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Transient transfection induces different intracellular calcium signaling in CHO K1 versus HEK 293 cells

机译:瞬时转染在CHO K1和HEK 293细胞中诱导不同的细胞内钙信号传导

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For the controlled production of recombinant proteinsin mammalian cells by transient transfection, it maybe desirable not only to manipulate, but also todiagnose the expression success early. Here, weapplied laser scanning confocal microscopy to monitortransfection induced intracellular Ca2+responses. We compared Chinese hamster ovary (CHO K1)versus human embryo kidney (HEK) 293 cell lines, whichdiffer largely in their transfectability. An improvedcalcium phosphate transfection method was used for itssimplicity and its demonstrated upscale potential.Cytosolic Ca2+ signaling appeared to inverselyreflect the cellular transfection fate. Virtually allCHO cells exhibited asynchronous, cytosolicCa2+ oscillations, which peaked 4 h afteraddition of the transfecting solution. Yet, most ofthe HEK cells displayed a slow and continuousCa2+ increase over the time of transfection. CHOcells, when exposed to a transfection-enhancingglycerol shock, strongly downregulated their Ca2+response, including its oscillations. When treatedwith thapsigargin, a Ca2+ store depleting drug,the number of successfully transfected CHO cells was significantly reduced. Our result points tointracellular store release as a critical componentfor the transfection fate of CHO cells, and its early detection before product visualization.
机译:为了通过瞬时转染来控制哺乳动物细胞中重组蛋白的生产,可能不仅希望对其进行操纵,而且还要及早诊断其表达成功。在这里,我们应用激光扫描共聚焦显微镜来监测转染诱导的细胞内Ca2 +反应。我们比较了中国仓鼠卵巢(CHO K1)与人类胚胎肾(HEK)293细胞系,它们的转染能力差异很大。一种改进的磷酸钙转染方法因其简单性和较高的开发潜力而被应用。胞质Ca2 +信号似乎与细胞转染的命运成反比。实际上,所有CHO细胞均表现出异步的cytosolicCa2 +振荡,在添加转染溶液后4 h达到峰值。然而,大多数HEK细胞在转染过程中显示出缓慢而连续的Ca2 +增加。 CHOcell暴露于转染增强型甘油休克时,会强烈下调其Ca2 +反应,包括其振荡。当用thapsigargin(一种消耗Ca2 +的药物)处理时,成功转染的CHO细胞的数量显着减少。我们的结果表明,细胞内存储释放是CHO细胞转染命运的关键组成部分,并且在产品可视化之前可被早期发现。

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