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Original Articles

Microbial Enantioselective Reduction of Acetylpyridine Derivatives

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Pages 809-814 | Received 18 Oct 2002, Accepted 27 Dec 2002, Published online: 22 May 2014

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Engin Şahin, Hüseyin Serencam & Enes Dertli. (2019) Production of enantiomerically pure (S)-phenyl(pyridin-2-yl)methanol with Lactobacillus paracasei BD101. Biocatalysis and Biotransformation 37:6, pages 448-454.
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Shigeru KAWANO, Miho YANO, Junzo HASEGAWA & Yoshihiko YASOHARA. (2011) Purification and Characterization of an NADH-Dependent Alcohol Dehydrogenase from Candida maris for the Synthesis of Optically Active 1-(Pyridyl)ethanol Derivatives. Bioscience, Biotechnology, and Biochemistry 75:6, pages 1055-1060.
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Articles from other publishers (15)

Jie Tian, Xin Meng, Hao Sun, Qian Chen, Qian Xu, Pinli Dai, Linlin Li, Lin Zhang & Chun Li. (2023) Cinchona-Alkaloid-Derived NN Ligands and Achiral Phosphines for Iridium-Catalyzed Asymmetric Hydrogenation of Heteroaromatic and α-Chloroheteroaryl Ketones. The Journal of Organic Chemistry 88:13, pages 9213-9224.
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Ya-Cheng Hao, Min-Hua Zong, Qi Chen & Ning Li. (2023) Engineering carbonyl reductase for one-pot chemobiocatalytic enantioselective synthesis of a value-added N-containing chiral alcohol from N -acetyl- d -glucosamine . Green Chemistry 25:13, pages 5051-5058.
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Timo Broese, Peter Ehlers, Peter Langer & Jan Langermann. (2021) Chemoenzymatic Asymmetric Synthesis of Pyridine‐Based α‐Fluorinated Secondary Alcohols. ChemBioChem.
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Chun Li, Xunhua Lu, Mengna Wang, Ling Zhang, Jian Jiang, Shunfa Yan, Yuanyong Yang, Yonglong Zhao & Lin Zhang. (2020) A simple and efficient asymmetric hydrogenation of heteroaromatic ketones with iridium catalyst composed of chiral diamines and achiral phosphines. Tetrahedron Letters 61:39, pages 152356.
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建冬 韩. (2019) Application Potential of Chiral Drugs in Diagnostics. Medical Diagnosis 09:01, pages 29-33.
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Shigeru Kawano, Junzo Hasegawa & Yoshihiko Yasohara. (2014) Efficient synthesis of (R)-3-hydroxypentanenitrile in high enantiomeric excess by enzymatic reduction of 3-oxopentanenitrile. Applied Microbiology and Biotechnology 98:13, pages 5891-5900.
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Chun Li, Lin Zhang, Congye Zheng, Xueli Zheng, Haiyan Fu, Hua Chen & Ruixiang Li. (2014) Heterogeneous asymmetric hydrogenation of heteroaromatic methyl ketones catalyzed by cinchona-modified iridium catalysts. Tetrahedron: Asymmetry 25:10-11, pages 821-824.
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Mohan Pal, Gautam Srivastava, Lomary S. Moon & Ravinder S. Jolly. (2012) Bioreduction of methyl heteroaryl and aryl heteroaryl ketones in high enantiomeric excess with newly isolated fungal strains. Bioresource Technology 118, pages 306-314.
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Ch Sree Lakshmi, Goka Roopa Reddy & Adari Bhaskar Rao. (2011) Asymmetric Reduction of Heteroaryl Methyl Ketones Using <i>Daucus carota</i>. Green and Sustainable Chemistry 01:04, pages 117-122.
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. 2011. The Yeasts. The Yeasts r1 r178 .
Junzo Hasegawa, Hirokazu Nanba & Yoshihiko Yasohara. 2010. Asymmetric Catalysis on Industrial Scale. Asymmetric Catalysis on Industrial Scale 79 109 .
Michael C. FlickingerYamamoto Hiroaki. 2009. Encyclopedia of Industrial Biotechnology. Encyclopedia of Industrial Biotechnology.
Hirokazu Nanba, Yoshihiko Yasohara, Junzo Hasegawa & Satomi Takahashi. (2007) Bioreactor Systems for the Production of Optically Active Amino Acids and Alcohols. Organic Process Research & Development 11:3, pages 503-508.
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Pankaj Soni, Gurmeet Kaur, Asit K. Chakraborti & Uttam C. Banerjee. (2005) Candida viswanathii as a novel biocatalyst for stereoselective reduction of heteroaryl methyl ketones: a highly efficient enantioselective synthesis of (S)-?-(3-pyridyl)ethanol. Tetrahedron: Asymmetry 16:14, pages 2425-2428.
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Ken-ichi Itoh, Hiroshi Sakamaki, Kaoru Nakamura & C. Akira Horiuchi. (2005) Biocatalytic asymmetric reduction of 3-acetylisoxazoles. Tetrahedron: Asymmetry 16:7, pages 1403-1408.
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