首页> 外文期刊>Journal of Bioenergetics and Biomembranes >Effects of magnesium supplementation on electrophysiological remodeling of cardiac myocytes in L-NAME induced hypertensive rats
【24h】

Effects of magnesium supplementation on electrophysiological remodeling of cardiac myocytes in L-NAME induced hypertensive rats

机译:补充镁对L-NAME诱导的高血压大鼠心肌细胞电生理重构的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Hypertension is one of the major risk factors of cardiac hypertrophy and magnesium deficiency is suggested to be a contributing factor in the progression of this complication. In this study, we aimed to investigate the relationship between intracellular free Mg2+ levels and electrophysiological changes developed in the myocardium of L-NAME induced hypertensive rats. Hypertension was induced by administration of 40 mg/kg of L-NAME for 6 weeks, while magnesium treated rats fed with a diet supplemented with 1 g/kg of MgO for the same period. L-NAME administration for 6 weeks elicited a significant increase in blood pressure which was corrected with MgO treatment; thereby cardiac hypertrophy developing secondary to hypertension was prevented. Cytosolic free magnesium levels of ventricular myocytes were significantly decreased with hypertension and magnesium administration restored these changes. Hypertension significantly decreased the fractional shortening with slowing of shortening kinetics in left ventricular myocytes whereas magnesium treatment was capable of restoring hypertension-induced contractile dysfunction. Long-term magnesium treatment significantly restored the hypertension-induced prolongation in action potentials of ventricular myocytes and suppressed I-to and I-ss currents. In contrast, hypertension dependent decrement in intracellular Mg2+ level did not cause a significant change in L-type Ca2+ currents, SR Ca2+ content and NCX activity. Nevertheless, hypertension mediated increase in superoxide anion, hydrogen peroxide and protein oxidation mitigated with magnesium treatment. In conclusion, magnesium administration improves mechanical abnormalities observed in hypertensive rat ventricular myocytes due to reduced oxidative stress. It is likely that, changes in intracellular magnesium balance may contribute to the pathophysiology of chronic heart diseases.
机译:高血压是心脏肥大的主要危险因素之一,镁缺乏症被认为是该并发症进展的一个重要因素。在这项研究中,我们旨在研究细胞内游离Mg2 +水平与L-NAME诱导的高血压大鼠心肌中发展的电生理变化之间的关系。通过给予40 mg / kg的L-NAME持续6周诱导高血压,而镁治疗的大鼠在同一时期内饮食中补充了1 g / kg的MgO。服用L-NAME 6周后,血压显着升高,可通过MgO治疗纠正。从而预防了继发于高血压的心脏肥大。高血压可使心室肌细胞的游离镁水平显着降低,服用镁可恢复这些变化。高血压能显着降低左心室心肌细胞的分数缩短,同时缩短其动力学,而镁治疗能够恢复高血压引起的收缩功能障碍。长期镁治疗可显着恢复高血压诱发的心室肌细胞动作电位的延长,并抑制I-to和I-ss电流。相反,高血压依赖性细胞内Mg2 +水平的降低并未引起L型Ca2 +电流,SR Ca2 +含量和NCX活性的显着变化。然而,高血压介导的镁处理减轻了超氧阴离子,过氧化氢和蛋白质氧化的增加。总之,由于减少了氧化应激,镁的施用改善了高血压大鼠心室肌细胞中观察到的机械异常。细胞内镁平衡的变化可能有助于慢性心脏病的病理生理。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号