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首页> 外文期刊>Regenerative medicine >Induced pluripotent stem cells have similar immunogenic and more potent immunomodulatory properties compared with bone marrow-derived stromal cells in vitro
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Induced pluripotent stem cells have similar immunogenic and more potent immunomodulatory properties compared with bone marrow-derived stromal cells in vitro

机译:与体外诱导的骨髓基质细胞相比,诱导的多能干细胞具有相似的免疫原性和更强的免疫调节特性

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Aim: To evaluate the in vitro immunogenic and immunomodulatory properties of induced pluripotent stem cells (iPSCs) compared with bone marrow-derived mesenchymal stromal cells (MSCs). Materials & methods: Mouse embryonic fibroblasts (MEFs) were isolated from C3HeB/FeJ and C57BL/6J mice, and reprogrammed to generate iPSCs. Mixed leukocyte reactions were performed using MHC-matched and - mismatched responder leukocytes and stimulator leukocytes, iPSCs or MSCs. To assess immunogenic potential, iPSCs and MSCs were used as stimulator cells for responder leukocytes. To assess immunomodulatory properties, iPSCs and MSCs were cultured in the presence of stimulator and responder leukocytes. MEFs were used as a control. Results: iPSCs had similar immunogenic properties but more potent immunomodulatory effects than MSCs. Co-culture of MHC-mismatched leukocytes with MHC-matched iPSCs resulted in significantly less responder T-cell proliferation than observed for MHC-mismatched leukocytes alone and at more responder leukocyte concentrations than with MSCs. In addition, MHC-mismatched iPSCs significantly reduced responder T-cell proliferation when co-cultured with MHC-mismatched leukocytes, while MHC-mismatched MSCs did not. Conclusion: These results provide important information when considering the use of iPSCs in place of MSCs in both regenerative and transplantation medicine.
机译:目的:与骨髓源性间充质干细胞(MSC)相比,评估诱导性多能干细胞(iPSC)的体外免疫原性和免疫调节特性。材料与方法:从C3HeB / FeJ和C57BL / 6J小鼠中分离出小鼠胚胎成纤维细胞(MEF),并对其进行重新编程以生成iPSC。使用MHC匹配和错配的应答者白细胞和刺激性白细胞,iPSC或MSC进行混合白细胞反应。为了评估免疫原性,将iPSC和MSC用作反应白细胞的刺激细胞。为了评估免疫调节特性,在刺激物和反应性白细胞存在下培养iPSC和MSC。使用MEF作为对照。结果:iPSC具有相似的免疫原性,但比MSC具有更强的免疫调节作用。 MHC不匹配的白细胞与MHC匹配的iPSC的共培养比单独的MHC不匹配的白细胞观察到的应答性T细胞增殖明显少,并且应答性白细胞浓度比MSC更高。此外,与MHC错配的白细胞共培养时,MHC错配的iPSCs显着降低了应答者T细胞的增殖,而MHC错配的MSC没有。结论:这些结果为在再生医学和移植医学中考虑使用iPSC代替MSC提供重要信息。

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