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首页> 外文期刊>Stem cells translational medicine. >Mesenchymal Stromal Cells Modulate Monocytes Trafficking in Coxsackievirus B3‐Induced Myocarditis
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Mesenchymal Stromal Cells Modulate Monocytes Trafficking in Coxsackievirus B3‐Induced Myocarditis

机译:间质基质细胞调节柯萨奇病毒B3诱导的心肌炎中贩运的单核细胞。

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Mesenchymal stromal cell (MSC) application in Coxsackievirus B3 (CVB3)‐induced myocarditis reduces myocardial inflammation and fibrosis, exerts prominent extra‐cardiac immunomodulation, and improves heart function. Although the abovementioned findings demonstrate the benefit of MSC application, the mechanism of the MSC immunomodulatory effects leading to a final cardioprotective outcome in viral myocarditis remains poorly understood. Monocytes are known to be a trigger of myocardial tissue inflammation. The present study aims at investigating the direct effect of MSC on the mobilization and trafficking of monocytes to the heart in CVB3‐induced myocarditis. One day post CVB3 infection, C57BL/6 mice were intravenously injected with 1 x 106 MSC and sacrificed 6 days later for molecular biology and flow cytometry analysis. MSC application reduced the severity of myocarditis, and heart and blood pro‐inflammatory Ly6Chigh and Ly6Cmiddle monocytes, while those were retained in the spleen. Anti‐inflammatory Ly6Clow monocytes increased in the blood, heart, and spleen of MSC‐treated CVB3 mice. CVB3 infection induced splenic myelopoiesis, while MSC application slightly diminished the spleen myelopoietic activity in CVB3 mice. Left ventricular (LV) mRNA expression of the chemokines monocyte chemotactic protein‐1 (MCP)?1, MCP‐3, CCL5, the adhesion molecules intercellular adhesion molecule‐1, vascular cell adhesion molecule‐1, the pro‐inflammatory cytokines interleukin‐6, interleukin‐12, tumor necrosis factor‐α, the pro‐fibrotic transforming growth factorβ1, and circulating MCP‐1 and MCP‐3 levels decreased in CVB3 MSC mice, while LV stromal cell‐derived factor‐1α RNA expression and systemic levels of fractalkine were increased in CVB3 MSC mice. MSC application in CVB3‐induced myocarditis modulates monocytes trafficking to the heart and could be a promising strategy for the resolution of cardiac inflammation and prevention of the disease progression. S tem C ells T ranslational M edicine 2017;6:1249–1261
机译:柯萨奇病毒B3(CVB3)诱导的心肌炎中的间充质基质细胞(MSC)的应用减少了心肌炎症和纤维化,发挥了重要的心脏外免疫调节作用,并改善了心脏功能。尽管上述发现证明了应用MSC的好处,但对MSC免疫调节作用导致病毒性心肌炎最终心脏保护作用的机制仍知之甚少。已知单核细胞是心肌组织炎症的诱因。本研究旨在研究MSC在CVB3诱发的心肌炎中对单核细胞的动员和向心脏的运输的直接作用。 CVB3感染后一天,C57BL / 6小鼠静脉注射1 x 10 6 MSC,6天后处死以进行分子生物学和流式细胞术分析。 MSC的使用可减轻心肌炎的严重程度,并具有心脏和血液促炎性Ly6C high 和Ly6C Middle 单核细胞的功能,而那些保留在脾脏中。 MSC处理的CVB3小鼠的血液,心脏和脾脏中的抗炎Ly6C low 单核细胞增加。 CVB3感染诱导了脾骨髓生成,而MSC的应用略微降低了CVB3小鼠的脾骨髓生成活性。趋化因子单核细胞趋化蛋白-1(MCP)?1,MCP-3,CCL5,粘附分子胞间粘附分子-1,血管细胞粘附分子-1,促炎细胞因子白介素-1的左心室(LV)mRNA表达6,白细胞介素-12,肿瘤坏死因子α,促纤维化转化生长因子β1,循环MCP-1和MCP-3水平在CVB3 MSC小鼠中降低,而LV基质细胞衍生因子-1αRNA表达和全身水平CVB3 MSC小鼠中fractalkine的含量增加。 MSC在CVB3诱导的心肌炎中的应用可调节单核细胞向心脏的运输,并且可能是解决心脏炎症和预防疾病进展的有前途的策略。系统杂志翻译医学杂志; 2017年; 6:1249–1261

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