4.6 Review

Multi-Enzyme Systems in Flow Chemistry

Journal

PROCESSES
Volume 9, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/pr9020225

Keywords

microreactor; reaction cascade; whole cell; immobilization; scale-up

Funding

  1. FCT-Portuguese Foundation for Science and Technology [UID/BIO/04565/2020]

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In recent years, there has been a growing interest in using biocatalysts in flow reactors, combining the high selectivity and mild operation conditions of biocatalysis with the advantages of flow chemistry. This approach allows for efficient cascade reactions, mimics natural metabolic pathways, and provides opportunities for novel production pathways.
Recent years have witnessed a growing interest in the use of biocatalysts in flow reactors. This merging combines the high selectivity and mild operation conditions typical of biocatalysis with enhanced mass transfer and resource efficiency associated to flow chemistry. Additionally, it provides a sound environment to emulate Nature by mimicking metabolic pathways in living cells and to produce goods through the systematic organization of enzymes towards efficient cascade reactions. Moreover, by enabling the combination of enzymes from different hosts, this approach paves the way for novel pathways. The present review aims to present recent developments within the scope of flow chemistry involving multi-enzymatic cascade reactions. The types of reactors used are briefly addressed. Immobilization methodologies and strategies for the application of the immobilized biocatalysts are presented and discussed. Key aspects related to the use of whole cells in flow chemistry are presented. The combination of chemocatalysis and biocatalysis is also addressed and relevant aspects are highlighted. Challenges faced in the transition from microscale to industrial scale are presented and discussed.

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