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Industrial Biotransformations

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Lipase<br />

Serratia marescens<br />

6) Literature<br />

EC 3.1.1.3<br />

● Elferink, V.H.M. (1996) Progress in the application of biocatalysts in the industrial scale manufacture<br />

of chiral molecules, Proc. 11 th Int. Spring Innovations Chirality Symposium, USA<br />

● Kierkels, J.G.T., Peeters, W.P.H. (1994) Process for the enzymatic preparation of optically<br />

active transglycidic acid esters, DSM NV, EP 602740 A1<br />

● López, J.L., Matson, S.L., Stanley, T.J., Quinn, J.A. (1991) Liquid-liquid extractive membrane<br />

reactors, Bioproc. Technol. 11, 27–66<br />

● Matson, S.L. (1987) Method and apparatus for catalyst containment in multiphase membrane<br />

reactor systems, PCT WO 87/02381, PCT US 86/02089<br />

● Matsumane, H., Furui, M., Shibatani, T., Tosa, T. (1994) Production of optically active 3-phenylglycidic<br />

acid ester by the lipase from Serratia marcescens on a hollow-fiber membrane reactor,<br />

J. Ferment. Bioeng. 78, 59–63<br />

● Matsumane, H., Shibatani, T. (1994) Purification and characterization of the lipase from Serratia<br />

marcescens Sr41 8000 responsible for asymmetric hydrolysis of 3-phenylglycidic acid esters,<br />

J. Ferment. Bioeng. 77, 152–158<br />

● Tosa, T., Shibatani, T. (1995) <strong>Industrial</strong> application of immobilized biocatalysts in Japan, Ann.<br />

N. Y. Acad. Sci. 750, 364–375<br />

● Zaks, A., Dodds, D.R. (1997) Application of biocatalysis and biotransformations to the synthesis<br />

of pharmaceuticals, Drug Discovery Today, 2, 513–531<br />

310

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