首页> 美国卫生研究院文献>Oxidative Medicine and Cellular Longevity >Interactions between Cytosolic Phospholipase A2 Activation and Mitochondrial Reactive Oxygen Species Production in the Development of Ventilator-Induced Diaphragm Dysfunction
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Interactions between Cytosolic Phospholipase A2 Activation and Mitochondrial Reactive Oxygen Species Production in the Development of Ventilator-Induced Diaphragm Dysfunction

机译:呼吸机引起的隔膜功能异常发展中的胞质磷脂酶A2激活与线粒体活性氧产生之间的相互作用。

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摘要

Cytosolic phospholipase A2 (cPLA2) has been reported to be critical for infection-induced mitochondrial reactive oxygen species (ROS) production and diaphragm dysfunction (DD). In the present study, we aim to investigate whether cPLA2 was involved in ventilator-induced diaphragm dysfunction (VIDD). Our results showed that mechanical ventilation (MV) induced cPLA2 activation in the diaphragm with excessive mitochondrial ROS generation and muscle weakness. Specific inhibition of cPLA2 with CDIBA resulted in decreased mitochondrial ROS levels and improved diaphragm forces. In addition, mitochondria-targeted antioxidant MitoTEMPO attenuated ventilator-induced mitochondrial oxidative stress and downregulated cPLA2 activation in vivo. Both CDIBA and MitoTEMPO were able to attenuate protein degradation, muscle atrophy, and weakness following prolonged MV. Furthermore, laser Doppler imaging showed that MV decreased diaphragm tissue perfusion and induced subsequent hypoxia. An in vitro study also demonstrated a positive association between cPLA2 activation and mitochondrial ROS generation in C2C12 cells cultured under hypoxic condition. Collectively, our study showed that cPLA2 activation positively interacts with mitochondrial ROS generation in the development of VIDD, and ventilator-induced diaphragm hypoxia serves as a possible contributor to this positive feedback loop.
机译:据报道,胞质磷脂酶A2(cPLA2)对于感染诱导的线粒体活性氧(ROS)产生和diaphragm肌功能障碍(DD)至关重要。在本研究中,我们旨在调查cPLA2是否参与呼吸机诱发的diaphragm肌功能障碍(VIDD)。我们的研究结果表明,机械通气(MV)会导致膜中cPLA2活化,并具有过多的线粒体ROS生成和肌肉无力。 CDIBA对cPLA2的特异性抑制导致线粒体ROS含量降低和膜片力提高。此外,针对线粒体的抗氧化剂MitoTEMPO在体内减弱了呼吸机诱导的线粒体氧化应激并下调了cPLA2活化。 MV延长后,CDIBA和MitoTEMPO都能减轻蛋白质降解,肌肉萎缩和无力。此外,激光多普勒成像显示MV减少了diaphragm肌组织灌注并引起随后的缺氧。一项体外研究还表明,在缺氧条件下培养的C2C12细胞中,cPLA2激活与线粒体ROS生成呈正相关。总的来说,我们的研究表明cPLA2激活与VIDD发生过程中的线粒体ROS产生正向相互作用,而呼吸机引起的diaphragm肌缺氧可能是导致这种正反馈回路的原因。

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