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Biotechnological approaches to enhance the biosynthesis of ginkgolides and bilobalide in Ginkgo biloba

机译:增强银杏叶中银杏内酯和银杏内酯生物合成的生物技术方法

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摘要

Ginkgo biloba is one of the oldest living tree species and its extracts or powdered leaves are one of the best selling herbal preparations. The main bioactive constituents are flavonoids and the terpene trilactones, ginkgolides and bilobalide, which are responsible for their pharmacological activity. However, there are many difficulties for ginkgo leaves supply and the chemical synthesis is far from of being applicable for commercial-scale production. G. biloba cell cultures have arisen as a useful alternative source of pharmacologically active terpene trilactones. This review sheds light on the chemistry and biosynthesis of terpene trilactones with the aim of increasing the production of these high value compounds by biotechnological approaches. Different biotechnological strategies to improve ginkgolides and bilobalide production will be discussed, including screening and selection of in vitro ginkgo cultures, cell differentiation levels of these cultures, optimization of culture conditions, feeding and elicitation strategies. Special attention will be paid in developing new methodologies to enhance ginkgo cell biomass and provide high amounts of these bioactive terpene trilactones using large-scale cell cultures.
机译:银杏是现存最古老的树种之一,其提取物或粉状叶子是最畅销的草药。主要的生物活性成分是类黄酮和萜内酯,银杏内酯和银杏内酯,这是它们的药理活性。然而,银杏叶供应存在许多困难,并且化学合成远远不能用于商业规模的生产。银杏G.biloba细胞培养物已成为药理活性萜烯三内酯的有用替代来源。这篇综述阐明了萜烯三内酯的化学和生物合成,目的是通过生物技术方法增加这些高价值化合物的生产。将讨论改善银杏内酯和银杏内酯生产的不同生物技术策略,包括筛选和选择体外银杏培养物,这些培养物的细胞分化水平,优化培养条件,进食和诱导策略。在开发新方法以提高银杏细胞生物量并使用大规模细胞培养物提供大量这些生物活性萜烯三内酯的过程中,将给予特别关注。

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