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首页> 外文期刊>PLoS One >Comparison of Epithelial Differentiation and Immune Regulatory Properties of Mesenchymal Stromal Cells Derived from Human Lung and Bone Marrow
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Comparison of Epithelial Differentiation and Immune Regulatory Properties of Mesenchymal Stromal Cells Derived from Human Lung and Bone Marrow

机译:人肺和骨髓间充质基质细胞上皮分化和免疫调节特性的比较

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Mesenchymal stromal cells (MSCs) reside in many organs including lung, as shown by their isolation from fetal lung tissues, bronchial stromal compartment, bronchial-alveolar lavage and transplanted lung tissues. It is still controversial whether lung MSCs can undergo mesenchymal-to-epithelial-transition (MET) and possess immune regulatory properties. To this aim, we isolated, expanded and characterized MSCs from normal adult human lung (lung-hMSCs) and compared with human bone marrow-derived MSCs (BM-hMSCs). Our results show that lung-MSCs reside at the perivascular level and do not significantly differ from BM-hMSCs in terms of immunophenotype, stemness gene profile, mesodermal differentiation potential and modulation of T, B and NK cells. However, lung-hMSCs express higher basal level of the stemness-related marker nestin and show, following in vitro treatment with retinoic acid, higher epithelial cell polarization, which is anyway partial when compared to a control epithelial bronchial cell line. Although these results question the real capability of acquiring epithelial functions by MSCs and the feasibility of MSC-based therapeutic approaches to regenerate damaged lung tissues, the characterization of this lung-hMSC population may be useful to study the involvement of stromal cell compartment in lung diseases in which MET plays a role, such as in chronic obstructive pulmonary disease and idiopathic pulmonary fibrosis.
机译:间质基质细胞(MSCs)存在于包括肺在内的许多器官中,如它们与胎儿肺组织,支气管基质室,支气管肺泡灌洗液和移植的肺组织的隔离所示。肺间充质干细胞能否进行间充质向上皮转化(MET)并具有免疫调节特性仍存在争议。为此,我们从正常成人肺(肺-hMSC)中分离,扩增和鉴定了MSC,并与人骨髓来源的MSC(BM-hMSC)进行了比较。我们的研究结果表明,肺间充质干细胞位于血管周围水平,在免疫表型,干基因谱,中胚层分化潜能以及对T,B和NK细胞的调节方面与BM-hMSC没有显着差异。然而,肺-hMSCs表达与干性相关的标记物nestin更高的基础水平,并在用视黄酸进行体外处理后显示出更高的上皮细胞极化,与对照上皮支气管细胞系相比无论如何还是部分的。尽管这些结果质疑了MSC获得上皮功能的真正能力以及基于MSC的治疗方法再生受损肺组织的可行性,但该肺hMSC群体的特征可能有助于研究基质细胞区隔参与肺部疾病其中MET在慢性阻塞性肺疾病和特发性肺纤维化中起作用。

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