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首页> 外文期刊>Cell biology international. >Bone marrow mesenchymal stem cells could acquire the phenotypes of epithelial cells and accelerate vaginal reconstruction combined with small intestinal submucosa
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Bone marrow mesenchymal stem cells could acquire the phenotypes of epithelial cells and accelerate vaginal reconstruction combined with small intestinal submucosa

机译:骨髓间充质干细胞可以获取上皮细胞的表型,并促进小肠黏膜下层粘膜结合阴道重建

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Grafting material for vaginal reconstruction commonly includes the bowel, peritoneum, skin, and amniotic membrane. Bone marrow mesenchymal stem cells (MSCs) have the potential of multilineage differentiation into a variety of cells and have been widely explored in tissue engineering. In the current study, we examined whether MSCs could be differentiated to vaginal epithelial cells (VECs) upon co-culturing with VECs. We also examined whether Wnt/-catenin signaling pathway is implicated in such differentiation. Co-culture of MSCs with VECs using a transwell insert system (with no direct contact) induced the expression of VECs marker AE1/AE3 in MSCs. MSCs combined with small intestinal submucosa (SIS) scaffold were implanted in place of the native vagina in rats to observe the implications for vaginal reconstruction in vivo. Anatomic repair of neovagina was assessed by histological staining for H/E and Masson's Trichrome. GSK-3 and -catenin, main members of Wnt/-catenin signaling pathway, in MSCs were increased upon co-culturing with VECs. Exposure of co-cultured MSCs to a Wnt/-catenin signaling activator, lithium chloride (LiCl, 20 mu M) increased phosphorylated GSK-3 and -catenin and enhanced expression of AE1/AE3. In vivo-grafted cells displayed significant matrix infiltration and expressed epithelial markers in neovagina. These findings suggest that MSCs could acquire the phenotype of VECs when co-cultured with VECs, possibly via activation of Wnt/-catenin signaling. MSCs provide an alternative cell source for potential use in vaginal tissue engineering.
机译:用于阴道重建的接枝材料通常包括肠,腹膜,皮肤和羊膜。骨髓间充质干细胞(MSC)具有将多谱系分化为多种细胞的潜力,并已在组织工程学中进行了广泛的探索。在当前的研究中,我们检查了与VEC共同培养后,MSC是否可以分化为阴道上皮细胞(VEC)。我们还检查了Wnt / -catenin信号通路是否与这种分化有关。使用transwell插入系统(无直接接触)将MSC与VEC共同培养可诱导VEC标记AE1 / AE3在MSC中表达。结合小肠粘膜下层(SIS)支架的MSC植入大鼠的天然阴道,以观察其对体内阴道重建的影响。通过H / E和Masson's Trichrome组织学染色评估新阴道的解剖修复。与VECs共培养后,MSCs中Wnt / catenin信号通路的主要成员GSK-3和catenin增加。将共培养的MSC暴露于Wnt / -catenin信号激活剂氯化锂(LiCl,20μM),可增加磷酸化的GSK-3和-catenin的表达,并增强AE1 / AE3的表达。体内移植的细胞在新阴道中显示出显着的基质浸润并表达上皮标记。这些发现表明,当与VEC共培养时,MSC可能获得VEC的表型,可能是通过激活Wnt / -catenin信号传导来实现的。 MSC为阴道组织工程的潜在用途提供了另一种细胞来源。

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