Huang Yuhong, Ji Xiuling, Ma Zhanling, Łężyk Mateusz, Xue Yaju, Zhao Hai
Beijing Key Laboratory of Ionic Liquids Clean Process, CAS Key Laboratory of Green Process and Engineering, State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences Beijing 100190 China
Innovation Academy for Green Manufacture, Chinese Academy of Sciences Beijing 100190 China.
RSC Adv. 2021 Jul 7;11(39):23922-23942. doi: 10.1039/d1ra02764f. eCollection 2021 Jul 6.
Cadaverine has great potential to be used as an important monomer for the development of a series of high value-added products with market prospects. The most promising strategies for cadaverine synthesis involve using green chemical and bioconversion technologies. Herein, the review focuses on the progress and strategies towards the green chemical synthesis and biosynthesis of cadaverine. Specifically, we address the specific biosynthetic pathways of cadaverine from different substrates as well as extensively discussing the origination, structure and catalytic mechanism of the key lysine decarboxylases. The advanced strategies for process intensification, the separation and purification of cadaverine have been summarized. Furthermore, the challenging issues of the environmental, economic, and applicable impact for cadaverine production are also highlighted. This review concludes with the promising outlooks of state-of-the-art applications of cadaverine along with some insights toward their challenges and potential improvements.
尸胺作为一种重要的单体,在开发一系列具有市场前景的高附加值产品方面具有巨大潜力。最有前景的尸胺合成策略涉及使用绿色化学和生物转化技术。在此,本综述聚焦于尸胺绿色化学合成和生物合成的进展与策略。具体而言,我们阐述了从不同底物合成尸胺的特定生物合成途径,并广泛讨论了关键赖氨酸脱羧酶的起源、结构和催化机制。总结了用于过程强化、尸胺分离和纯化的先进策略。此外,还强调了尸胺生产在环境、经济和应用影响方面的挑战性问题。本综述最后展望了尸胺的前沿应用前景,并对其面临的挑战和潜在改进提出了一些见解。