Cited 3 time in
- Title
- Enhanced production of glutaric acid by biocatalyst-recycled bioconversion process integrated with in situ product recovery by adsorption
- Author(s)
- H G Cha; H T Kim; S H Park; Y Kong; B Yi; J Wang; E Song; J C Joo; Y H Yang; Jungoh Ahn; K Park
- Bibliographic Citation
- Enzyme and Microbial Technology, vol. 171, pp. 110307-110307
- Publication Year
- 2023
- Abstract
- Product inhibition caused by organic acids is a serious issue in establishing economical biochemical production systems. Herein, for enhanced production of glutaric acid by overcoming product inhibition triggered by glutaric acid, a whole-cell bioconversion system equipped with biocatalyst recycling process and in situ product recovery by adsorption was developed successfully. From the whole-cell bioconversion reaction, we found that both dissociated and undissociated forms of glutaric acid acted as an inhibitor in the whole-cell bioconversion reaction, wherein bioconversion was hindered beyond 200 mM glutaric acid regardless of reaction pH. Therefore, as the promising solution for the inhibition issue by glutaric acid, the biocatalyst-recycled bioconversion process integrated with in situ product recovery by adsorption was introduced in the whole-cell bioconversion. As a result, 592 mM glutaric acid was produced from 1000 mM 5-aminovaleric acid with 59.2% conversion. We believe that our system will be a promising candidate for economically producing organic acids with high titer.
- Keyword
- Product inhibitionGlutaric acidWhole-cell bioconversionGlutaric acid adsorptionIn situ product recovery
- ISSN
- 0141-0229
- Publisher
- Elsevier
- Full Text Link
- http://dx.doi.org/10.1016/j.enzmictec.2023.110307
- Type
- Article
- Appears in Collections:
- Division of Bio Technology Innovation > BioProcess Engineering Center > 1. Journal Articles
- Files in This Item:
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