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作为抗癌药物喜树碱生产平台的内生菌的当前研究进展。

Current advances of endophytes as a platform for production of anti-cancer drug camptothecin.

作者信息

Ruan Qingyan, Patel Gopal, Wang Jingyi, Luo Enhui, Zhou Wei, Sieniawska Elwira, Hao Xiaolong, Kai Guoyin

机构信息

Laboratory of Medicinal Plant Biotechnology, College of Pharmacy, Zhejiang Chinese Medical University, Hangzhou, 310053, China.

Department of Pharmacognosy, Medical University of Lublin, Chodzki 1, 20-093, Lublin, Poland.

出版信息

Food Chem Toxicol. 2021 May;151:112113. doi: 10.1016/j.fct.2021.112113. Epub 2021 Mar 16.

Abstract

Camptothecin (CPT), a well-known monoterpenoid indole alkaloid with broad-spectrum anti-cancer activity, is produced from plants and endophytes. In view of the limitations of plants as sources of camptothecin in productivity and efficiency, endophytes serve as the fast growth, high cost-effectiveness, good reproducibility, and feasible genetic manipulation, so they have the potential to meet the huge market demand of the pharmaceutical industry. In this review, we summarized the isolation, identification and fermentation of CPT-producing endophytes, as well as the biosynthesis, extraction and detection of camptothecin from endophytes. Among them, we put emphasis on increasing the production of camptothecin in endophytes through different strategies such as changing the proportion of carbon, nitrogen and phosphate source, adding the precursors, elicitors or adsorbent resin, utilizing co-culture fermentation or fermenter culture. However, cell subculture and metabolic reprogramming affect the expression of camptothecin biosynthetic genes in CPT-producing endophytes, which poses a challenge to the industrial production of camptothecin. Therefore, it will be useful to gain insights through the review of these researches and provide alternative approaches to develop economical, eco-friendly and reliable natural products.

摘要

喜树碱(CPT)是一种著名的具有广谱抗癌活性的单萜吲哚生物碱,可从植物和内生菌中产生。鉴于植物作为喜树碱来源在生产力和效率方面的局限性,内生菌具有生长迅速、成本效益高、可重复性好以及基因操作可行等特点,因此它们有潜力满足制药行业巨大的市场需求。在本综述中,我们总结了产喜树碱内生菌的分离、鉴定和发酵,以及从内生菌中生物合成、提取和检测喜树碱的方法。其中,我们着重介绍了通过改变碳源、氮源和磷源的比例、添加前体、诱导剂或吸附树脂、利用共培养发酵或发酵罐培养等不同策略来提高内生菌中喜树碱的产量。然而,细胞传代培养和代谢重编程会影响产喜树碱内生菌中喜树碱生物合成基因的表达,这对喜树碱的工业化生产构成了挑战。因此,通过对这些研究的综述获得见解并提供开发经济、环保和可靠天然产物的替代方法将是有益的。

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