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Recent advances towards development and commercialization of plant cell culture processes for the synthesis of biomolecules

机译:用于合成生物分子的植物细胞培养方法的开发和商业化的最新进展

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Plant cell culture systems were initially explored for use in commercial synthesis of several high?¢????value secondary metabolites, allowing for sustainable production that was not limited by the low yields associated with natural harvest or the high cost associated with complex chemical synthesis. Although there have been some commercial successes, most notably paclitaxel production from Taxus sp., process limitations exist with regards to low product yields and inherent production variability. A variety of strategies are being developed to overcome these limitations including elicitation, in situ product removal and metabolic engineering with single genes and transcription factors. Recently, the plant cell culture production platform has been extended to pharmaceutically active heterologous proteins. Plant systems are beneficial because they are able to produce complex proteins that are properly glycosylated, folded and assembled without the risk of contamination by toxins that are associated with mammalian or microbial production systems. Additionally, plant cell culture isolates transgenic material from the environment, allows for more controllable conditions over field?¢????grown crops and promotes secretion of proteins to the medium, reducing downstream purification costs. Despite these benefits, the increase in cost of heterologous protein synthesis in plant cell culture as opposed to field?¢????grown crops is significant and therefore processes must be optimized with regard to maximizing secretion and enhancing protein stability in the cell culture media. This review discusses recent advancements in plant cell culture processing technology, focusing on progress towards overcoming the problems associated with commercialization of these production systems and highlighting recent commercial successes.
机译:最初探索了植物细胞培养系统,用于商业合成几种高价值的次生代谢产物,从而实现了可持续生产,不受与自然收获相关的低产量或与复杂化学合成相关的高成本的限制。尽管已经取得了一些商业上的成功,最著名的是从Taxus sp。生产紫杉醇,但是在产品产量低和固有的生产可变性方面存在工艺限制。正在开发各种策略来克服这些限制,包括引发,原位产物去除和具有单个基因和转录因子的代谢工程。最近,植物细胞培养物生产平台已扩展到具有药物活性的异源蛋白质。植物系统是有益的,因为它们能够产生被正确糖基化,折叠和组装的复杂蛋白质,而没有被哺乳动物或微生物生产系统相关的毒素污染的风险。另外,植物细胞培养物可将转基因物质与环境隔离,使田间生长的作物具有更可控的条件,并促进蛋白质向培养基中的分泌,从而降低了下游的纯化成本。尽管有这些好处,与田间生长的农作物相比,植物细胞培养中异源蛋白质合成的成本增加仍然是显着的,因此必须在最大化分泌和增强细胞培养基中蛋白质稳定性方面进行工艺优化。 。这篇评论讨论了植物细胞培养处理技术的最新进展,重点是克服与这些生产系统商业化相关的问题的进展,并重点介绍了近期的商业成功。

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