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Titlebook: Biocatalysis; From Discovery to Ap Wolf-Dieter Fessner,A. Archelas,F. Wedekind Book 1999 Springer-Verlag Berlin Heidelberg 1999 Biocatalysi

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Current Status of Total Ankle Replacementermediates in fine organic chemistry, in particular for the synthesis of biologically active compounds in optically pure form.Therefore, research work aimed to set up efficient procedures allowing for the preparation of such target molecules has been intensively developed recently, leading to the em
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https://doi.org/10.1007/978-4-431-68096-3dition of hydrogen cyanide to aldehydes or ketones to give enantiopure .-hydroxynitriles. This simple method of C-C bond formation has become a promising method to obtain a number of biologically active compounds. Cyanohydrin fission plays an important role in nature and is involved in plant defence
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Biocatalytic Approaches for the Synthesis of Enantiopure Epoxides,tion of racemic substrates already bearing an oxirane ring. Several of these approaches have been shown to allow the synthesis of epoxides of different structures,which were thus obtained in enantiomerically enriched or even enantiopure form.
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Oxynitrilases: From Cyanogenesis to Asymmetric Synthesis,ive applications. The three dimensional structure of the (.)-oxynitrilase from . has been determined, and suggestions concerning the reaction mechanism have been discussed. Several procedures employing oxynitrilases have been developed to date which enable cyanohydrin formation on a preparative scal
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by modern screening, evolutionary or immunological approaches - through immobilization techniques for technical processes, to their use in the asymmetric synthesis of important target compounds.978-3-540-66970-8978-3-540-68116-8
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Current Status of Total Ankle Replacementtion of racemic substrates already bearing an oxirane ring. Several of these approaches have been shown to allow the synthesis of epoxides of different structures,which were thus obtained in enantiomerically enriched or even enantiopure form.
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https://doi.org/10.1007/978-4-431-68096-3ive applications. The three dimensional structure of the (.)-oxynitrilase from . has been determined, and suggestions concerning the reaction mechanism have been discussed. Several procedures employing oxynitrilases have been developed to date which enable cyanohydrin formation on a preparative scal
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