首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Bioproduction of phenylethanoid glycosides by plant cell culture of Scrophularia striata Boiss.: from shake-flasks to bioreactor
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Bioproduction of phenylethanoid glycosides by plant cell culture of Scrophularia striata Boiss.: from shake-flasks to bioreactor

机译:玄参植物细胞培养生物生产苯乙醛糖苷:从摇瓶到生物反应器

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Phenylethanoid glycosides (PeG) are a class of polyphenols found in some plants that have pharmaceutical effects as anti-inflammatories and anti-oxidants. The presence of PeG (acteoside) in the aerial parts of Scrophularia striata Boiss. has been demonstrated. Considerable progress has been made using plant cell cultures to stimulate formation and accumulation of secondary metabolites. The present study optimized phenylethanoid production from shake flasks to bioreactor using a cell culture of S. striata. The optimal conditions for production of cell biomass by scale-up to a bioreactor were determined to be a pH of 4.8, air flow rate of 0.5-1.5 l min(-1), and mixing speed of 110-170 rpm at 25 +/- 1 degrees C in darkness. Growth parameters and PeG production were measured and compared with the results from the shake flasks. The results showed that cell biomass was high in the bioreactor (15.64 g l(-1) DW) and in the shake flasks (14.16 g l(-1) DW). The acteoside content in the bioreactor was 1404.20 mu g g(-1) DW, which is threefold higher than in the shake flasks (459.71 mu g g(-1) DW). The echinacoside concentration in the bioreactor was 1449.39 mu g g(-1), 1.36-fold lower than in the shake flasks (1973.03 mu g g(-1) DW). This study established an efficient way for production of acteoside, the major PeG, in a bioreactor.
机译:苯乙醇类苷(PeG)是在某些植物中发现的一类多酚,具有抗炎和抗氧化剂的药理作用。在玄参(Scrophularia striata Boiss)的气生部分中存在PeG(acteoside)。已经证明。使用植物细胞培养物刺激次生代谢物的形成和积累已经取得了相当大的进展。本研究优化了利用细纹葡萄球菌的细胞培养从摇瓶到生物反应器的苯乙醛类化合物的生产。通过放大到生物反应器来生产细胞生物质的最佳条件确定为:pH值为4.8,空气流速为0.5-1.5 l min(-1),在25 + /时的混合速度为110-170 rpm -在黑暗中1摄氏度。测量生长参数和PeG的产生并将其与摇瓶的结果进行比较。结果表明,在生物反应器(15.64 g l(-1)DW)和摇瓶(14.16 g l(-1)DW)中,细胞生物量较高。生物反应器中的甙含量为1404.20μg g(-1)DW,比摇瓶中(459.71μg g(-1)DW)高三倍。生物反应器中的紫锥花苷浓度为1449.39微克g(-1),比摇瓶(1973.03微克g(-1)DW)低1.36倍。这项研究建立了一种在生物反应器中生产主要植物PeG甙的有效方法。

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