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Differential expression of microRNA and arachidonic acid metabolism in aspirin-treated human cardiac and peri-cardiac fat-derived mesenchymal stem cells

机译:分析治疗人体心脏和围心衍生间充质干细胞的微小RNA和花生素代谢的差异表达

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Aspirin is a widely used drug with anti-coagulating and anti-inflammatory effects on atherosclerotic vascular disease. The goal of this study was to investigate expression of microRNA (miR) in association with changes in arachidonic acid (AA) metabolism in cardiac and surrounding fat mesenchymal stem cells (MSCs) treated with or without aspirin. Aspirin-targeted endogenous lipid metabolites that impact specific miRNA expression were examined by mass spectrometry. The pattern of miR expression was characterized using a microarray of 1100 miRs. There were a dozen miRs expressed differentially in MSCs from human myocardium and peri-myocardial fat tissue at baseline, including hsa-miR-1307-3p, 765, 4739, 3613-3p, 4281, 6816-5p, 2861, and 146b-5p. After exposure to aspirin, cardiac MSCs expressed an array of of miRs (eg, hsa-miR-4734, 10a-5p, 4267, 3197, and 3182), while generation of their endogenous AA metabolites was depressed. However, in the peri-cardiac adipose tissue-derived MSCs, treatment with the same doses of aspirin caused mild changes in the miR expression levels. In conclusion, MSCs from human myocardium and peri-myocardial fat tissue respond differentially to aspirin treatment by alterations in miR expression and AA metabolism. The study further raises an intriguing issue as to whether the copious amounts of aspirin taken worldwide by patients with cardiovascular disease may have direct impacts on their heart repair processes by regulation of stromal cell miR expression and AA metabolism.
机译:阿司匹林是一种广泛使用的药物,具有对动脉粥样硬化血管疾病的抗凝血和抗炎作用。本研究的目的是研究MicroRNA(MIR)与心脏和周围脂肪间充质干细胞(MSCs)中的花生酸(AA)代谢的变化相关联的MICRORNA(MIR)的表达。通过质谱法检测影响特异性miRNA表达的阿司匹林靶向内源性脂质代谢物。使用1100 miR的微阵列表征miR表达的模式。在基线的人心肌和Peri-myacetardial脂肪组织的MSC中差异有多种MIR,包括HSA-MIR-1307-3P,765,4739,3613-3P,4281,6816-5P,2861和146B-5P 。暴露于阿司匹林后,心脏MSC表达了MIR的阵列(例如,HSA-MIR-4734,10A-5P,4267,3197和3182),同时抑制了其内源性AA代谢物的产生。然而,在Peri-Cardiac脂肪组织衍生的MSC中,用相同剂量的阿司匹林处理引起了MIR表达水平的温和变化。总之,来自人心肌和Peri-myactardial脂肪组织的MSCs通过MiR表达和AA代谢的改变来差异地对阿司匹林治疗。该研究进一步提高了一种有趣的问题,即心血管疾病患者的全世界是全世界采取的大量阿司匹林,通过调节基质细胞MIR表达和AA代谢对其心脏修复过程有直接影响。

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