• Title/Summary/Keyword: racemic resolution

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Functional Analyses and Application of Microbial Lactonohydrolases

  • Shimizu, Sakayu;Honda, Kohsuke;Kataoka, Michihiko
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.7 no.3
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    • pp.130-137
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    • 2002
  • Microbial lactonohydrolases (intramolecular ester bond-hydrolyzing enzymes) with unique properties were found. The lactonohydrolase from Fusarium oxysporum catalyzes enantiose-lective hydrolysis of aldonate lactones and D-pantoyl lactone (D-PL). This enzyme is useful for the large-scale optical resolution of racemic PL. The Agrobacterium tumefaciens enzyme catalyzes asymmetric hydrolysis of PL, but the stereospecificity is opposite to that of the Fusarium enzyme. Dihydrocoumarin hydrolase (DHase) from Acinetobacter calcoaceticus is a bifunctional enzyme, which catalyzes not only hydrolysis of aromatic lactones but also bromination of monochlorodi-medon in the presence of H$_2$O$_2$and dihydrocoumarin. DHase also hydrolyzes several linear esters, and is useful for enantioselective hydrolysis of methyl DL-$\beta$-acetylthioisobutyrate and regioselective hydrolysis of methyl cetraxate.

Detection and Determination of Lipase Activity

  • Lee, Seoung-Yong;Rhee, Joon-Shick
    • Journal of Microbiology and Biotechnology
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    • v.4 no.2
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    • pp.85-94
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    • 1994
  • Lipase (triacylglycerol hydrolase, EC 3.1.1.3) is able to catalyze the hydrolysis of ester bonds of triacylglycerols at the interface between aqueous phase and organic phase containing substrate. With the rapid development of lipid biotechnology, lipase-catalyzed hydrolysis of lipids has a great concern from the industrial point of view. Owing to the reversible nature of the lipase, the reactions are also applied for glyceride synthesis, interesterification and resolution of racemic mixtures into optically active alcohols or acids. For all applications of the lipases, a reliable method for the determination of enzyme activity is required. Precise quantitative determination of its activity is essential as the basis of research and development of the bioprocess involving the enzyme. This article reviews the existing literature on the detection and determination of lipase activity from microbial, mammalian and plant sources.

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광학활성 Styrene Oxide 제조를 위한 고기능성 유전자 재조합 Epoxide Hydrolase 생촉매 개발

  • Lee, Su-Jeong;Lee, Ji-Won;Lee, Eun-Jeong;Kim, Hui-Suk;Lee, Eun-Yeol
    • 한국생물공학회:학술대회논문집
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    • 2003.04a
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    • pp.435-438
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    • 2003
  • Epoxide hydrolase(EH) catalyze the enantioselective hydrolysis of racemic epoxides to corresponding diols. A recombinant Pichia pastoris with EH from Rhodotorula glutinis has been constructed by reverse transcriptase-polymerase chain reaction(RT-PCR). The recombinant biocatalyst enantioselectively hydrolyze (R)-styrene oxide faster than (S)-enantiomer. The catalytic activity of recombinant biocatalyst was 7-fold higher than that of wild-type strain. The recombinant EH biocatalyst can be used for kinetic resolution for the production of enantiopure styrene oxide.

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Purification and Characterization of a Recombinant Caulobacter crescentus Epoxide Hydrolase

  • Hwang, Seung-Ha;Hyun, Hye-Jin;Lee, Byoung-Ju;Park, Young-Seub;Lee, Eun-Yeol;Choi, Cha-Yong
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.11 no.4
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    • pp.282-287
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    • 2006
  • A Caulobacter crescentus epoxide hydrolase(CCEH) from a recombinant Escherichia coli was purified to homogeneity using a three-step procedure. The CCEH protein was purified 7.3-fold with a 22.9% yield in overalll activity. The optimal reaction temperature and pH were determined to be $37^{\circ}C$ and pH 8.0, respectively. The addition of 10%(v/v) dimethylsulfoxide as a cosolvent improved the enantioselectivity of CCEH for a batch kinetic resolution of racemic indene oxide.

Liquid Chromatographic Determination of Optical Purity of Liquid Crystals

  • Lee, Seng-Kue;Shin, Myung-Soo;Lee, Jong-Gun;Kang, Kyung-Tae;Kim, Yong-Bae
    • 한국정보디스플레이학회:학술대회논문집
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    • 2002.08a
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    • pp.491-493
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    • 2002
  • Liquid chromatographic direct resolution of racemic naphthyl propionate liquid crystals were successful on a commercial chiral column, (S,S)-Whelk-O1. The very simple procedure can be applied to the intermediate and final products without any structural modification.

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Preparative Method of R-(-)-Ibuprofen by Diastereomer Crystallization

  • Trung, Tran Quoe;Kim, Jong-Moon;Kim, Kyeong-Ho
    • Archives of Pharmacal Research
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    • v.29 no.1
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    • pp.108-111
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    • 2006
  • The economic and effective method for preparation of R-(-)-ibuprofen by diastereomer crystallization was developed. R-(-)-ibuprofen was resolved from racemic ibuprofen by forming R-(-)ibuprofen-R-(+)-$\alpha$-methylbenzylamine diastereomeric salt with R-(+)-$\alpha$-methylbenzylamine and crystallization. The purity of R-(-)-ibuprofen-R-(+)-$\alpha$-methylbenzylamine diastereomeric salt was tested and confirmed using HPLC and $^1H-NMR$ method. The pure diastereomeric salt collected from repeated recrystallization was further fractionated by liquid-liquid extraction to the pure enantiomer without racemization. R-(-)-ibuprofen was recovered producing overall yield of 2.4% with the purity more than 99.97%.

Determination of Enantiomeric Purity of (S)-(+)-Ibuprofen by $^1$H-NMR using (-)- Cinchonidine as a Chiral Solvating Agent

  • Lee, Jae-Yong;Seo, Sang-Hun;Kang, Jong-Seong;Kim, Kyeong-Ho
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.219.1-219.1
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    • 2003
  • $^1$H-NMR method for the determination of enantiomeric purity of (S)-(+)-ibuprofen was developed using (-)-cinchonidine as a chiral solvating agent. (S)-(+)-ibuprofen was prepared by optical resolution of racemic ibuprofen using preferential recrystallization method with (S)-(-)-${\alpha}$-methylbenzylamine and (R)-(-)-ibuprofen by semi-preparative chiral HPLC using chiral OD column and n-hexane/2-propanol/trifluoroacetic acid as a mobile phase. Several concentrations of synthetic mixture of (S)-(+)-ibuprofen and (R)-(-)-ibuprofen were added to the (-)-cinchonidine disolved in CDCl$_3$. (omitted)

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Separation of racemic enantiomer carvedilol and its metabolites using capillary electrophoresis (Capillary Electrophoresis에 의한 carvedilol 및 그 대사체의 거울상이성질체 분리)

  • Jo, Cheon-Ho;Koo, So-Hyun;Myung, Seung-Woon
    • Analytical Science and Technology
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    • v.19 no.4
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    • pp.275-279
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    • 2006
  • A capillary electrophoresis method for the separation of carvedilol and its metabolites enantiomers using cyclodextrins as the chiral selectors was developed. The effect of several types of cyclodextrins, concentration and capillary temperature for enantiomer resolution were investigated. Best results were obtained by 15 mM carboxymethyl-${\beta}$-cyclodextrin in the run buffer. Also the effect of capillary temperature on efficiency was assessed. The optimized method was applied for separation of chiral carvedilol and its three metabolites.

Separation Characteristics of Mandelic Acid in Kromasil HPLC Column (Kromasil HPLC 칼럼에서 Mandelic Acid의 분리특성)

  • Kim, Byung Lip;Kim, Jong Min;Kim, Woo Sik;Kim, In Ho
    • Korean Chemical Engineering Research
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    • v.46 no.4
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    • pp.681-685
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    • 2008
  • Chiral separation of racemic mandelic acid was achieved on a Kromasil KR100-5CHI-TBB column. Some chromatographic parameters (resolution, number of theoretical plates, capacity factor) are calculated under different separation conditions such as changes of mobile phase compositions (hexane/t-BME = 85/15 - 10/90) as well as formic acid concentrations for adjusting pH (0.1, 0.5, 1.0 v/v%). Flow rate versus number of theoretical plates was compared to evaluate column efficiency. To determine the adsorption isotherms, PIM (Pulse Input Method) was carried out. At the concentrations of racemic mandelic acid between 0.1 and 0.3 mg/ml, L- and D-mandelic acids have the same retention times of 8.8 and 9.4 min respectively. Mandelic acid isotherms show a linear form under the concentrations of 0.3 mg/ml with eluent (hexane/t-BME = 75/25). As the concentrations of mandelic acids increase, nonlinear Langmuir isotherms were observed as $C_{S,L}=3.358C_{M,L}/(1+0.0897C_{M,L})$ for L-mandelic acid and, $C_{S,D}=3.692C_{M,D}/(1+0.1457C_{M,D})$ for D-mandelic acid.

Preparation of (S)-(+)-Pranidipine by Optical Resolution (광학 분할에 의한 (S)-(+)-Pranidipine의 제조방법)

  • Baek, Du-Jong;Yoon, Ji Hye;Kim, Moon-Sik
    • Journal of the Korean Chemical Society
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    • v.59 no.6
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    • pp.488-492
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    • 2015
  • In this study, the effective preparation method of (S)-(+)-pranidipine, the active component of antihypertensive drug as a calcium channel blocker, was developed using optical resolution. The racemic monocarboxylic acid 5 obtained by the hydrolysis of (±)-pranidipine was mixed with optically active quinidine to form salts, and the insoluble diastereomeric salt was collected and successive treatment with base and acid furnished (R)-(-)-carboxylic acid 7. (S)-(+)-Pranidipine was prepared by esterification of this acid with cinnamyl alcohol, and the analysis by chiral HPLC showed 100% enantiomeric excess (ee). This process would be industrially very useful to prepare chiral (S)-(+)-pranidipine, since the use of strong base and anhydrous solvents, and ultra-low temperature condition were excluded in this process.