Next‐Generation Manufacturing: The Evolving Role of Biocatalysis in AstraZeneca

Biocatalysis is becoming a strategic manufacturing capability at AstraZeneca, enabling selective transformations under milder conditions and with the potential to reduce waste and resource intensity relative to conventional routes. This review summarizes how AstraZeneca is embedding biocatalysis across the portfolio to support its long-term net-zero commitments. We describe capability building across people, through expansion of cross-site expertise, automated high-throughput experimentation platforms, and academic partnerships that extend innovation and capacity. Case studies show how enzyme identification, optimization, and directed evolution translate into robust, scalable processes for active pharmaceutical ingredients. We close by defining priorities-end-to-end automated workflows and artificial intelligence-enabled design-to shorten enzyme engineering cycles and broaden biocatalysis impact across modalities.

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Publication Details

Journal
ChemBioChem
Published
2026-09-14
DOI
https://doi.org/10.1002/cbic.70489
Primary Topic
Enzyme Catalysis and Immobilization
Type
article
Field-Weighted Citation Impact
0.00

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article

Next‐Generation Manufacturing: The Evolving Role of Biocatalysis in AstraZeneca

Keith R. Mulholland, Fernando Tur, Alba Díaz‐Rodríguez, Martin A. Hayes et al.
ChemBioChem
Enzyme Catalysis and Immobilization
article

Next‐Generation Manufacturing: The Evolving Role of Biocatalysis in AstraZeneca

Keith R. Mulholland, Fernando Tur, Alba Díaz‐Rodríguez, Martin A. Hayes, Samantha Staniland
article en

Abstract

Biocatalysis is becoming a strategic manufacturing capability at AstraZeneca, enabling selective transformations under milder conditions and with the potential to reduce waste and resource intensity relative to conventional routes. This review summarizes how AstraZeneca is embedding biocatalysis across the portfolio to support its long-term net-zero commitments. We describe capability building across people, through expansion of cross-site expertise, automated high-throughput experimentation platforms, and academic partnerships that extend innovation and capacity. Case studies show how enzyme identification, optimization, and directed evolution translate into robust, scalable processes for active pharmaceutical ingredients. We close by defining priorities-end-to-end automated workflows and artificial intelligence-enabled design-to shorten enzyme engineering cycles and broaden biocatalysis impact across modalities.

ChemBioChemVol. 27(17)
AstraZeneca (United Kingdom) (GB), The University of Queensland (AU), AstraZeneca (Singapore) (SG), AstraZeneca (Poland) (PL), AstraZeneca (Finland) (FI), AstraZeneca (Italy) (IT)
AstraZeneca
Industry, innovation and infrastructure
Openalex Percentile: Top 19%
Enzyme Catalysis and Immobilization
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