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曲美他嗪对心力衰竭小鼠心肌组织钾离子稳态的保护作用。

Protective Effect of Trimetazidine on Potassium Ion Homeostasis in Myocardial Tissue in Mice with Heart Failure.

机构信息

Shandong University of Traditional Chinese Medicine, Jinan 250011, China.

Affiliated Hospital of Shandong University of Traditional Chinese Medicine, Jinan 250011, China.

出版信息

Biomed Res Int. 2022 Jan 19;2022:2387860. doi: 10.1155/2022/2387860. eCollection 2022.

Abstract

The occurrence of heart failure (HF) is closely correlated with the disturbance of mitochondrial energy metabolism, and trimetazidine (TMZ) has been regarded as an effective agent in treating HF. Intracellular potassium ion (K) homeostasis, which is modulated by K channels and transporters, is crucial for maintaining normal myocardial function and can be disrupted by HF. This study is aimed at exploring the protective effect of TMZ on K homeostasis within myocardial tissue in mice with HF. We observed the pathological changes of myocardial tissue under microscopes and further measured the content of adenosine triphosphate (ATP), the activity of Na-K ATPase, and the expression of ATP11 at the mRNA and protein levels. Moreover, we also analyzed the changes in K flux across the myocardial tissue in mice. As a result, we found that there was a large amount of myocardial fiber lysis and fracture in HF myocardial tissue. Meanwhile, the potassium flux of mice with HF was reduced, and the expression of ATP11, the activity of Na-K ATPase, and the supply and delivery of ATP were also decreased. In contrast, TMZ can effectively treat HF by restoring K homeostasis in the local microenvironment of myocardial tissues.

摘要

心力衰竭(HF)的发生与线粒体能量代谢紊乱密切相关,曲美他嗪(TMZ)已被认为是治疗 HF 的有效药物。细胞内钾离子(K)稳态由 K 通道和转运体调节,对维持正常心肌功能至关重要,而 HF 可破坏其稳态。本研究旨在探讨 TMZ 对 HF 小鼠心肌组织内 K 稳态的保护作用。我们在显微镜下观察心肌组织的病理变化,进一步测量三磷酸腺苷(ATP)含量、Na-K ATP 酶活性和 ATP11 在 mRNA 和蛋白水平上的表达。此外,我们还分析了小鼠心肌组织中 K 流的变化。结果发现,HF 心肌组织中有大量心肌纤维溶解和断裂。同时,HF 小鼠的钾通量减少,ATP11 的表达、Na-K ATP 酶的活性以及 ATP 的供应和传递也减少。相比之下,TMZ 可以通过恢复心肌组织局部微环境中的 K 稳态来有效治疗 HF。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e25c/8791749/ff476e7d500d/BMRI2022-2387860.001.jpg

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