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Senescence-Associated Molecular and Epigenetic Alterations in Mesenchymal Stem Cell Cultures from Amniotic Fluid of Normal and Fetus-Affected Pregnancy

机译:正常和胎儿影响的妊娠羊水间充质干细胞培养物中的衰老相关分子和表观遗传学变化。

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摘要

Human amniotic-fluid-derived mesenchymal stem cells (AF-MSCs) are interesting for their multilineage differentiation potential and wide range of therapeutic applications due to the ease of culture expansion. However, MSCs undergo replicative senescence. So far, the molecular mechanisms that underlie fetal diseases and cell senescence are still poorly understood. Here, we analyzed senescence-associated morphologic, molecular, and epigenetic characteristics during propagation of MSCs derived from AF of normal and fetus-affected pregnancy. AF-MSCs cultures from both cell sources displayed quite similar morphology and expression of specific cell surface (CD44, CD90, and CD105) and stemness (Oct4, Nanog, Sox2, and Rex1) markers but had interindividual variability in proliferation capability and time to reach senescence. Within passages 4 and 8, senescent cultures exhibited typical morphological features, senescence-associated β-galactosidase activity, increased levels of p16, and decreased levels of miR-17 and miR-21 but showed differential expression of p21, p53, and ATM dependently on the onset of cell senescence. These differences correlated with changes in the level of chromatin modifiers (DNMT1 and HDAC1) and polycomb group proteins (EZH2, SUZ12, and BMI1) paralleling with changes in the expression of repressive histone marks (H3K9me3 and H3K27me3) and stemness markers (Oct4, Nanog, Sox2, and Rex1). Therefore epigenetic factors are important for AF-MSCs senescence process that may be related with individuality of donor or a fetus malignancy status.
机译:人类羊水来源的间充质干细胞(AF-MSC)因其易于培养扩增而具有多谱系分化潜能和广泛的治疗应用价值而备受关注。然而,MSC经历复制衰老。到目前为止,对胎儿疾病和细胞衰老的分子机制仍知之甚少。在这里,我们分析了正常和胎儿受累的AF衍生的MSC传播过程中与衰老相关的形态,分子和表观遗传学特征。来自两种细胞来源的AF-MSC培养物均表现出非常相似的形态和特定细胞表面(CD44,CD90和CD105)和干性(Oct4,Nanog,Sox2和Rex1)标记的表达,但在增殖能力和到达时间方面存在个体差异衰老。在第4和8代中,衰老培养物表现出典型的形态特征,衰老相关的β-半乳糖苷酶活性,p16的水平升高以及miR-17和miR-21的水平降低,但p21,p53和ATM的表达依赖于细胞衰老的开始。这些差异与染色质修饰剂(DNMT1和HDAC1)和polycomb组蛋白(EZH2,SUZ12和BMI1)水平的变化相关,同时与组蛋白标记(H3K9me3和H3K27me3)和干标记(Oct4,Nanog)的表达变化平行,Sox2和Rex1)。因此,表观遗传因素对于AF-MSCs的衰老过程很重要,其可能与供体的个性或胎儿的恶性程度有关。

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