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Fenofibrate ameliorates neural, mechanical, chemical, and electrical alterations in the murine model of heart failure

机译:非诺贝特改善了心力衰竭小鼠模型中的神经,机械,化学和电气改变

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摘要

Heart failure (HF) is a leading cause of hospitalization across the world and is known to cause ill-health and heavy economic losses. In the present study, a rat model of isoproterenol (ISO, 85 mg/kg subcutaneously for two subsequent days) induced HF was developed. ISO induces HF by its direct effect, that is, rise in left ventricular end-diastolic pressure (mechanical) and indirectly by altering the baroreflex (neural), electrocardiography (electrical), and development of oxidative stress and hyperlipidemia (chemical). Fenofibrate, a hypolipidemic drug, which ameliorates myocardial energy metabolism was seen to improve the both ISO-induced oxidative stress and lipid profile and consequently improved Baroreflex Sensitivity (BRS), partial ventricular functions, and cardiac hypertrophy. Therefore, our result suggests that fenofibrate treatment protected the heart by alleviating the ISO-induced effects, that is, neural, mechanical, electrical, and chemical alterations.
机译:心力衰竭(HF)是世界各地住院的主要原因,众所周知会导致健康状况和繁重的经济损失。 在本研究中,开发了一种大鼠异丙醇(ISO,85mg / kg两次后续几天的ISO,85mg / kg)诱导的HF。 ISO通过其直接效果诱导HF,即左心室舒张压(机械)上升,并间接通过改变骨折(神经),心电图(电气)以及氧化应激和高脂血症(化学)的发育。 对苯纤维,一种改善心肌能量代谢的低血管酸酯,可改善ISO诱导的氧化应激和脂质型材,从而改善了Baroreflex敏感性(BRS),部分心室功能和心脏肥大。 因此,我们的效果表明,通过减轻ISO诱导的效果,即神经,机械,电气和化学改变,对细胞纤维治疗受到保护。

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