanation of symbols

11…被検液整流膜
12〜14…ニトロセルロースメンブレン
21…抗体保持膜
22…抗体固定化膜 222…固定化抗体が固定された部位
23…吸収膜
24…保護膜
90…被検体
DESCRIPTION OF SYMBOLS 11 ... Test liquid rectification film | membrane 12-14 ... Nitrocellulose membrane 21 ... Antibody holding film | membrane 22 ... Antibody fixed film | membrane 222 ... The site | part to which the fixed antibody was fixed 23 ... Absorption film | membrane 24 ... Protective film 90 ... Test object

Claims (10)

被検体の表面に在る被検液が厚み方向に透過可能であって、該被検液中に含有される1以上の被検物質に特異的に結合する被検物質結合抗体が透過する該被検液に対して溶解可能に保持される抗体保持膜と、
前記被検物質及び/又は前記被検物質結合抗体に特異的に結合する固定化抗体を1種以上もち、該抗体保持膜の一面側に一面側が接するように積層された抗体固定化膜と、
を有し、
前記抗体保持膜側を前記被検体の表面に接触させて用いることを特徴とする抗原抗体反応を利用した検出装置。
The test solution present on the surface of the test sample is permeable in the thickness direction, and the test substance binding antibody that specifically binds to one or more test substances contained in the test solution is transmitted therethrough. An antibody-holding membrane that is held so as to be soluble in the test solution;
An antibody-immobilized membrane that has one or more immobilized antibodies that specifically bind to the test substance and / or the test substance-binding antibody, and is laminated so that one side is in contact with one side of the antibody-holding film;
Have
A detection apparatus using an antigen-antibody reaction, wherein the antibody holding film side is used in contact with the surface of the subject.
前記抗体保持膜及び前記抗体固定化膜の間に積層され、前記被検液が厚み方向に透過可能な第1多孔質膜を有する請求項1に記載の検出装置。   The detection apparatus according to claim 1, further comprising a first porous film that is laminated between the antibody holding film and the antibody-immobilized film so that the test solution can permeate in a thickness direction. 前記抗体保持膜の他面側に積層され、前記被検液が厚み方向に透過可能な第2多孔質膜を有する請求項1又は2に記載の検出装置。   The detection apparatus according to claim 1 or 2, further comprising a second porous film that is laminated on the other surface side of the antibody holding film and allows the test solution to pass in the thickness direction. 前記抗体固定化膜は前記被検液が厚み方向に透過可能であり、
該抗体固定化膜の他面側に該被検液を吸収する吸収膜を有する請求項1〜3のいずれかに記載の検出装置。
The antibody-immobilized membrane allows the test solution to penetrate in the thickness direction,
The detection apparatus according to claim 1, further comprising an absorption film that absorbs the test solution on the other surface side of the antibody-immobilized film.
前記吸収膜は前記被検液を吸収した後に透明乃至半透明になる請求項4に記載の検出装置。   The detection apparatus according to claim 4, wherein the absorption film becomes transparent or translucent after absorbing the test liquid. 前記被検液が透過できない材料からなり、前記抗体保持膜側に積層され、所定の大きさの切り欠きが形成された被検液整流膜を有する請求項1〜5のいずれかに記載の検出装置。   The detection according to any one of claims 1 to 5, further comprising a test liquid rectifying film made of a material that cannot pass the test liquid, laminated on the antibody holding film side, and having a notch of a predetermined size. apparatus. 前記被検液整流膜の前記切り欠きは2以上形成されており、
前記抗体保持膜及び前記抗体固定化膜における前記被検物質結合抗体及び前記固定化抗体は、該孔が形成された位置に対応する位置毎に異なる種類又は組み合わせの前記被検物質に対応している請求項6に記載の検出装置。
The notch of the test liquid rectifying film is formed in two or more,
The test substance binding antibody and the immobilized antibody in the antibody holding film and the antibody-immobilized film correspond to different types or combinations of the test substances for each position corresponding to the position where the hole is formed. The detection device according to claim 6.
前記抗体固定化膜の他面側の最表面に配置された前記被検液が透過できない保護膜を有する請求項1〜7のいずれかに記載の検出装置。   The detection apparatus according to any one of claims 1 to 7, further comprising a protective film that is not allowed to pass through the test solution disposed on the outermost surface on the other surface side of the antibody-immobilized film. 前記被検物質結合抗体は標識されており、
前記抗体固定化膜は、前記固定化抗体にて捕捉された該被検物質結合抗体の該標識により前記被検物質を検出する請求項1〜8のいずれかに記載の検出装置。
The analyte binding antibody is labeled,
The detection apparatus according to claim 1, wherein the antibody-immobilized membrane detects the test substance by the label of the test substance-bound antibody captured by the immobilized antibody.
前記被検体の表面が濡れていない場合に該被検体の表面を濡らす工程と、
請求項1〜9のいずれかに記載の検出装置の前記抗体保持膜側を該被検体の表面に接触させる工程と、
該検出装置の前記抗体固定化膜にまで該被検液が至るまで放置する工程と、
該抗体固定化膜の他面側に現れる前記被検物質の量にて該被検物質を検出する工程とを有することを特徴とする抗原抗体反応を利用する検出方法。
Wetting the surface of the subject when the surface of the subject is not wet;
Contacting the antibody holding film side of the detection device according to any one of claims 1 to 9 with the surface of the subject;
Leaving the test solution up to the antibody-immobilized membrane of the detection device;
And a step of detecting the test substance with the amount of the test substance appearing on the other surface side of the antibody-immobilized membrane.
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