CN104328151A - Method for producing benzothiophene ethanol by using cells as catalyst - Google Patents

Method for producing benzothiophene ethanol by using cells as catalyst Download PDF

Info

Publication number
CN104328151A
CN104328151A CN201410594975.1A CN201410594975A CN104328151A CN 104328151 A CN104328151 A CN 104328151A CN 201410594975 A CN201410594975 A CN 201410594975A CN 104328151 A CN104328151 A CN 104328151A
Authority
CN
China
Prior art keywords
substrate
cotton gauze
reaction
benzo
ethanol
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201410594975.1A
Other languages
Chinese (zh)
Inventor
刘鹏程
刘均洪
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Qingdao University of Science and Technology
Original Assignee
Qingdao University of Science and Technology
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Qingdao University of Science and Technology filed Critical Qingdao University of Science and Technology
Priority to CN201410594975.1A priority Critical patent/CN104328151A/en
Publication of CN104328151A publication Critical patent/CN104328151A/en
Pending legal-status Critical Current

Links

Landscapes

  • Heterocyclic Carbon Compounds Containing A Hetero Ring Having Oxygen Or Sulfur (AREA)

Abstract

The invention relates to a method for producing benzothiophene ethanol by using cells as a catalyst, which comprises the following steps: preparing photoactive (S)-1-(3-benzo[b]thienyl)ethanol by using tarlaromyces flavus cells as a biological catalyst, adding a phosphate buffer solution into the reaction tank, and adding a cotton yarn fabric to regulate the concentrations of the substrate and product. The tarlaromyces flavus cells are utilized to perform biological catalytic reaction, so the method has the advantages of high product yield and high enantiomeric excess ratio (ee%) and has favorable application prospects.

Description

A kind of cell catalysis produces the method for thionaphthene ethanol
Technical field
The invention belongs to technology of pharmaceutical engineering field, be related specifically to Tarlaromyces flavus cell biocatalysis and prepare chiral medicinal intermediate (S)-1-(3-benzo [b] thienyl) technology of ethanol.
Background technology
Chirality (S)-1-(3-benzo [b] thienyl) ethanol is the important intermediate of synthesis of chiral medicine, fine chemicals, agricultural chemicals product and other exotic materialss.Biocatalysis asymmetric reaction has environmental friendliness, mild condition, selectivity advantages of higher, prepares the first approach of hydroxyl chipal compounds as green high-efficient, is applied to the chipal compounds producing some high added values more and more.Biocatalysis prepares chirality (S)-1-(3-benzo [b] thienyl) ethanol has good application prospect.
Biocatalysis has the outstanding advantages such as catalytic efficiency is high, selectivity strong, mild condition, environmental friendliness, is the important method substituting and expand traditional organic chemical synthesis in process of sustainable development.Wherein chiral separation and asymmetric synthesis are the Application Areass of biocatalysis most magnetism.As in six large fermentoids of biological catalyst, lytic enzyme catalytic kinetics resolution of racemates can obtain quiral products, in industrial biocatalytic, play key player always.In recent years, oxydo-reductase application industrially obtained and increased rapidly.At present, the ratio adopting the industry of lytic enzyme Kinetic Resolution, biological catalysis and biological oxidation process to prepare optical activity chirality compound is 4:2:1.Biomass cells reduction method is for Kinetic Resolution, and maximum advantage is that theoretical yield can reach 100%, and Atom economy is good.But bioreduction needs the participation of coenzyme or cofactor, limit its application to a certain extent.Due to the dependent cause of coenzyme, in bioreduction, many Bian intact cells are as catalyzer, realize the purification procedures eliminating enzyme in body while coenzyme cyclic regeneration.
(S)-1-(3-benzo [b] thienyl) ethanol is the important chiral building block of synthesis of chiral medicine, fine chemicals, agricultural chemicals product, owing to there being 2 chiral centres, make chemosynthesis comparatively difficult, cost is high.The present invention will adopt biocatalysis to prepare (S)-1-(3-benzo [b] thienyl) ethanol.
Summary of the invention
The present invention adopts Tarlaromyces flavus cell catalysis to prepare (S)-1-(3-benzo [b] thienyl) ethanol, reaction formula is as follows:
Substrate 3-ethanoyl benzo-thiophene (1), through Tarlaromyces flavus catalyzed reaction, obtains product (S)-1-(3-benzo [b] thienyl) ethanol (2).Have multiple-microorganism can catalysis this reaction, through great many of experiments screening, finally determine adopt Tarlaromyces flavus as catalyzer because its catalysis 1 reaction effect best, reaction yield, enantiomeric excess rate (ee%) are all very high.
Many Tarlaromyces flavus can carry out this reaction of biocatalysis, but its effect is different, differs greatly, and through experiment, the present invention selects Tarlaromyces flavus bacterial strain to be ATCC 200346, and its this reaction effect of catalysis is best.
developing medium:
1, nutrient solution composition: corn steep liquor (with dry basis) content is 35-45g/L; analysis for soybean powder 3-4 g/L; yeast extract 8-10 g/L, glucose 18-22 g/L, malt extract 20-25 g; ammonium sulfate 0.5-0.7g/L; magnesium sulfate 0.3-0.4g/L, phosphoric acid dioxy potassium 1.8-2.3g/L, calcium carbonate 0.7 g/L; ferrous sulfate 0.18 g/L, manganous sulfate 0.025 g/L; PH 4.0.
2, solid medium composition: the agar powder adding 1.5-2% in liquid medium within.
Prepared by Tarlaromyces flavus wet cell.Tarlaromyces flavus through inclined-plane, shaking flask, seed tank culture obtain seed liquor; Fermentor tank adds nutrient solution, and coefficient is 0.6-0.7, and 121 DEG C of autoclavings 30 minutes, are cooled to 25-26 DEG C, by Tarlaromyces flavus aTCC 200346seed liquor is seeded to fermentor tank, and inoculative proportion is 10-15%, and ventilation ratio is 0.5-1V/(V minute), namely per minute air flow is 0.5-1 times of fermentating liquid volume, cultivate 32-40 hour, obtain wet Tarlaromyces flavus cell, as biocatalytic reaction catalyzer with filtering centrifuge is centrifugal for 25-26 DEG C.Wet cell preparation technique is mature technology.
Because substrate, product all have restraining effect to Tarlaromyces flavus cell, in order to reduce the suppression of substrate, products upon cell, the present invention adopts cotton gauze immunoabsorbent substrate, in reaction, when substrate is reacted by cell catalysis, when concentration reduces, substrate from cotton gauze stripping, postreaction consume substrate.Meanwhile, product is adsorbed by cotton gauze, decreases its concentration in water, thus considerably reduces the suppression of substrate, products upon cell.The ratio of substrate and cotton gauze, determines the concentration of substrate in reaction solution, product, and concentration is also relevant with temperature of reaction, reaction solution composition.Different cell is different to the susceptibility of substrate, product, so, great many of experiments be carried out, best substrate and the ratio of cotton gauze could be determined.Experiment shows, for bacterial strain of the present invention, reaction solution composition, temperature of reaction, best substrate and the ratio of cotton gauze are 0.23-0.25.During concrete absorption, the substrate 3-ethanoyl benzo-thiophene cotton gauze being of a size of 0.5cmX0.5cm is absorbed, namely obtains the cotton gauze having adsorbed substrate.Regulate substrate and cotton gauze consumption, make the quality ratio of substrate and cotton gauze be 0.23-0.25.Cotton gauze used is common cotton gauze, and commercially, be cut into 0.5cmX0.5cm fritter, sterilizing, Preservation in sterile condition is stand-by.
Phosphate buffered saline buffer is added in bottom ventilation stirred tank, pH is 5.6, add the cotton gauze having adsorbed substrate 3-ethanoyl benzo-thiophene, substrate 3-ethanoyl benzo-thiophene addition is made to be 80-90 g/L, corn steep liquor (with dry basis) content is 10-12g/L, and glucose content is 16-18g/L, wood sugar 12-13 g/L, tween 80 content is 14-15g/L, 121 DEG C of autoclavings 30 minutes; When being cooled to 30-31 DEG C, add wet Tarlaromyces flavus cell and make concentration be 35-39g/L, ventilation ratio is 0.12-0.14V/(V minute), namely per minute air flow is 0.12-0.14 times of reaction solution volume, carries out biocatalytic reaction, and the reaction times is 31-36 hour; After reaction terminates, leach cell, cotton gauze respectively, be extracted with ethyl acetate reaction solution, extraction gauze, combined ethyl acetate extraction liquid, steam ethyl acetate, obtain product (S)-1-(3-benzo [b] thienyl) ethanol, reaction conversion ratio 96-98%, product yield 94-96%, enantiomeric excess rate (ee%) 98-99%.
The present invention carries out the work and comprises bacterial strain selection (selecting from more or less a hundred bacterial strain), catalytic reaction condition optimizes (temperature of reaction, air flow, pH), reaction medium is selected and concentration optimization (concentration of substrate, glucose content, Xylose Content, kinds of surfactants (more than 20, kind selects 1) and concentration, other multiple components is selected to get rid of), solid absorption is adopted to control substrate product concentration, thus the suppression reduced cell, test carclazyte, diatomite, cotton gauze, ramie gauze, the many kinds of solids materials such as macropore resin, also once carried out the test of water-organic solvent 2 phase system.Because tested number is very large, although have employed response surface optimization design experiment, drastically reduce the area tested number, tested number is still very large, and total Test carries out just completing more than 2 years, reaches current technical scheme.For photolytic activity product, as reaction conversion ratio 96-98%, during product yield 94-96%, enantiomeric excess rate (ee%), still up to 98-99%, is very not easily, and our work achieves marked improvement.
embodiment 1
Wet Tarlaromyces flavus is produced by ordinary method aTCC 200346cell, as biocatalytic reaction catalyzer.
The cotton gauze making method of having adsorbed substrate is, is absorbed by the substrate 3-ethanoyl benzo-thiophene cotton gauze being of a size of 0.5cmX0.5cm, namely obtains the cotton gauze having adsorbed substrate, regulate substrate and cotton gauze consumption, make the quality ratio of substrate and cotton gauze be 0.23.Cotton gauze used is common cotton gauze, and commercially, be cut into 0.5cmX0.5cm fritter, sterilizing, Preservation in sterile condition is stand-by, and other embodiment cotton gauze process is identical.
Phosphate buffered saline buffer is added in 15L bottom ventilation stirred tank, pH is 5.6, add the cotton gauze having adsorbed substrate 3-ethanoyl benzo-thiophene, substrate 3-ethanoyl benzo-thiophene addition is made to be 80g/L, corn steep liquor (with dry basis) content is 10g/L, and glucose content is 16g/L, wood sugar 12 g/L, tween 80 content is 14g/L, 121 DEG C of autoclavings 30 minutes; When being cooled to 30 DEG C, add wet Tarlaromyces flavus cell and make concentration be 35g/L, ventilation ratio is 0.12V/(V minute), namely per minute air flow is 0.12 times of reaction solution volume, carries out biocatalytic reaction, and the reaction times is 31 hours; After reaction terminates, leach cell, cotton gauze respectively, be extracted with ethyl acetate reaction solution, extraction gauze, combined ethyl acetate extraction liquid, steam ethyl acetate, obtain product (S)-1-(3-benzo [b] thienyl) ethanol, reaction conversion ratio 96%, product yield 94%, enantiomeric excess rate (ee%) 99%.
embodiment 2
Wet Tarlaromyces flavus is produced by ordinary method aTCC 200346cell, as biocatalytic reaction catalyzer.
The cotton gauze making method of having adsorbed substrate is, is absorbed by the substrate 3-ethanoyl benzo-thiophene cotton gauze being of a size of 0.5cmX0.5cm, namely obtains the cotton gauze having adsorbed substrate, regulate substrate and cotton gauze consumption, make the quality ratio of substrate and cotton gauze be 0.25.
Phosphate buffered saline buffer is added in 100L bottom ventilation stirred tank, pH is 5.6, add the cotton gauze having adsorbed substrate 3-ethanoyl benzo-thiophene, substrate 3-ethanoyl benzo-thiophene addition is made to be 80-90 g/L, corn steep liquor (with dry basis) content is 12g/L, and glucose content is 18g/L, wood sugar 13 g/L, tween 80 content is 15g/L, 121 DEG C of autoclavings 30 minutes; When being cooled to 31 DEG C, add wet Tarlaromyces flavus cell and make concentration be 39g/L, ventilation ratio is 0.14V/(V minute), namely per minute air flow is 0.14 times of reaction solution volume, carries out biocatalytic reaction, and the reaction times is 36 hours; After reaction terminates, leach cell, cotton gauze respectively, be extracted with ethyl acetate reaction solution, extraction gauze, combined ethyl acetate extraction liquid, steam ethyl acetate, obtain product (S)-1-(3-benzo [b] thienyl) ethanol, reaction conversion ratio 98%, product yield 96%, enantiomeric excess rate (ee%) 98%.
embodiment 3
Wet Tarlaromyces flavus is produced by ordinary method aTCC 200346cell, as biocatalytic reaction catalyzer.
The cotton gauze making method of having adsorbed substrate is, is absorbed by the substrate 3-ethanoyl benzo-thiophene cotton gauze being of a size of 0.5cmX0.5cm, namely obtains the cotton gauze having adsorbed substrate, regulate substrate and cotton gauze consumption, make the quality ratio of substrate and cotton gauze be 0.24.
Phosphate buffered saline buffer is added in 500L bottom ventilation stirred tank, pH is 5.6, add the cotton gauze having adsorbed substrate 3-ethanoyl benzo-thiophene, substrate 3-ethanoyl benzo-thiophene addition is made to be 80-90 g/L, corn steep liquor (with dry basis) content is 11g/L, and glucose content is 17g/L, wood sugar 12.5 g/L, tween 80 content is 14.5g/L, 121 DEG C of autoclavings 30 minutes; When being cooled to 30.5 DEG C, add wet Tarlaromyces flavus cell and make concentration be 38g/L, ventilation ratio is 0.13V/(V minute), namely per minute air flow is 0.13 times of reaction solution volume, carries out biocatalytic reaction, and the reaction times is 34 hours; After reaction terminates, leach cell, cotton gauze respectively, be extracted with ethyl acetate reaction solution, extraction gauze, combined ethyl acetate extraction liquid, steam ethyl acetate, obtain product (S)-1-(3-benzo [b] thienyl) ethanol, reaction conversion ratio 97%, product yield 94.9%, enantiomeric excess rate (ee%) 98.6%.
embodiment 4
Wet Tarlaromyces flavus is produced by ordinary method aTCC 200346cell, as biocatalytic reaction catalyzer.
The cotton gauze making method of having adsorbed substrate is; the substrate 3-ethanoyl benzo-thiophene cotton gauze being of a size of 0.5cmX0.5cm is absorbed; namely obtain the cotton gauze having adsorbed substrate, regulate substrate and cotton gauze consumption, make the quality ratio of substrate and cotton gauze be 0.245.
Phosphate buffered saline buffer is added in 15L bottom ventilation stirred tank, pH is 5.6, add the cotton gauze having adsorbed substrate 3-ethanoyl benzo-thiophene, substrate 3-ethanoyl benzo-thiophene addition is made to be 89 g/L, corn steep liquor (with dry basis) content is 11.5g/L, and glucose content is 17.3g/L, wood sugar 12.6 g/L, tween 80 content is 14.4g/L, 121 DEG C of autoclavings 30 minutes; When being cooled to 31 DEG C, add wet Tarlaromyces flavus cell and make concentration be 39g/L, ventilation ratio is 0.14V/(V minute), namely per minute air flow is 0.14 times of reaction solution volume, carries out biocatalytic reaction, and the reaction times is 36 hours; After reaction terminates, leach cell, cotton gauze respectively, be extracted with ethyl acetate reaction solution, extraction gauze, combined ethyl acetate extraction liquid, steam ethyl acetate, obtain product (S)-1-(3-benzo [b] thienyl) ethanol, reaction conversion ratio 97.7%, product yield 95.6%, enantiomeric excess rate (ee%) 98.5%.

Claims (2)

1. Tarlaromyces flavus cell biocatalysis preparation (S)-1-(3-benzo [b] thienyl) method of ethanol, it is characterized in that adding phosphate buffered saline buffer in retort, pH is 5.6, add the cotton gauze having adsorbed substrate 3-ethanoyl benzo-thiophene, substrate 3-ethanoyl benzo-thiophene addition is made to be 80-90 g/L, corn steep liquor (with dry basis) content is 10-12g/L, glucose content is 16-18g/L, wood sugar 12-13 g/L, tween 80 content is 14-15g/L, 121 DEG C of autoclavings 30 minutes; When being cooled to 30-31 DEG C, add wet Tarlaromyces flavus cell and make concentration be 35-39g/L, ventilation ratio is 0.12-0.14V/(V minute), carry out biocatalytic reaction, the reaction times is 31-36 hour; After reaction terminates, leach cell, cotton gauze respectively, be extracted with ethyl acetate reaction solution, extraction gauze, combined ethyl acetate extraction liquid, steam ethyl acetate, obtain product (S)-1-(3-benzo [b] thienyl) ethanol, reaction conversion ratio 96-98%, product yield 94-96%, enantiomeric excess rate (ee%) 98-99%.
2. method according to claim 1; it is characterized in that described cotton gauze making method of having adsorbed substrate is; the substrate 3-ethanoyl benzo-thiophene cotton gauze being of a size of 0.5cmX0.5cm is absorbed; namely the cotton gauze having adsorbed substrate is obtained; regulate substrate and cotton gauze consumption, make the quality ratio of substrate and cotton gauze be 0.23-0.25.
CN201410594975.1A 2014-10-30 2014-10-30 Method for producing benzothiophene ethanol by using cells as catalyst Pending CN104328151A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410594975.1A CN104328151A (en) 2014-10-30 2014-10-30 Method for producing benzothiophene ethanol by using cells as catalyst

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410594975.1A CN104328151A (en) 2014-10-30 2014-10-30 Method for producing benzothiophene ethanol by using cells as catalyst

Publications (1)

Publication Number Publication Date
CN104328151A true CN104328151A (en) 2015-02-04

Family

ID=52402955

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410594975.1A Pending CN104328151A (en) 2014-10-30 2014-10-30 Method for producing benzothiophene ethanol by using cells as catalyst

Country Status (1)

Country Link
CN (1) CN104328151A (en)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4857468A (en) * 1985-04-13 1989-08-15 Kanegafuchi Kagaku Kogyo Kabushiki Kaisha Process for preparing optically active 2-halo-1-phenyl ethanol
CN1793355A (en) * 2005-12-01 2006-06-28 华东理工大学 Organic solvent slow-releasing system and its preparation and application for catalyzing reaction of enzyme thereof

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4857468A (en) * 1985-04-13 1989-08-15 Kanegafuchi Kagaku Kogyo Kabushiki Kaisha Process for preparing optically active 2-halo-1-phenyl ethanol
CN1793355A (en) * 2005-12-01 2006-06-28 华东理工大学 Organic solvent slow-releasing system and its preparation and application for catalyzing reaction of enzyme thereof

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
MOHAN PAL ET AL.,: "Bioreduction of methyl heteroaryl and aryl heteroaryl ketones in high enantiomeric excess with newly isolated fungal strains", 《BIORESOURCE TECHNOLOGY》 *
杨忠华等: "活性酵母细胞不对称催化苯乙酮还原及树脂吸附对反应的促进作用", 《催化学报》 *

Similar Documents

Publication Publication Date Title
CN104293851A (en) Method for producing hydroxyethyl pyridine by alternaria alternata
CN104342464A (en) Method for producing chiral phenyl methanol employing catalysis of tarlaromyces flavus
CN104328151A (en) Method for producing benzothiophene ethanol by using cells as catalyst
CN104313074A (en) Method for producing pyridylethanol through penicillium catalysis
CN104263776A (en) Method for producing chiral pyridine ethanol through biological catalysis
CN104313077A (en) Biological method for producing isoxazolyl ethanol
CN104313076A (en) Method for producing methylpyridinyl ethanol through biological catalysis
CN104313062A (en) Method for producing photoactive phenylethanol through cell catalysis
CN104313078A (en) Method for producing chiral thiazolyl ethanol through biological catalysis
CN104313075A (en) Cell production method for photoactive bromopyridyl ethanol
CN104388490A (en) Method for producing chiral pyrazinyl ethanol by biological catalysis
CN104328154A (en) Method for producing (S)-phenyl methanol from blue mold
CN104263775A (en) Method for producing 4-pyridineethanol by black mould through catalysis
CN104293856A (en) Method for producing fluoropyridine ethanone through cell catalysis
CN104357504A (en) Cell catalysis for producing chirality methoxyl pyridine ethanol
CN104293852A (en) Method for producing isoquinoline methyl alcohol through cell catalysis
CN105039448A (en) Method for producing (S)-acetylthiophene with melanomyces
CN105177060A (en) Method for cell production of (S)-tetrahydronaphthol
CN105132471A (en) Method for producing photo-active chloro-benzene chloroethanol by virtue of microorganisms
CN105177069A (en) Method for cell production of (S)-hydroxyethyl methyl phenylpropionate
CN105039449A (en) Method for producing (S)-furan ethanol with penicillium
CN105087682A (en) Method for biologically producing (S)-hydroxyl bromophenyl methyl propionate
CN105087698A (en) Method for producing (S)-1-(4-nitrobenzene)ethanol by utilizing microorganism
CN105063102A (en) Method for producing (S)-biphenylylmethylcarbinol from black mold
CN105039446A (en) Method for producing (S)-cyanobenzene alcohol through cells

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication

Application publication date: 20150204

RJ01 Rejection of invention patent application after publication