首页> 美国卫生研究院文献>Frontiers in Physiology >Left Ventricular Transmural Gradient in Mitochondrial Respiration Is Associated with Increased Sub-Endocardium Nitric Oxide and Reactive Oxygen Species Productions
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Left Ventricular Transmural Gradient in Mitochondrial Respiration Is Associated with Increased Sub-Endocardium Nitric Oxide and Reactive Oxygen Species Productions

机译:线粒体呼吸的左心室透壁梯度与增加的亚内膜一氧化氮和活性氧的产生有关

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摘要

>Objective: Left ventricle (LV) transmural gradient in mitochondrial respiration has been recently reported. However, to date, the physiological mechanisms involved in the lower endocardium mitochondrial respiration chain capacity still remain to be determined. Since, nitric oxide (NO) synthase expression in the heart has spatial heterogeneity and might impair mitochondrial function, we investigated a potential association between LV transmural NO and mitochondrial function gradient.>Methods: Maximal oxidative capacity (VMax) and relative contributions of the respiratory chain complexes II, III, IV (VSucc) and IV (VTMPD), mitochondrial content (citrate synthase activity), coupling, NO (electron paramagnetic resonance), and reactive oxygen species (ROS) production (H2O2 and dihydroethidium (DHE) staining) were determined in rat sub-endocardium (Endo) and sub-epicardium (Epi). Further, the effect of a direct NO donor (MAHMA NONOate) on maximal mitochondrial respiratory rates (Vmax) was determined.>Results: Mitochondrial respiratory chain activities were reduced in the Endo compared with the Epi (−16.92%; P = 0.04 for Vmax and –18.73%; P = 0.02, for Vsucc, respectively). NO production was two-fold higher in the Endo compared with the Epi (P = 0.002) and interestingly, increasing NO concentration reduced Vmax. Mitochondrial H2O2 and LV ROS productions were significantly increased in Endo compared to Epi, citrate synthase activity and mitochondrial coupling being similar in the two layers.>Conclusions: LV mitochondrial respiration transmural gradient is likely related to NO and possibly ROS increased production in the sub-endocardium.
机译:>目的:最近报道了线粒体呼吸中的左心室(LV)透壁梯度。然而,迄今为止,涉及下心内膜线粒体呼吸链能力的生理机制仍有待确定。由于心脏中一氧化氮(NO)合酶的表达具有空间异质性并可能损害线粒体功能,因此我们研究了LV透壁NO与线粒体功能梯度之间的潜在关联。>方法:最大氧化能力(VMax)和呼吸链复合物II,III,IV(VSucc)和IV(VTMPD)的相对贡献,线粒体含量(柠檬酸合酶活性),偶联,NO(电子顺磁共振)和活性氧(ROS)产生(H2O2和在大鼠的心内膜下层(Endo)和心外膜下层(Epi)中测定二氢乙啶(DHE)染色。此外,确定了直接NO供体(MAHMA NONOate)对最大线粒体呼吸速率(Vmax)的影响。>结果:与Epi相比,Endo的线粒体呼吸链活性降低了(-16.92% ;对于Vmax和–18.73%,P = 0.04;对于Vsucc,P = 0.02)。与Epi相比,Endo中的NO产量高出两倍(P = 0.002),有趣的是,增加NO浓度会降低Vmax。与Epi相比,Endo中线粒体H2O2和LV ROS的产量显着增加,两层中柠檬酸合酶活性和线粒体偶联相似。心内膜下的产量增加。

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