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Conditioned Media From Glial Cells Promote a Neural-Like Connexin Expression in Human Adipose-Derived Mesenchymal Stem Cells

机译:来自神经胶质细胞的条件培养基促进人脂肪间充质干细胞中类似神经的连接蛋白表达。

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摘要

The expression of neuronal and glial connexins (Cxs) has been evaluated in adipose-derived mesenchymal stem cells (ASCs) whose neural differentiation was promoted by a conditioned medium (CM) obtained from cultures of olfactory ensheathing cells (OECs) or Schwann cells (SCs). By immunocytochemistry and flow cytometer analysis it was found that Cx43 was already considerably expressed in naïve ASCs and further increased after 24 h and 7 days from CM exposition. Cx32 and Cx36 were significantly improved in conditioned cultures compared to control ASCs, whereas a decreased expression was noticed in the absence of CM treatments. Cx47 was virtually absent in any conditions. Altogether, high basal levels and induced increases of Cx43 expression suggest a potential attitude of ASCs toward an astrocyte differentiation, whereas the lack of Cx47 would indicate a poor propensity of ASCs to become oligodendrocytes. CM-evoked Cx32 and Cx36 increases showed that a neuronal- or a SC-like differentiation can be promoted by using this strategy. Results further confirm that environmental cues can favor an ASC neural differentiation, either as neuronal or glial elements. Of note, the use of glial products present in CM rather than the addition of chemical agents to achieve such differentiation would resemble “more physiological” conditions of differentiation. As a conclusion, the overexpression of typical neural Cxs would indicate the potential capability of neural-like ASCs to interact with neighboring neural cells and microenvironment.
机译:已在脂肪间充质干细胞(ASC)中评估了神经元和神经胶质连接蛋白(Cxs)的表达,其干细胞的神经分化受到从嗅鞘细胞(OEC)或施万细胞(SCs)培养物中获得的条件培养基(CM)的促进。 )。通过免疫细胞化学和流式细胞仪分析发现,Cx43已经在幼稚的ASC中大量表达,并在CM暴露后24小时和7天后进一步升高。与对照ASC相比,条件培养中的Cx32和Cx36显着改善,而在没有CM处理的情况下,表达降低。在任何情况下都几乎不存在Cx47。总的来说,较高的基础水平和诱导的Cx43表达增加表明ASC对星形胶质细胞分化的潜在态度,而缺乏Cx47则表明ASC成为少突胶质细胞的可能性很低。 CM引起的Cx32和Cx36的增加表明,使用这种策略可以促进神经元或SC样分化。结果进一步证实,环境提示可以促进ASC神经分化,无论是神经元还是神经胶质成分。值得注意的是,使用CM中存在的神经胶质产品而不是添加化学试剂来实现这种分化,将类似于“更具生理性”的分化条件。结论是,典型神经Cx的过表达将表明神经样ASC与邻近神经细胞和微环境相互作用的潜在能力。

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