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首页> 外文期刊>Bioscience Reports >Elucidating the contribution of the elemental composition of fetal calf serum to antigenic expression of primary human umbilical-vein endothelial cells in vitro
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Elucidating the contribution of the elemental composition of fetal calf serum to antigenic expression of primary human umbilical-vein endothelial cells in vitro

机译:阐明胎牛血清的元素组成对体外原代人脐静脉内皮细胞抗原表达的贡献

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One of the major obstacles to obtaining human cells of a defined and reproducible standard suitable for use as medical therapies is the necessity for FCS (fetal calf serum) media augmentation in routine cell culture applications. FCS has become the supplement of choice for cell culture research, as it contains an array of proteins, growth factors and essential ions necessary for cellular viability and proliferation in vitro. It is, however, a potential route for the introduction of zoonotic pathogens and makes defining the cell culture milieu impossible in terms of reproducibility, as the precise composition of each batch of serum not only changes but is in fact extremely variable. The present study determined the magnitude of donor variations in terms of elemental composition of FCS and the effect these variations had on the expression of a group of proteins associated with the antigenicity of primary human umbilical-vein endothelial cells, using a combination of ICPMS (inductively coupled plasma MS) and flow cytometry. Statistically significant differences were demonstrated for a set of trace elements in FCS, with correlations made to variations in antigenic expression during culture. The findings question in detail the suitability of FCS for the in vitro supplementation of cultures of primary human cells due to the lack of reproducibility and modulations in protein expression when cultured in conjunction with sera from xenogeneic donors.
机译:获得适合用作药物治疗的确定的和可重复的标准的人类细胞的主要障碍之一是在常规细胞培养应用中增加FCS(胎牛血清)培养基的必要性。 FCS已成为细胞培养研究的选择的补充,因为它包含一系列蛋白质,生长因子和必需离子,这些离子是细胞存活和体外增殖所必需的。然而,这是一种引入人畜共患病原体的潜在途径,并且就可再现性而言,无法定义细胞培养环境,因为每批血清的精确组成不仅会发生变化,而且实际上变化很大。本研究使用ICPMS(归纳法)确定了FCS元素组成方面供体变异的程度以及这些变异对与原代人脐静脉内皮细胞抗原性相关的一组蛋白质表达的影响耦合血浆MS)和流式细胞仪。证明了FCS中一组微量元素具有统计学上的显着差异,并且与培养过程中抗原表达的变化具有相关性。由于与异种供体的血清一起培养时,由于缺乏可重复性和蛋白质表达的调节,因此该发现详细质疑了FCS是否适合体外补充原代人细胞的培养物。

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