Role of Biocatalysis in Sustainable Chemistry

Роль биокатализа в устойчивой химии
Roger A. Sheldon, John M. Woodley
2017-09-06

biocatalysisenzyme immobilizationgreen chemistryprotein engineeringsustainable development
Based on the principles and metrics of green chemistry and sustainable development, biocatalysis is both a green and sustainable technology. This is largely a result of the spectacular advances in molecular biology and biotechnology achieved in the past two decades. Protein engineering has enabled the optimization of existing enzymes and the invention of entirely new biocatalytic reactions that were previously unknown in Nature. It is now eminently feasible to develop enzymatic transformations to fit predefined parameters, resulting in processes that are truly sustainable by design. This approach has successfully been applied, for example, in the industrial synthesis of active pharmaceutical ingredients. In addition to the use of protein engineering, other aspects of biocatalysis engineering, such as substrate, medium, and reactor engineering, can be utilized to improve the efficiency and cost-effectiveness and, hence, the sustainability of biocatalytic reactions. Furthermore, immobilization of an enzyme can improve its stability and enable its reuse multiple times, resulting in better performance and commercial viability. Consequently, biocatalysis is being widely applied in the production of pharmaceuticals and some commodity chemicals. Moreover, its broader application will be further stimulated in the future by the emerging biobased economy.
1
Biocatalysis is already widely applied in pharmaceutical and selected commodity-chemical production, with further expansion expected through the emerging biobased economy.
2
Biocatalysis qualifies as both a green and sustainable technology under green chemistry and sustainable development principles.
3
Enzymatic transformations can be designed to meet predefined sustainability parameters, including applications in industrial active pharmaceutical ingredient synthesis.
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Protein engineering enables optimization of natural enzymes and creation of new catalytic reactions previously unknown in Nature.
5
Substrate, medium, reactor, and enzyme-immobilization engineering improve reaction efficiency, cost-effectiveness, stability, reuse, and commercial viability.

Biocatalysis (enzymatic transformations and engineered enzyme systems used in chemical production)

the sustainability, efficiency, cost-effectiveness, stability, reusability, and industrial applicability of biocatalysis

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2017-09-06
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Roger A. Sheldon
John M. Woodley
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