首页> 外文期刊>European Journal of Immunology >Mesenchymal stem cells expanded in human platelet lysate display a decreased inhibitory capacity on T- and NK-cell proliferation and function.
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Mesenchymal stem cells expanded in human platelet lysate display a decreased inhibitory capacity on T- and NK-cell proliferation and function.

机译:间充质干细胞扩大人类血小板溶菌产物显示抑制能力下降T -天然杀伤细胞增殖和功能。

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摘要

The use of fetal bovine serum (FBS) for the culture and expansion of mesenchymal stromal cells (MSCs) limits their possible clinical applications. Although some recent studies recommended substituting FBS with human platelet lysate (HPL) for the expansion of MSCs for clinical use, the functional capacity of the expanded cells has only been partially explored. 10% FBS and two other commercial FBS-containing media (MesenCult and MesenPro) were compared with 10% HPL-containing medium for their ability to support MSCs expansion and immunomodulation. We demonstrate that HPL sustained MSC proliferation and expansion in vitro. However, the cumulative cell numbers recovered were comparable with those obtained in MesenPro medium. Moreover, we show that HPL alters the expression of some relevant MSC surface molecules, namely the DNAM-1 ligands PVR and Nectin-2, the NKG2D ligand ULBP3, the adhesion molecules CD49d and alphavbeta3 and the fibroblast-associated protein. In addition, MSCs cultured in HPL displayed impaired inhibitory capacity on T-cell proliferation to alloantigen and NK-cell proliferation and cytotoxicity. Finally, they showed decreased constitutive PGE2 production while IL-6, IL-8 and RANTES secretion were upregulated. These results imply some limitations in the use of HPL for the expansion of MSCs to be used as immunomodulators in clinical applications.
机译:胎牛血清的使用(的边后卫)间充质基质的文化和扩张细胞(msc)限制了他们可能的临床应用程序。与人类血小板推荐替代的边后卫溶菌产物(HPL)对msc的扩张临床使用,功能的能力扩大细胞只有部分探索。10%的边后卫和另外两个商业FBS-containing媒体(MesenCult和MesenPro)进行了比较10% HPL-containing媒介的能力支持msc扩张和免疫调节。证明HPL持续MSC增殖在体外和扩张。细胞数量恢复与那些可比MesenPro中获得的。HPL改变一些相关的表达MSC表面分子,即DNAM-1配体PVR和Nectin-2 NKG2D配体ULBP3,CD49d alphavbeta3和粘附分子fibroblast-associated蛋白质。培养在HPL显示抑制受损对同种抗原t细胞增殖能力天然杀伤细胞增殖和细胞毒性。最后,他们显示本构PGE2下降生产,而il - 6、引发和咆哮的分泌被调节。限制使用的HPL扩张msc作为免疫调制剂临床应用。

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