Biocatalysis is widely regarded as a sustainable technology to innovate Active Pharmaceutical Ingredient (API) synthesis. Biotransformation is considered a unique technology in the drug manufacturing world to unlock synthetic routes to complex chiral motifs. Sanofi is accelerating the development of...

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Main Authors: Rabion, Alain, Panigada, Davide, Roy, Sebastien, Bigot, Antony, Tedrow, Jason S.
Format: Article
Language:English
Published: Académie des sciences 2025-05-01
Series:Comptes Rendus. Chimie
Subjects:
Online Access:https://comptes-rendus.academie-sciences.fr/chimie/articles/10.5802/crchim.395/
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author Rabion, Alain
Panigada, Davide
Roy, Sebastien
Bigot, Antony
Tedrow, Jason S.
author_facet Rabion, Alain
Panigada, Davide
Roy, Sebastien
Bigot, Antony
Tedrow, Jason S.
author_sort Rabion, Alain
collection DOAJ
description Biocatalysis is widely regarded as a sustainable technology to innovate Active Pharmaceutical Ingredient (API) synthesis. Biotransformation is considered a unique technology in the drug manufacturing world to unlock synthetic routes to complex chiral motifs. Sanofi is accelerating the development of strong mindset and efficient capabilities in biocatalysis to foster API delivery and promote greener solutions for its synthetic processes.In this article, we will describe how Sanofi is building its internal biocatalytic capabilities in order to address new challenges related to sustainability and the growing complexity of its portfolio. The outcomes of recent studies will be presented demonstrating the successful implementation of the biocatalysis technology across early and late-stage development of our pipeline assets.
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institution Kabale University
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series Comptes Rendus. Chimie
spelling doaj-art-bfcda2aad7a7497a833c034884dfc3422025-08-20T03:58:18ZengAcadémie des sciencesComptes Rendus. Chimie1878-15432025-05-0128G150752010.5802/crchim.39510.5802/crchim.395Rabion, Alain0Panigada, Davide1https://orcid.org/0000-0003-0287-8426Roy, Sebastien2Bigot, Antony3https://orcid.org/0000-0003-3320-3755Tedrow, Jason S.4https://orcid.org/0000-0002-5663-2360Sanofi’s Chemistry, Manufacturing and Control, 1 impasse des ateliers, 94400 Vitry-sur-Seine, FranceSanofi’s Chemistry, Manufacturing and Control, 1 impasse des ateliers, 94400 Vitry-sur-Seine, FranceSanofi’s Chemistry, Manufacturing and Control, 1 impasse des ateliers, 94400 Vitry-sur-Seine, FranceSanofi’s Chemistry, Manufacturing and Control, 1 impasse des ateliers, 94400 Vitry-sur-Seine, FranceSanofi’s Chemistry, Manufacturing and Control, 350 Water St, Cambridge (U.S.) Massachusetts 02141, USABiocatalysis is widely regarded as a sustainable technology to innovate Active Pharmaceutical Ingredient (API) synthesis. Biotransformation is considered a unique technology in the drug manufacturing world to unlock synthetic routes to complex chiral motifs. Sanofi is accelerating the development of strong mindset and efficient capabilities in biocatalysis to foster API delivery and promote greener solutions for its synthetic processes.In this article, we will describe how Sanofi is building its internal biocatalytic capabilities in order to address new challenges related to sustainability and the growing complexity of its portfolio. The outcomes of recent studies will be presented demonstrating the successful implementation of the biocatalysis technology across early and late-stage development of our pipeline assets.https://comptes-rendus.academie-sciences.fr/chimie/articles/10.5802/crchim.395/BiocatalysisTransaminaseKetoreductaseTetrahydrofuran derivativeChiralityGreen chemistryEnzyme evolution
spellingShingle Rabion, Alain
Panigada, Davide
Roy, Sebastien
Bigot, Antony
Tedrow, Jason S.
Comptes Rendus. Chimie
Biocatalysis
Transaminase
Ketoreductase
Tetrahydrofuran derivative
Chirality
Green chemistry
Enzyme evolution
topic Biocatalysis
Transaminase
Ketoreductase
Tetrahydrofuran derivative
Chirality
Green chemistry
Enzyme evolution
url https://comptes-rendus.academie-sciences.fr/chimie/articles/10.5802/crchim.395/