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AF-MSCs fate can be regulated by culture conditions

机译:AF-MSCs的命运可以通过培养条件来调节

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Human mesenchymal stem cells (hMSCs) represent a population of multipotent adherent cells able to differentiate into many lineages. In our previous studies, we isolated and expanded fetal MSCs from second-trimester amniotic fluid (AF) and characterized them based on their phenotype, pluripotency and proteomic profile. In the present study, we investigated the plasticity of these cells based on their differentiation, dedifferentiation and transdifferentiation potential in vitro. To this end, adipocyte-like cells (AL cells) derived from AF-MSCs can regain, under certain culture conditions, a more primitive phenotype through the process of dedifferentiation. Dedifferentiated AL cells derived from AF-MSCs (DAF-MSCs), gradually lost the expression of adipogenic markers and obtained similar morphology and differentiation potential to AF-MSCs, together with regaining the pluripotency marker expression. Moreover, a comparative proteomic analysis of AF-MSCs, AL cells and DAF-MSCs revealed 31 differentially expressed proteins among the three cell populations. Proteins, such as vimentin, galectin-1 and prohibitin that have a significant role in stem cell regulatory mechanisms, were expressed in higher levels in AF-MSCs and DAF-MSCs compared with AL cells. We next investigated whether AL cells could transdifferentiate into hepatocyte-like cells (HL cells) directly or through a dedifferentiation step. AL cells were cultured in hepatogenic medium and 4 days later they obtained a phenotype similar to AF-MSCs, and were termed as transdifferentiated AF-MSCs (TRAF-MSCs). This finding, together with the increase in pluripotency marker expression, indicated the adaption of a more primitive phenotype before transdifferentiation. Additionally, we observed that AF-, DAF- and TRAF-MSCs displayed similar clonogenic potential, secretome and proteome profile. Considering the easy access to this fetal cell source, the plasticity of AF-MSCs and their potential to dedifferentiate and transdifferentiate, AF may provide a valuable tool for cell therapy and tissue engineering applications.
机译:人间充质干细胞(hMSCs)代表了一群能分化为许多谱系的多能贴壁细胞。在我们以前的研究中,我们从妊娠中期羊水(AF)中分离并扩增了胎儿MSC,并根据它们的表型,多能性和蛋白质组学特征对其进行了表征。在本研究中,我们基于它们在体外的分化,去分化和转分化潜能研究了这些细胞的可塑性。为此,源自AF-MSC的脂肪细胞样细胞(AL细胞)可以在一定的培养条件下通过去分化过程恢复更原始的表型。源自AF-MSC(DAF-MSC)的去分化AL细胞逐渐失去成脂标记物的表达,并获得与AF-MSC相似的形态和分化潜能,同时恢复了多能性标记物的表达。此外,对AF-MSC,AL细胞和DAF-MSC的蛋白质组学比较分析显示,这三个细胞群中有31种差异表达的蛋白质。与AL细胞相比,在干细胞调节机制中具有重要作用的波形蛋白,半乳凝素-1和抑制素等蛋白质在AF-MSC和DAF-MSC中的表达水平更高。接下来,我们研究了AL细胞是否可以直接分化或通过去分化步骤转分化为肝细胞样细胞(HL细胞)。在肝细胞培养基中培养AL细胞,并在4天后获得类似于AF-MSC的表型,并称为转分化AF-MSC(TRAF-MSC)。这一发现,加上多能性标志物表达的增加,表明在转分化之前已经适应了更原始的表型。此外,我们观察到AF-,DAF-和TRAF-MSC表现出相似的克隆潜力,分泌组和蛋白质组图谱。考虑到容易获得这种胎儿细胞来源,AF-MSC的可塑性及其去分化和转分化的潜力,AF可能为细胞疗法和组织工程应用提供有价值的工具。

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