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Preservation of epithelial progenitor cells from collagenase-digested oral mucosa during ex vivo cultivation

机译:离体培养过程中胶原酶消化口服粘膜上皮祖细胞的保存

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To avoid xenogeneic infection, we report a novel protocol for producing animal-derived component-free oral mucosal epithelial cells (OMECs) sheet for transplantation, in which collagenase was used to replace dispase II/trypsin-EDTA for digesting oral mucosal tissue, and human platelet-derived PLTMax to replace fetal bovine serum. The resulting epithelial aggregates were expanded on de-epithelialized amniotic membranes without 3T3 feeder cells, and serum-free EpiLife was used to reduce contamination by submucosal mesenchymal cells. The OMEC sheets thus generated showed similar positive keratin 3/76-positive and keratin 8-negative staining patterns compared with those generated by the original protocol. Colony formation efficiency assay, BrdU label retention assay, and p63 and p75(NTR) immunostaining results indicated that higher proliferative potentials and more progenitor cells were preserved by the modified protocol. TaqMan array analysis revealed that the transcription of integrin-linked kinase (ILK) was up-regulated along with an increase in β-catenin signaling and its downstream cell cycle modulators, cyclin D1 and p27(KIP1). Furthermore, ILK silencing led to the inhibition of nuclear β-catenin accumulation, suppressed p63 expression, and reduced the expression of cyclin D1 and p27(KIP1); these observations suggest that ILK/β-catenin pathway may be involved in cell proliferation regulation during the ex vivo expansion of OMECs for transplantation purposes.
机译:为了避免异共性感染,我们报告了一种用于制备用于移植的动物衍生的无粘膜上皮细胞(OMEC)片材的新型方案,其中胶原酶用于替代DIAMASE II / TRYPSIN-EDTA用于消化口腔粘膜组织和人血小板衍生的pltmax替代胎牛血清。将所得上皮聚集体在没有3T3进料细胞的去上皮细胞化羊膜上膨胀,并且使用无血清外膜来减少粘膜间充质细胞的污染。与由原始方案产生的那些相比,由此产生的OMEC片显示出类似的阳性角蛋白3/76阳性和角蛋白8负染色模式。菌落形成效率测定,BRDU标记保留测定和P63和P75(NTR)的免疫染色结果表明,通过修饰的方案保留了更高的增殖潜力和更多的祖细胞。 Taqman阵列分析显示,整合蛋白连接激酶(ILK)的转录随着β-连环蛋白信号传导的增加以及其下游细胞周期调节剂,细胞周期蛋白D1和P27(KIP1)。此外,ILK沉默导致核β-连环蛋白积累的抑制,抑制P63表达,并降低了细胞周期蛋白D1和P27的表达(KIP1);这些观察结果表明,ILK /β-CAT键素途径可以参与细胞增殖调节在OMECS的EMECS以进行移植目的。

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