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Study of the microRNA expression profile of foreskin derived mesenchymal stromal cells following inflammation priming

机译:炎症引发后包皮来源的间充质基质细胞的microRNA表达谱研究

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Background Due to their self-renewal capacity, multi-lineage potential, and immunomodulatory properties, mesenchymal stromal cells (MSCs) are an attractive tool for different therapeutic strategies. Foreskin (FSK), considered as a biological waste material, has already been shown to be a valuable source of MSCs. Besides their typical fibroblast like morphology and International Society for cellular Therapy compliant phenotype, foreskin-MSCs (FSK–MSCs) are clonogenic, and highly proliferative cells with multi-lineage and strong immunomodulatory capacities. Of importance, FSK–MSCs properly adjust their fate following exposure to inflammatory signals. Being potent regulators of gene expression, miRNAs are involved in modulating nearly all cellular processes and in orchestrating the roles of different immune cells. In this study, we characterized the miRNome of FSK–MSCs by determining the expression profile of 380 different miRNAs in inflammation primed vs. control non-primed cells. Methods TaqMan low density array (TLDA) was performed to identify dysregulated miRNAs after exposing FSK–MSCs to inflammatory signals. Quantitative real-time RT-PCR was carried out to validate the observations. DIANA-miRPath analysis web server was used to identify potential pathways that could be targeted by the dysregulated miRNAs. Results Sixteen miRNAs were differentially expressed in inflammation-primed vs. non-primed FSK–MSCs. The expression level of miR-27a, -145, -149, -194, -199a, -221, -328, -345, -423-5p, -485-3p, -485-5p, -615-5p and -758 was downregulated whilst that of miR-155, -363 and -886-3p was upregulated. Target pathway prediction of those differentially expressed miRNAs identified different inflammation linked pathways. Conclusions After determining their miRNome, we identified a striking effect of inflammatory signals on the miRNAs’ expression levels in FSK–MSCs. Our results highlight a potential role of miRNAs in modulating the transcription programs of FSK–MSCs in response to inflammatory signals. Further, we propose that specific miRNAs could serve as interesting targets to manipulate some functions of FSK–MSCs, thus ameliorating their therapeutic potential.
机译:背景由于间充质基质细胞(MSCs)的自我更新能力,多谱系潜力和免疫调节特性,因此它们是用于不同治疗策略的诱人工具。包皮(FSK)被认为是一种生物废料,已被证明是MSC的宝贵来源。除了其典型的成纤维细胞形态和国际细胞疗法顺应性表型外,包皮MSCs(FSK–MSCs)是克隆性的,高度增殖的细胞,具有多种谱系和强大的免疫调节能力。重要的是,FSK–MSC在暴露于炎症信号后可以适当地调整其命运。作为基因表达的有效调节剂,miRNA参与调节几乎所有细胞过程以及协调不同免疫细胞的作用。在这项研究中,我们通过确定380种不同miRNA在炎症引发与对照未引发细胞中的表达谱来表征FSK–MSC的miRNome。方法用TaqMan低密度阵列(TLDA)鉴定FSK–MSCs发炎信号后miRNA失调。进行实时定量RT-PCR以验证观察结果。使用DIANA-miRPath分析Web服务器来确定失调的miRNA可能靶向的潜在途径。结果在炎症引发的FSK-MSCs中,有16种miRNA在未引发的FSK-MSCs中差异表达。 miR-27a,-145,-145,-149,-194,-199a,-221,-328,-345,-423-5p,-485-3p,-485-5p,-615-5p和-的表达水平758被下调,而miR-155,-363和-886-3p则被上调。那些差异表达的miRNA的靶途径预测确定了不同的炎症相关途径。结论在确定了它们的miRNome之后,我们确定了炎症信号对FSK-MSC中miRNA表达水平的显着影响。我们的结果强调了miRNA在调节FSK–MSC响应炎症信号的转录程序中的潜在作用。此外,我们建议特定的miRNA可以作为有趣的靶标来操纵FSK-MSC的某些功能,从而改善其治疗潜力。

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