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Trends in Biotechnology|April 2, 1998
Epoxide hydrolases: new tools for the synthesis of fine organic chemicalsA Archelas, R FurstossCurrent Opinion in Chemical Biology|April 3, 2001
Synthetic applications of epoxide hydrolasesA Archelas, R FurstossAnnual Review of Microbiology|January 1, 1997
Synthesis of enantiopure epoxides through biocatalytic approachesA Archelas, R FurstossThe Journal of Organic Chemistry|July 9, 2021
Microbiological Transformations 43. Epoxide Hydrolases as Tools for the Synthesis of Enantiopure α-Methylstyrene Oxides: A New and Efficient Synthesis of (S)-IbuprofenM Cleij, A Archelas, R FurstossBioorganic & Medicinal Chemistry|July 1, 1994
Microbiological transformations--XXIX. Enantioselective hydrolysis of epoxides using microorganisms: a mechanistic studyS Pedragosa-Moreau, A Archelas, R FurstossAdvances in Biochemical Engineering/Biotechnology|February 6, 1999
Epoxide hydrolases and their synthetic applicationsR V Orru, A Archelas, R Furstoss, et al.Biotechnology and Bioengineering|January 5, 1996
Enantioselective hydrolysis of p-nitrostyrene oxide by an epoxide hydrolase preparation from Aspergillus nigerH Nellaiah, C Morisseau, A Archelas, et al.The Journal of Organic Chemistry|June 30, 2001
Microbiological transformations. 47. A step toward a green chemistry preparation of enantiopure (S)-2-, -3-, and -4-pyridyloxirane via an epoxide hydrolase catalyzed kinetic resolutionY Genzel, A Archelas, Q B Broxterman, et al.Chirality|January 3, 2001
Enantioselective synthesis of tert-butyl tert-butanethiosulfinate catalyzed by cyclohexanone monooxygenaseS Colonna, N Gaggero, G Carrea, et al.The Journal of Organic Chemistry|October 18, 1996
Microbiological Transformations. 33. Fungal Epoxide Hydrolases Applied to the Synthesis of Enantiopure Para-Substituted Styrene Oxides. A Mechanistic ApproachS. Pedragosa-Moreau, C. Morisseau, J. Zylber, et al.Pageof 2