Kolewe Martin E, Gaurav Vishal, Roberts Susan C
Department of Chemical Engineering, University of Massachusetts, Amherst, 686 North Pleasant Street, Amherst, Massachusetts 10003, USA.
Mol Pharm. 2008 Mar-Apr;5(2):243-56. doi: 10.1021/mp7001494.
The chemical diversity of plant-derived natural products allows them to function in a multitude of ways including flavor enhancers, agricultural chemicals, and importantly, human medicinals. Supply of pharmaceutically active natural products is often a challenge due to the slow growing nature of some species, low yields found in nature, and unpredictable variability in accumulation. Several production options are available including natural harvestation, total chemical synthesis, semisynthesis from isolated precursors, and expression of plant pathways in microbial systems. However, for some medicinal natural products, such as the anticancer agent paclitaxel, where low yields in nature, chemical complexity and lack of knowledge of the complete biosynthetic pathway, preclude many of these options, plant cell culture technology is an attractive alternative for supply. Plant cell suspension cultures are amenable to scale-up, environmental optimization, and metabolic engineering. This review focuses on some of the key challenges in utilizing and commercializing plant cell culture suspension technology, with a focus on pharmaceutically active natural products. Recent research has been directed toward application of traditional strategies such as reactor design, cell immobilization, and enzyme elicitation as well as emerging strategies such as characterizing cellular heterogeneity and variability through flow cytometric techniques, metabolic engineering, and system-wide analysis.
植物源天然产物的化学多样性使其能够以多种方式发挥作用,包括风味增强剂、农用化学品,以及重要的人类药物。由于某些物种生长缓慢、自然界产量低以及积累的不可预测变异性,药用活性天然产物的供应往往是一项挑战。有几种生产选择,包括天然采收、全化学合成、从分离的前体进行半合成,以及在微生物系统中表达植物途径。然而,对于一些药用天然产物,如抗癌药物紫杉醇,由于其在自然界中的低产量、化学复杂性以及对完整生物合成途径缺乏了解,排除了许多这些选择,植物细胞培养技术是一种有吸引力的供应替代方案。植物细胞悬浮培养易于扩大规模、进行环境优化和代谢工程。本综述重点关注利用植物细胞培养悬浮技术并将其商业化的一些关键挑战,重点是药用活性天然产物。最近的研究方向包括传统策略的应用,如反应器设计、细胞固定化和酶诱导,以及新兴策略,如通过流式细胞术技术、代谢工程和全系统分析来表征细胞异质性和变异性。