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Methylthioadenosine (MTA) boosts cell‐specific productivities of Chinese hamster ovary cultures: dosage effects on proliferation, cell cycle and gene expression

机译:甲基噻吩醇(MTA)促进了中国仓鼠卵巢培养物的细胞特异性产品:剂量对增殖,细胞周期和基因表达的剂量影响

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摘要

A major goal for process and cell engineering in the biopharmaceutical industry is enhancing production through increasing volumetric and cell‐specific productivities (CSP). Here, we present 5′‐deoxy‐5′‐(methylthio)adenosine (MTA), the degradation product of S‐(5′‐adenosyl)‐L‐methionine (SAM), as a highly attractive native additive which can boost CSP by 79% when added to exponentially growing cells at a concentration of 250–300?μ m . Notably, cell viability and cell size remain higher than in non‐treated cultures. In addition, cell cycle arrests first in S‐, then in G2‐phase before levelling out compared to non‐treated cultivations. Intensive differential gene analysis reveals that expression of genes for cytoskeleton mediated proteins and vesicle transport is amplified by treatment. Furthermore, the interaction of MTA with cell proliferation additionally stimulated recombinant protein formation. The results may serve as a promising starting point for further developments in process and cell engineering to boost productivity.
机译:生物制药工业中工艺和细胞工程的主要目标是通过增加体积和细胞特异性的产品(CSP)来提高产量。在此,我们呈现5'-脱氧-5' - (甲硫基)腺苷(MTA),S-(5'-腺苷基)-1-甲硫氨酸(SAM)的降解产物,作为能够促进CSP的高度吸引力的天然添加剂当添加到浓度为250-300Ωμm时添加到指数生长细胞时,达到79%。值得注意的是,细胞活力和细胞尺寸仍然高于未处理的培养物。此外,与未处理的培养相比,细胞周期首先在S-中捕获,然后在G2相中捕获。强化差异基因分析显示,通过处理扩增了细胞骨架介导的蛋白质和囊泡转运基因的表达。此外,MTA与细胞增殖的相互作用另外刺激重组蛋白质形成。结果可以作为工艺和细胞工程进一步发展的有希望的起点,以提高生产率。

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