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首页> 外文期刊>Scientific reports. >Inhibition of Transforming Growth Factor-β Receptor signaling promotes culture expansion of undifferentiated human Endometrial Mesenchymal Stem/stromal Cells
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Inhibition of Transforming Growth Factor-β Receptor signaling promotes culture expansion of undifferentiated human Endometrial Mesenchymal Stem/stromal Cells

机译:转化生长因子-β受体信号传导的抑制促进未分化的人子宫内膜间充质茎/基质细胞的培养膨胀

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摘要

Human endometrial MSC (eMSC) are a novel source of MSC easily harvested from the highly regenerative uterine lining. We have developed protocols for eMSC isolation from single cell suspensions using magnetic bead-sorting using a perivascular marker antibody to SUSD2 and culture expansion in serum free medium (SFM). Similar to other MSC, eMSC spontaneously differentiate into fibroblasts during culture expansion decreasing their purity and efficacy. The aim of this study was to determine if A83-01, a TGF-β receptor inhibitor prevents eMSC differentiation in culture. SUSD2+ eMSC were cultured in SFM with bFGF/EGF in 5% O2/5% CO2. At passage 6, eMSC were incubated with or without A83-01 for 7 days, then analysed for MSC properties. A83-01 dose dependently promoted SUSD2+ eMSC proliferation and blocked apoptosis via the SMAD 2/3 pathway. Fewer A83-01 treated cells were autofluorescent or stained with β-galactosidase, indicating reduced senescence. A83-01-treated cells had higher cloning efficiency, differentiated into mesodermal lineages and expressed MSC phenotypic markers. These data suggest that A83-01 maintains SUSD2+ eMSC stemness, promoting proliferation by blocking senescence and apoptosis in late passage cultures through binding to TGF-β receptors. Small molecules such as A83-01 may enable the expansion of undifferentiated MSC for use in tissue engineering and cell-based therapies.
机译:人的子宫内膜MSC(EMSC)是从高再生子宫衬里收获的新型MSC来源。我们开发了使用磁珠子分选使用血管标记抗体对血清自由培养基(SFM)的培养膨胀的单细胞悬浮液的EMSC隔离协议。与其他MSC类似,EMSC在培养膨胀期间自发地分化成成纤维细胞,降低其纯度和功效。本研究的目的是确定A83-01,TGF-β受体抑制剂是否可防止培养物的EMSC分化。 SUSD2 + 在SFM中用BFGF / EGF培养5%O 2 / 5%CO 2 。在通道6中,将EMSC与A83-01一起温育7天,然后分析MSC性质。 A83-01依赖于SMAD 2/3途径依赖于依赖于SuSD2 + EMSC增殖并阻断细胞凋亡。将A83-01处理的细胞较少是自荧光或用β-半乳糖苷酶染色,表明衰老降低。 A83-01处理的细胞具有更高的克隆效率,分化为中胚层谱系并表达MSC表型标记。这些数据表明A83-01通过与TGF-β受体结合阻断晚期通道培养物中的衰老和细胞凋亡,通过结合TGF-β受体来维持SUSD2 + / SUP> EMSC茎,促进增殖。诸如A83-01的小分子可以使未分化的MSC扩展用于组织工程和基于细胞的疗法。

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