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首页> 外文期刊>American Journal of Physiology >Persistent pulmonary hypertension results in reduced tetralinoleoyl-cardiolipin and mitochondrial complex II + III during the development of right ventricular hypertrophy in the neonatal pig heart.
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Persistent pulmonary hypertension results in reduced tetralinoleoyl-cardiolipin and mitochondrial complex II + III during the development of right ventricular hypertrophy in the neonatal pig heart.

机译:持续性肺动脉高压导致新生猪心脏右心室肥大的发展过程中四亚油酰-心磷脂和线粒体复合物II + III减少。

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摘要

Persistent pulmonary hypertension of the newborn (PPHN) results in right ventricular (RV) hypertrophy followed by right heart failure and an associated mitochondrial dysfunction. The phospholipid cardiolipin plays a key role in maintaining mitochondrial respiratory and cardiac function via modulation of the activities of enzymes involved in oxidative phosphorylation. In this study, changes in cardiolipin and cardiolipin metabolism were investigated during the development of right heart failure. Newborn piglets (<24 h old) were exposed to a hypoxic (10% O(2)) environment for 3 days, resulting in the induction of PPHN. Two sets of control piglets were used: 1) newborn or 2) exposed to a normoxic (21% O(2)) environment for 3 days. Cardiolipin biosynthetic and remodeling enzymes, mitochondrial complex II + III activity, incorporation of [1-(14)C]linoleoyl-CoA into cardiolipin precursors, and the tetralinoleoyl-cardiolipin pool size were determined in both the RV and left ventricle (LV). PPHN resulted in an increased heart-to-body weight ratio, RV-to-LV plus septum weight ratio, and expression of brain naturetic peptide in RV. In addition, PPHN reduced cardiolipin biosynthesis and remodeling in the RV and LV, which resulted in decreased tetralinoleoyl-cardiolipin levels and reduced complex II + III activity and protein levels of mitochondrial complexes II, III, and IV in the RV. This is the first study to examine the pattern of cardiolipin metabolism during the early development of both the RV and LV of the newborn piglet and to demonstrate that PPHN-induced alterations in cardiolipin biosynthetic and remodeling enzymes contribute to reduced tetralinoleoyl-cardiolipin and mitochondrial respiratory chain function during the development of RV hypertrophy. These defects in cardiolipin may play an important role in the rapid development of RV dysfunction and right heart failure in PPHN.
机译:新生儿持续性肺动脉高压(PPHN)导致右心室(RV)肥大,继而发生右心衰竭和相关的线粒体功能障碍。磷脂心磷脂通过调节参与氧化磷酸化的酶的活性,在维持线粒体呼吸和心脏功能中起关键作用。在这项研究中,研究了右心衰竭发展过程中心磷脂和心磷脂代谢的变化。新生仔猪(<24小时大)暴露于低氧环境(10%O(2))3天,导致了PPHN的诱导。使用两组对照仔猪:1)新生或2)暴露于常氧(21%O(2))环境中3天。在RV和左心室(LV)中均确定了心磷脂的生物合成和重塑酶,线粒体复合物II + III活性,将[1-(14)C]亚油酰基-CoA掺入心磷脂前体中以及四亚油酰基-心磷脂储备库的大小。 PPHN导致心脏与体重的比率增加,RV与LV的比率以及隔垫的重量比率增加,并导致RV中脑天然肽的表达增加。另外,PPHN减少了RV和LV中心磷脂的生物合成和重塑,从而导致RV中的四亚油酰基-心磷脂水平降低,线粒体复合物II,III和IV的复合物II + III活性和蛋白质水平降低。这是第一个研究新生仔猪RV和LV早期发育过程中心磷脂代谢模式的研究,并证明PPHN诱导的心磷脂生物合成和重塑酶的改变有助于减少四氢油酰心磷脂和线粒体呼吸链RV肥大的发展过程中的功能。心磷脂的这些缺陷可能在PPHN的RV功能障碍和右心衰竭的快速发展中起重要作用。

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