首页> 美国卫生研究院文献>Physiological Reports >A new twist on an old idea part 2: cyclosporine preserves normal mitochondrial but not cardiomyocyte function in mini‐swine with compensated heart failure
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A new twist on an old idea part 2: cyclosporine preserves normal mitochondrial but not cardiomyocyte function in mini‐swine with compensated heart failure

机译:旧观念第2部分的新变化:环孢素在具有补偿性心力衰竭的小型猪中可保持正常的线粒体功能但不能保持心肌细胞功能

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摘要

We recently developed a clinically relevant mini‐swine model of heart failure with preserved ejection fraction (HFpEF), in which diastolic dysfunction was associated with increased mitochondrial permeability transition (MPT). Early diastolic function is ATP and Ca2+‐dependent, thus, we hypothesized chronic low doses of cyclosporine (CsA) would preserve mitochondrial function via inhibition of MPT and subsequently maintain normal cardiomyocyte Ca2+ handling and contractile characteristics. Left ventricular cardiomyocytes were isolated from aortic‐banded Yucatan mini‐swine divided into three groups; control nonbanded (CON), HFpEF nontreated (HF), and HFpEF treated with CsA (HF‐CsA). CsA mitigated the deterioration of mitochondrial function observed in HF animals, including functional uncoupling of Complex I‐dependent mitochondrial respiration and increased susceptibility to MPT. Attenuation of mitochondrial dysfunction in the HF‐CsA group was not associated with commensurate improvement in cardiomyocyte Ca2+ handling or contractility. Ca2+ transient amplitude was reduced and transient time to peak and recovery (tau) prolonged in HF and HF‐CsA groups compared to CON. Alterations in Ca2+ transient parameters observed in the HF and HF‐CsA groups were associated with decreased cardiomyocyte shortening and shortening rate. Cellular function was consistent with impaired in vivo systolic and diastolic whole heart function. A significant systemic hypertensive response to CsA was observed in HF‐CsA animals, and may have played a role in the accelerated the development of heart failure at both the whole heart and cellular levels. Given the significant detriment to cardiac function observed in response to CsA, our findings suggest chronic CsA treatment is not a viable therapeutic option for HFpEF.
机译:我们最近开发了一种临床相关的心力衰竭小型猪模型,其射血分数得以保留(HFpEF),其中舒张功能障碍与线粒体通透性转变(MPT)增加有关。早期舒张功能是ATP和Ca 2 + 依赖性的,因此,我们假设慢性低剂量的环孢素(CsA)可以通过抑制MPT来保持线粒体功能,并随后维持正常的心肌细胞Ca 2+ 处理和收缩特性。左心室心肌细胞是从主动脉带状的尤卡坦小型猪中分离的,分为三组。对照无带(CON),未经处理的HFpEF(HF)和经CsA(HF-CsA)处理的HFpEF。 CsA减轻了在HF动物中观察到的线粒体功能的恶化,包括复杂I依赖的线粒体呼吸的功能解偶联和对MPT的敏感性增加。 HF-CsA组线粒体功能障碍的减轻与心肌细胞Ca 2 + 处理或收缩性的相应改善无关。与CON相比,HF和HF-CsA组的Ca 2 + 瞬变幅度减小,达到峰值的瞬态时间和恢复(tau)延长。在HF和HF-CsA组中观察到的Ca 2 + 瞬变参数的变化与心肌细胞缩短和缩短率降低有关。细胞功能与体内收缩和舒张全心功能受损相一致。在HF-CsA动物中观察到了对CsA的明显全身性高血压反应,并且可能在整个心脏和细胞水平上加速了心力衰竭的发展。考虑到对CsA的反应明显损害了心脏功能,我们的发现表明,慢性CsA治疗不是HFpEF的可行治疗选择。

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