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首页> 外文期刊>Histology and histopathology >Cardiac ischemia and reperfusion in spontaneously diabetic rats with and without application of EGb 761: II. Interstitium and microvasculature
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Cardiac ischemia and reperfusion in spontaneously diabetic rats with and without application of EGb 761: II. Interstitium and microvasculature

机译:有和没有应用EGb 761的自发性糖尿病大鼠的心脏缺血和再灌注:II。间质和微脉管系统

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Besides alterations in cardiomyocytes themselves, diabetic cardiopathy is characterized by interstitial and microvascular disorders. On the assumption that a specific heart muscle disease develops due to permanently increased oxidative stress on liberation of oxygen-free radicals, adjuvant application of antioxidative therapeutics appears promising in preventing or delaying long-term diabetic complications and protecting the myocardium against acute ischemia. We have investigated the effects of Ginkgo biloba extract (EGb 761), a radical scavenger, against diabetes-induced myocardial interstitium and microvasculature damage, and against additional ischemia/reperfusion injury in spontaneously diabetic BioBreeding/Ottawa Karlsburg (BB/OK) rats modelling diabetic cardiac infarction. Morphological and morphometric parameters in the heart muscle were evaluated by light and electron microscope. We used immunohistochemistry to investigate collagen protein expression as a marker for tissue remodelling together with endothelial nitric oxide synthase (eNOS) protein expression as a marker for endothelial-dependent vasodilation. We also evaluated inflammation response caused by neuropeptide Substance P and interacting mast cells in the diabetic heart. Our results revealed that A) Diabetic myocardium appears more vulnerable to ischemia/reperfusion injury than normal myocardium with regard to myocardial interstitium and micro vessel ultrastructure, as well as eNOS protein expression; B) Inflammation response increases in diabetic animals exposed to ischemia/reperfusion injury compared to controls; C) Pre-treatment of diabetic myocardium with EGb results in an improvement of impaired endothelial-dependent vasodilation in diabetes and additional ischemia/ reperfusion, diminished mast cell and substance P accumulation, and better preserved myocardial ultrastructure compared to unprotected myocardium. In conclusion, EGb may act as a potent therapeutic adjuvant in diabetics with respect to ischemic myocardial injury, and may contribute to preventing late complications in diabetic cardiopathy.
机译:除心肌细胞本身发生改变外,糖尿病性心脏病的特征还在于间质性和微血管性疾病。假设特定的心肌病是由于释放氧自由基导致的永久性氧化应激而发展而来的,因此抗氧化剂的辅助应用看来有望预防或延迟长期糖尿病并发症并保护心肌免受急性缺血的影响。我们已经研究了自由基清除剂银杏叶提取物(EGb 761)对糖尿病引起的心肌间质和微脉管系统损害以及自发性糖尿病的BioBreeding / Ottawa Karlsburg(BB / OK)建模糖尿病的大鼠的缺血/再灌注损伤的作用心脏梗塞。通过光学和电子显微镜评估心肌的形态学和形态学参数。我们使用免疫组织化学来研究胶原蛋白表达作为组织重塑的标志物以及内皮一氧化氮合酶(eNOS)蛋白表达作为内皮依赖性血管舒张的标志物。我们还评估了糖尿病性心脏中由神经肽P物质和相互作用的肥大细胞引起的炎症反应。我们的结果表明:A)在心肌间质和微血管超微结构以及eNOS蛋白表达方面,糖尿病心肌似乎比正常心肌更易受缺血/再灌注损伤。 B)与对照组相比,暴露于缺血/再灌注损伤的糖尿病动物的炎症反应增加; C)用EGb预处理糖尿病心肌可改善糖尿病中依赖内皮的血管舒张功能,并改善缺血/再灌注,减少肥大细胞和P物质的积聚,并且与未保护的心肌相比,可以更好地保存心肌超微结构。总之,EGB可以作为糖尿病患者对缺血性心肌损伤的有效治疗佐剂,并可能有助于预防糖尿病性心脏病的晚期并发症。

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