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医药秋水仙碱的上游生物制造。

Upstream biomanufacturing of pharmaceutical colchicine.

机构信息

a Department of Engineering Technology, College of Technology , University of Houston , Houston , TX , USA.

出版信息

Crit Rev Biotechnol. 2018 Feb;38(1):83-92. doi: 10.1080/07388551.2017.1312269. Epub 2017 Apr 12.

Abstract

The plant-based colchicine potentially affects major diseases such as cardiovascular events, cancers and gout. Gloriosa superba seeds are a conventional pharmaceutical source of colchicine. The demand for pharmaceutical-grade colchicine has increased due to the shortage of feasible upstream manufacturing, encompassing all stages in the processes of biosynthesis and biomanufacturing before the raw material is ready for purification. Consequently, developing sustainable upstream industrial colchicine biofactories is imperative, especially in curtailing drug costs. A new upstream bioprocess has been established, using specialized biorhizomes with comprehensive specific-enzymes that catalyze the construction of biogenic functionalized intermediates that are converted into colchicine. This review emphasizes a novel biorhizome approach for biomanufacturing pharmaceutical-grade natural colchicine, a biosynthetic pathway elucidation and its challenges to synthetic biotechnology.

摘要

基于植物的秋水仙素可能会影响主要疾病,如心血管事件、癌症和痛风。醉茄种子是秋水仙素的传统药物来源。由于上游可行制造的短缺,包括生物合成和生物制造过程的所有阶段,在原材料准备好进行纯化之前,对医药级秋水仙素的需求增加了。因此,开发可持续的上游工业秋水仙素生物工厂势在必行,特别是在降低药物成本方面。已经建立了一个新的上游生物工艺,使用专门的生物根茎,其中包含全面的特定酶,这些酶可以催化生物功能化中间体的构建,这些中间体被转化为秋水仙素。本综述强调了一种用于生物制造医药级天然秋水仙素的新型生物根茎方法,阐明了生物合成途径及其对合成生物技术的挑战。

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