首页> 外文期刊>International journal of molecular medicine >Increased expression of Sonic hedgehog restores diabetic endothelial progenitor cells and improves cardiac repair after acute myocardial infarction in diabetic mice
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Increased expression of Sonic hedgehog restores diabetic endothelial progenitor cells and improves cardiac repair after acute myocardial infarction in diabetic mice

机译:随着糖尿病小鼠急性心肌梗死后,Sonic Hedgehog恢复糖尿病内皮祖细胞的表达增加,提高了心脏修复

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Damaged endothelial progenitor cells (EPCs) are associated with poor prognosis in diabetic myocardial infarction (DMI). Our previous studies revealed that an impaired Sonic hedgehog (Shh) pathway contributes to insufficient function in diabetic EPCs; however, the roles of the Shh pathway in diabetic EPC apoptosis under basal and hypoxic/ischemic conditions remain unknown. Therefore, the present study investigated whether Shh revitalized diabetic EPCs and consequently improved the deteriorative status of DMI. For this purpose, streptozotocin injection was used in male C57/BL6 mice to induce type?1 diabetes, and diabetic EPCs were isolated from the bone marrow. Apoptosis, cell function, and protein expression were investigated in EPCs in?vitro. Mouse hearts were injected with adenovirus Shh?modified diabetic EPCs (DM?EPCShh) or control DM?EPCNull immediately after coronary artery ligation in?vivo. Cardiac function, capillary numbers, fibrosis, and cell apoptosis were then detected. First, the in?vitro results demonstrated that the apoptosis of diabetic EPCs was reduced following treatment with Shh protein for 24?h, under normal or hypoxic conditions. BMI1 proto?oncogene (Bmi1), an antiapoptotic protein found in several cells, was reduced in diabetic EPCs under normal or hypoxic conditions, but was upregulated after Shh protein stimulation. When Bmi1?siRNA was administered, the antiapoptotic effect of Shh protein was significantly reversed. In addition, p53, a Bmi1?targeted gene, was demonstrated to mediate the antiapoptotic effect of the Shh/Bmi1 pathway in diabetic EPCs. The Shh/Bmi1/p53 axis also enhanced the diabetic EPC function. In?vivo, Shh?modified diabetic EPCs exhibited increased EPC retention and decreased apoptosis at 3?days post?DMI. At 14?days post?DMI, these cells presented enhanced capillary density, reduced myocardial fibrosis and improved cardiac function. In conclusion, the present results demonstrated that the Shh pathway restored diabetic EPCs through the Shh/Bmi1/p53 axis, suppressed myocardial apoptosis and improved myocardial angiogenesis, thus reducing cardiac fibrosis and finally restoring myocardial repair and cardiac function in DMI. Thus, the Shh pathway may serve as a potential target for autologous cell therapy in diabetic myocardial ischemia.
机译:受损的内皮祖细胞(EPC)与糖尿病心肌梗死(DMI)的预后差有关。我们以前的研究表明,Sonic Hedgehog(SHH)途径受损有助于糖尿病EPC的功能不足;然而,SHH途径在基础和缺氧/缺血条件下的糖尿病EPC细胞凋亡的作用仍然未知。因此,本研究调查了SHH是否恢复糖尿病EPC,从而改善了DMI的劣化状态。为此目的,用于雄性C57 / BL6小鼠中使用链脲佐菌素注射,以诱导型β1糖尿病,糖尿病EPC与骨髓分离。在EPCS中研究了凋亡,细胞功能和蛋白质表达。小鼠心脏被腺病毒SHH注射?改性糖尿病EPCS(DM?EPCSHH)或对照DM?在冠状动脉结扎后立即进行血管干预何处。然后检测心功能,毛细管数,纤维化和细胞凋亡。首先,in的体外结果表明,在正常或缺氧条件下用SHH蛋白处理24μm,减少了糖尿病EPC的凋亡。 BMI1 PROTO?癌基因(BMI1),在几种细胞中发现的抗泡凋亡蛋白,在正常或缺氧条件下糖尿病EPC减少,但在SHH蛋白刺激后上调。当给予BMI1?SiRNA施用时,SHH蛋白的抗曝光效应显着逆转。另外,P53是BMI1?靶向基因,证明了糖尿病EPC中SHH / BMI1途径的抗曝光效应。 SHH / BMI1 / P53轴还增强了糖尿病EPC功能。在α体内,SHH?改性糖尿病EPC在3?DMI柱上表现出增加EPC保留和细胞凋亡。在14岁?DMI时,这些细胞呈现增强的毛细血管密度,心肌纤维化降低和改善的心功能。总之,本结果表明,SHH途径通过SHH / BMI1 / P53轴恢复了糖尿病EPC,抑制了心肌细胞凋亡和改善的心肌血管生成,从而减少了DMI中的心肌修复和心脏功能。因此,SHH途径可以用作糖尿病心肌缺血中自体细胞疗法的潜在靶标。

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