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首页> 外文期刊>The Journal of Thoracic and Cardiovascular Surgery >Shock wave treatment induces angiogenesis and mobilizes endogenous CD31/CD34-positive endothelial cells in a hindlimb ischemia model: Implications for angiogenesis and vasculogenesis
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Shock wave treatment induces angiogenesis and mobilizes endogenous CD31/CD34-positive endothelial cells in a hindlimb ischemia model: Implications for angiogenesis and vasculogenesis

机译:冲击波治疗诱导血管生成并动员后肢缺血模型中的内源性CD31 / CD34阳性内皮细胞:对血管生成和血管生成的意义

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摘要

Objectives: Shock waves have been shown to induce recruitment of intravenously injected endothelial progenitor cells to ischemic hind limbs in rats. We hypothesized that shock wave treatment as sole therapy would induce angiogenesis in this ischemia model and would lead to mobilization of endogenous endothelial (progenitor) cells. Methods: A total of 18 rats, aged 5 weeks old, were subdivided into 3 groups: sham (n = 6), ischemic muscle with shock wave treatment (shock wave treatment group, n = 6), and without shock wave treatment (control, n = 6). Hind limb ischemia was induced by ligation of the femoral artery. Three weeks later, shock wave treatment (300 impulses at 0.1 mJ/mm 2) was applied to the adductor muscle; the controls were left untreated. Muscle samples were analyzed using real-time polymerase chain reaction for angiogenic factors and chemoattractants for endothelial progenitor cell mobilization. Fluorescence activated cell sorting analysis of the peripheral blood was performed for CD31/CD34-positive cells. Perfusion was measured using laser Doppler imaging. Functional improvement was evaluated by walking analysis. Results: Angiogenic factors/endothelial progenitor cell chemoattractants, stromal cell-derived factor-1 and vascular endothelial growth factor, were increased in the treatment group, as shown by real-time polymerase chain reaction, indicating the mobilization of endothelial progenitor cells. Fluorescence activated cell sorting analysis of the peripheral blood revealed high numbers of CD31/CD34-positive cells in the treatment group. Greater numbers of capillaries were found in the treated muscles. Blood perfusion increased markedly in the treatment group and led to functional restoration, as shown by the results from the walking analysis. Conclusions: Shock wave therapy therefore could develop into a feasible alternative to stem cell therapy in regenerative medicine, in particular for ischemic heart and limb disease.
机译:目的:已显示冲击波可诱导大鼠静脉注射的内皮祖细胞募集到缺血性后肢。我们假设冲击波治疗是唯一的治疗方法,它将在这种缺血模型中诱导血管生成,并导致内源性内皮细胞(祖细胞)动员。方法:将18只5周大的大鼠分为3组:假手术(n = 6),缺血性肌肉加冲击波治疗(冲击波治疗组,n = 6)和不加冲击波治疗(对照组)。 ,n = 6)。股动脉结扎可诱发后肢缺血。三周后,对内收肌进行冲击波处理(以0.1 mJ / mm 2的速度冲击300次)。对照组不予治疗。使用实时聚合酶链反应分析血管样品中的血管生成因子,并使用化学吸引剂分析内皮祖细胞动员肌肉样品。对CD31 / CD34阳性细胞进行外周血的荧光激活细胞分选分析。使用激光多普勒成像测量灌注。通过步行分析评估功能改善。结果:实时聚合酶链反应显示,治疗组血管生成因子/内皮祖细胞趋化因子,基质细胞衍生因子-1和血管内皮生长因子增加,表明内皮祖细胞动员。外周血的荧光激活细胞分选分析显示治疗组中大量的CD31 / CD34阳性细胞。在治疗过的肌肉中发现了更多的毛细血管。步行分析的结果显示,治疗组的血液灌注显着增加,并导致功能恢复。结论:因此,冲击波疗法可以发展成为再生医学中干细胞疗法的可行替代方案,尤其是对于缺血性心脏病和肢体疾病。

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