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Immunosuppressive properties of mesenchymal stromal cell cultures derived from the limbus of human and rabbit corneas

机译:人角膜缘和兔角膜缘的间充质基质细胞培养物的免疫抑制特性

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Background aims. Mesenchymal stromal cells (MSCs) cultivated from the corneal limbus (L-MSCs) provide a potential source of cells for corneal repair. In the present study, we investigated the immunosuppressive properties of human L-MSCs and putative rabbit L-MSCs to develop an allogeneic therapy and animal model of L-MSC transplantation. Methods. MSClike cultures were established from the limbal stroma of human and rabbit (New Zealand white) corneas using either serumsupplemented medium or a commercial serum-free MSC medium (MesenCult-XF Culture Kit; Stem Cell Technologies, Melbourne, Australia). L-MSC phenotype was examined by flow cytometry. The immunosuppressive properties of L-MSC cultures were assessed using mixed leukocyte reactions. L-MSC cultures were also tested for their ability to support colony formation by primary limbal epithelial (LE) cells. Results. Human L-MSC cultures were typically CD34~-, CD45~- and HLADR ~- and CD73~+, CD90~+, CD105~+ and HLA-ABC~+. High levels (>80%) of CD146 expression were observed for L-MSC cultures grown in serum-supplemented medium but not cultures grown in MesenCult-XF (approximately 1%). Rabbit L-MSCs were approximately 95% positive for major histocompatibility complex class I and expressed lower levels of major histocompatibility complex class II (approximately 10%), CD45 (approximately 20%), CD105 (approximately 60%) and CD90 (<10%). Human L-MSCs and rabbit L-MSCs suppressed human T-cell proliferation by up to 75%. Conversely, L-MSCs from either species stimulated a 2-fold to 3-fold increase in LE cell colony formation. Conclusions. L-MSCs display immunosuppressive qualities in addition to their established non-immunogenic profile and stimulate LE cell growth in vitro across species boundaries. These results support the potential use of allogeneic L-MSCs in the treatment of corneal disorders and suggest that the rabbit would provide a useful pre-clinical model.
机译:背景目标。从角膜缘(L-MSC)培养的间充质基质细胞(MSC)为角膜修复提供了潜在的细胞来源。在本研究中,我们调查了人L-MSC和推定的兔L-MSC的免疫抑制特性,以开发同种异体疗法和L-MSC移植的动物模型。方法。使用补充了血清的培养基或市售的无血清MSC培养基(MesenCult-XF Culture Kit; Stem Cell Technologies,澳大利亚墨尔本),从人和兔(新西兰白)角膜的角膜缘基质建立了MSClike培养物。通过流式细胞术检查L-MSC表型。使用混合白细胞反应评估L-MSC培养物的免疫抑制特性。还测试了L-MSC培养物支持原发性角膜缘上皮(LE)细胞集落形成的能力。结果。人L-MSC培养物通常为CD34-,CD45-和HLADR-以及CD73-,CD90-,CD105-和HLA-ABC-。对于在补充了血清的培养基中生长的L-MSC培养物,观察到高水平(> 80%)的CD146表达,但在MesenCult-XF中生长的培养物未观察到CD146表达(约1%)。兔L-MSC的主要组织相容性复合物I类阳性约95%,并且表达的主要组织相容性复合物II类较低(约10%),CD45(约20%),CD105(约60%)和CD90(<10%) )。人L-MSC和兔L-MSC抑制人T细胞的增殖高达75%。相反,来自任一物种的L-MSC刺激LE细胞集落形成增加2到3倍。结论L-MSC除具有既定的非免疫原性特征外,还具有免疫抑制特性,并能刺激LE细胞在体外跨物种边界生长。这些结果支持同种异体L-MSC在角膜疾病治疗中的潜在用途,并表明该兔子将提供有用的临床前模型。

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