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Toward Upscaled Biocatalytic Preparation of Lactone Building Blocks for Polymer Applications

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논문

Toward Upscaled Biocatalytic Preparation of Lactone Building Blocks for Polymer Applications

학술지

Organic process research & development

저자명

Delgove, Marie A. F.; Elford, Matthew T.; Bernaerts, Katrien V.; Wildeman, Stefaan M. A. De

초록

<P/><P>Although Baeyer&#x2013;Villiger monooxygenases (BVMOs) have gained attention in recent years, there are few cases of their upscaled application for lactone synthesis. A thermostable cyclohexanone monooxygenase from <I>Thermocrispum municipale</I> (TmCHMO) was applied to the oxidation of 3,3,5-trimethylcyclohexanone using a glucose dehydrogenase (GDH) for cofactor regeneration. The reaction progress was improved by optimizing the biocatalyst loading, with investigation into oxygen limitations. The product concentration and productivity were increased by keeping the substrate concentration below the inhibitory level via continuous substrate feeding (CSF). This substrate feeding strategy was evaluated against two biphasic reactions using either toluene or <I>n</I>-butyl acetate as immiscible organic solvents. A product concentration of 38 g L<SUP>&#x2013;1</SUP> and a space-time yield of 1.35 g L<SUP>&#x2013;1</SUP> h<SUP>&#x2013;1</SUP> were achieved during the gram-scale synthesis of the two regioisomeric lactones by applying the CSF strategy. These improvements contribute to the large-scale application of BVMOs in the synthesis of branched building blocks for polymer applications.</P>

발행연도

2018

발행기관

American Chemical Society

라이선스

cc-by-nc-nd

ISSN

1083-6160

ISSN

1520-586x

22

7

페이지

pp.803-812

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논문; 2018-06-12

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