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首页> 外文期刊>Bulletin of experimental biology and medicine >Histoenzymological Characteristics of Smooth Muscle Cells in Myocardial Vessels: A Comparative Study under Conditions of Increased Left or Right Ventricular Afterload
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Histoenzymological Characteristics of Smooth Muscle Cells in Myocardial Vessels: A Comparative Study under Conditions of Increased Left or Right Ventricular Afterload

机译:心肌血管平滑肌细胞的组织酶学特性:左室或右室后负荷增加的条件下的比较研究

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摘要

Histoenzymological methods were used to study metabolism of smooth muscle cells of intramural myocardial arteries during experimental aortic or pulmonary artery stenosis. Aortic stenosis was accompanied by changes in smooth muscles of the left ventricle manifested by deceleration of tricarboxylic acid cycle, inhibition of oxidation of free fatty acids and their metabolites, flux redistribution in the glycolytic cascade, and inhibition of shuttle systems and biosynthetic processes. Similar metabolic alterations were observed in vessels of the ventricular septum, but they were not revealed in vessels of the right ventricle (except glycolysis stimulation). Under conditions of pulmonary artery stenosis, histoenzymological alterations in vascular smooth muscle of both ventricles and ventricular septum were similar, which attested to acceleration of tricarboxylic acid cycle, stimulation of oxidation of the free fatty acids with their metabolites, acceleration of glycolysis, and activation of the shuttle systems and biosynthetic processes. Comparative analysis of histoenzymological alterations revealed substantial differences in the character of metabolic changes under conditions of increased left and right ventricular afterload, which can be caused by peculiarities in myocardial blood flow, severity of circulatory disorders, severity of hypoxia, and intensity of processes maintaining ionic homeostasis in vascular smooth muscles and transport across the histohematic barriers. The data attest to important metabolic role of glycolysis in vascular smooth muscles of the myocardium, especially under conditions of enhanced afterload of the right ventricle.
机译:组织酶学方法用于研究实验性主动脉或肺动脉狭窄期间壁内心肌平滑肌细胞的代谢。主动脉瓣狭窄伴有左心室平滑肌变化,表现为三羧酸循环的减速,抑制游离脂肪酸及其代谢产物的氧化,糖酵解级联中的通量再分布以及抑制穿梭系统和生物合成过程。在室间隔的血管中观察到了类似的代谢变化,但在右心室的血管中未发现这些变化(糖酵解刺激除外)。在肺动脉狭窄的情况下,心室和室间隔的血管平滑肌的组织酶学变化相似,证明加速了三羧酸循环,刺激了其代谢产物对游离脂肪酸的氧化刺激,加速了糖酵解,并激活了穿梭系统和生物合成过程。对组织酶学变化的比较分析显示,在左,右心室后负荷增加的条件下,代谢变化的特征存在实质性差异,这可能是由于心肌血流的特殊性,循环系统疾病的严重性,缺氧的严重性以及维持离子的过程强度引起的血管平滑肌内的动态平衡,并穿过组织性血液屏障。数据证明糖酵解在心肌血管平滑肌中的重要代谢作用,尤其是在右心室后负荷增加的条件下。

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