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Restored in vivo-like membrane lipidomics positively influence in vitro features of cultured mesenchymal stromal/stem cells derived from human placenta

机译:恢复的体内样膜脂质组学积极影响人胎盘来源的间充质基质/干细胞的体外培养特性

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Background The study of lipid metabolism in stem cell physiology has recently raised great interest. The role of lipids goes beyond the mere structural involvement in assembling extra- and intra-cellular compartments. Nevertheless, we are still far from understanding the impact of membrane lipidomics in stemness maintenance and differentiation patterns. In the last years, it has been reported how in vitro cell culturing can modify membrane lipidomics. The aim of the present work was to study the membrane fatty acid profile of mesenchymal stromal cells (MSCs) derived from human fetal membranes (hFM-MSCs) and to correlate this to specific biological properties by using chemically defined tailored lipid supplements (Refeed?). Methods Freshly isolated hFM-MSCs were characterized for their membrane fatty acid composition. hFM-MSCs were cultivated in vitro following a classical protocol and their membrane fatty acid profile at different passages was compared to the profile in vivo. A tailored Refeed? lipid supplement was developed with the aim of reducing the differences created by the in vitro cultivation and was tested on cultured hFM-MSCs. Cell morphology, viability, proliferation, angiogenic differentiation, and immunomodulatory properties after in vitro exposure to the tailored Refeed? lipid supplement were investigated. Results A significant modification of hFM-MSC membrane fatty acid composition occurred during in vitro culture. Using a tailored lipid supplement, the fatty acid composition of cultured cells remained more similar to their in vivo counterparts, being characterized by a higher polyunsaturated and omega-6 fatty acid content. These changes in membrane composition had no effect on cell morphology and viability, but were linked with increased cell proliferation rate, angiogenic differentiation, and immunomodulatory properties. In particular, Refeed?-supplemented hFM-MSCs showed greater ability to express fully functional cell membrane molecules. Conclusions Culturing hFM-MSCs alters their fatty acid composition. A tailored lipid supplement is able to improve in vitro hFM-MSC functional properties by recreating a membrane environment more similar to the physiological counterpart. This approach should be considered in cell therapy applications in order to maintain a higher cell quality during in vitro passaging and to influence the outcome of cell-based therapeutic approaches when cells are administered to patients.
机译:背景技术最近,对干细胞生理学中脂质代谢的研究引起了极大的兴趣。脂质的作用超出了组装细胞外和细胞内区室的单纯结构性参与。尽管如此,我们仍然远未了解膜脂质组学对茎维持和分化模式的影响。近年来,已经报道了体外细胞培养如何修饰膜脂质组学。本工作的目的是研究源自人胎膜(hFM-MSC)的间充质基质细胞(MSC)的膜脂肪酸谱,并通过使用化学定义的量身定制的脂质补充剂(Refeed?)将其与特定的生物学特性相关联。 。方法对新鲜分离的hFM-MSCs的膜脂肪酸组成进行表征。按照经典方法在体外培养hFM-MSC,并将其在不同传代时的膜脂肪酸谱与体内谱进行比较。量身定制的补给?脂质补充剂的开发旨在减少体外培养产生的差异,并在培养的hFM-MSC上进行了测试。体外暴露于量身定制的Refeed后的细胞形态,活力,增殖,血管生成分化和免疫调节特性研究了脂质补充剂。结果体外培养过程中,hFM-MSC膜脂肪酸组成发生了显着改变。使用定制的脂质补充剂,培养细胞的脂肪酸组成与体内的脂肪酸组成更加相似,其特征在于较高的多不饱和脂肪酸和omega-6脂肪酸含量。膜组成的这些变化对细胞形态和活力没有影响,但与细胞增殖速率,血管生成分化和免疫调节特性有关。特别地,补充有Refeed 2的hFM-MSC显示出表达完全功能的细胞膜分子的能力。结论培养hFM-MSC可改变其脂肪酸组成。量身定制的脂质补充剂能够通过重建更类似于生理对应物的膜环境来改善体外hFM-MSC功能特性。为了在体外传代过程中维持较高的细胞质量并在将细胞施用于患者时影响基于细胞的治疗方法的结果,应在细胞治疗应用中考虑该方法。

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