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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >The metabolic syndrome alters the miRNA signature of porcine adipose tissue-derived mesenchymal stem cells
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The metabolic syndrome alters the miRNA signature of porcine adipose tissue-derived mesenchymal stem cells

机译:代谢综合征改变了猪的miRNA签名脂肪组织衍生的间充质干细胞

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摘要

Autologous transplantation of mesenchymal stem cells (MSCs) is a viable option for the treatment of several diseases. Evidence indicates that MSCs release extracellular vesicles (EVs) and that EVs shuttle miRNAs to damaged parenchymal cells to activate an endogenous repair program. We hypothesize that comorbidities may interfere with the packaging of cargo in MSC-derived EVs. Therefore, we examined whether metabolic syndrome (MetS) modulates the miRNA content packed within MSC-derived EVs. MSCs were collected from swine abdominal adipose tissue after 16 weeks of lean or obese diet (n=7 each). Next-generation RNA sequencing of miRNAs (miRNA-seq) was performed to identify miRNAs enriched in MSC-derived EVs and their predicted target genes. Functional pathway analysis of the top 50 target genes of the top 4 miRNAs enriched in each group was performed using gene ontology analysis. Lean- and MetS-EVs were enriched in, respectively, 14 and 8 distinct miRNAs. Target genes of miRNAs enriched in MetS-EVs were implicated in the development of MetS and its complications, including diabetes-related pathways, validated transcriptional targets of AP1 family members Fra1 and Fra2, Class A/1 (Rhodopsin-like receptors), and Peptide ligand-binding receptors. In contrast, miRNAs enriched in Lean EVs target primarily EphrinA-EPHA and the Rho family of GTPases. MetS alters the miRNA content of EVs derived from porcine adipose tissue MSCs. These alterations could impair the efficacy and limit the therapeutic use of autologous MSCs in subjects with MetS. Our findings may assist in developing adequate regenerative strategies to preserve the reparative potency of MSCs in individuals with MetS. (c) 2017 International Society for Advancement of Cytometry
机译:间充质干细胞(MSCs)的自体移植是治疗几种疾病的可行选择。证据表明,MSCs释放细胞外囊(EVS),并且EVS穿梭miRNA损坏的实质细胞以激活内源性修复程序。我们假设可混合性可能干扰MSC衍生的EVS中货物的包装。因此,我们检查了代谢综合征(METS)是否调节包装在MSC衍生的EV中的miRNA含量。 16周后稀释或肥胖饮食(每次n = 7),从猪腹部脂肪组织收集MSC。进行下一代MIRNA(miRNA-SEQ)的RNA测序以鉴定富含MSC衍生的EV的MIRNA及其预测的靶基因。使用基因本体分析进行每组富集的前4位miRNA的前50个靶基因的功能途径分析。瘦肉和mets-ev分别富集,分别为14和8个不同的miRNA。富集Mets-EV富集的miRNA的靶基因涉及Mets及其并发症的发展,包括糖尿病相关的途径,AP1系列成员FRA1和FRA2的验证转录靶标,A / 1类(罗多蛋白酶样受体)和肽配体结合受体。相比之下,富含精益EVS的mirnas主要是Ephrina-epha和GTP酶的rho系列。 Mets改变了来自猪脂肪组织MSCs的EVS的miRNA含量。这些改变可能会损害疗效,并限制在Mets的受试者中的自体MSCs的治疗用途。我们的调查结果可能有助于制定充足的再生策略,以保留MSCS在METS中的个人效力。 (c)2017年国际促进细胞计量学会

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