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在离体灌注大鼠肺中,辅酶Q1可减轻线粒体复合体I抑制所诱导的能量电荷耗竭和肺内皮通透性增加。

Depleted energy charge and increased pulmonary endothelial permeability induced by mitochondrial complex I inhibition are mitigated by coenzyme Q1 in the isolated perfused rat lung.

作者信息

Bongard Robert D, Yan Ke, Hoffmann Raymond G, Audi Said H, Zhang Xiao, Lindemer Brian J, Townsley Mary I, Merker Marilyn P

机构信息

Department of Pulmonary Medicine, Medical College of Wisconsin, Milwaukee, WI 53226, USA.

Department of Biostatistics, Medical College of Wisconsin, Milwaukee, WI 53226, USA.

出版信息

Free Radic Biol Med. 2013 Dec;65:1455-1463. doi: 10.1016/j.freeradbiomed.2013.07.040. Epub 2013 Aug 1.

Abstract

Mitochondrial dysfunction is associated with various forms of lung injury and disease that also involve alterations in pulmonary endothelial permeability, but the relationship, if any, between the two is not well understood. This question was addressed by perfusing isolated intact rat lung with a buffered physiological saline solution in the absence or presence of the mitochondrial complex I inhibitor rotenone (20 μM). Compared to control, rotenone depressed whole lung tissue ATP from 5.66 ± 0.46 (SEM) to 2.34 ± 0.15 µmol · g(-1) dry lung, with concomitant increases in the ADP:ATP and AMP:ATP ratios. Rotenone also increased lung perfusate lactate (from 12.36 ± 1.64 to 38.62 ± 3.14 µmol · 15 min(-1) perfusion · g(-1) dry lung) and the lactate:pyruvate ratio, but had no detectable impact on lung tissue GSH:GSSG redox status. The amphipathic quinone coenzyme Q1 (CoQ1; 50 μM) mitigated the impact of rotenone on the adenine nucleotide balance, wherein mitigation was blocked by NAD(P)H-quinone oxidoreductase 1 or mitochondrial complex III inhibitors. In separate studies, rotenone increased the pulmonary vascular endothelial filtration coefficient (Kf) from 0.043 ± 0.010 to 0.156 ± 0.037 ml · min(-1) · cm H2O(-1) · g(-1) dry lung, and CoQ1 protected against the effect of rotenone on Kf. A second complex I inhibitor, piericidin A, qualitatively reproduced the impact of rotenone on Kf and the lactate:pyruvate ratio. Taken together, the observations imply that pulmonary endothelial barrier integrity depends on mitochondrial bioenergetics as reflected in lung tissue ATP levels and that compensatory activation of whole lung glycolysis cannot protect against pulmonary endothelial hyperpermeability in response to mitochondrial blockade. The study further suggests that low-molecular-weight amphipathic quinones may have therapeutic utility in protecting lung barrier function in mitochondrial insufficiency.

摘要

线粒体功能障碍与多种形式的肺损伤和疾病相关,这些损伤和疾病也涉及肺内皮通透性的改变,但两者之间的关系(如果存在的话)尚未完全明确。为了解决这个问题,在不存在或存在线粒体复合物I抑制剂鱼藤酮(20μM)的情况下,用缓冲的生理盐溶液灌注离体完整大鼠肺。与对照组相比,鱼藤酮使全肺组织ATP从5.66±0.46(SEM)降至2.34±0.15μmol·g(-1)干肺,同时ADP:ATP和AMP:ATP比值增加。鱼藤酮还增加了肺灌流液中的乳酸(从12.36±1.64增至38.62±3.14μmol·15分钟(-1)灌注·g(-1)干肺)以及乳酸:丙酮酸比值,但对肺组织谷胱甘肽:氧化型谷胱甘肽(GSH:GSSG)氧化还原状态没有可检测到的影响。两亲性醌辅酶Q1(CoQ1;50μM)减轻了鱼藤酮对腺嘌呤核苷酸平衡的影响,其中这种减轻作用被NAD(P)H-醌氧化还原酶1或线粒体复合物III抑制剂阻断。在单独的研究中,鱼藤酮使肺血管内皮滤过系数(Kf)从0.043±0.010增至0.156±0.037ml·分钟(-1)·厘米水柱(-1)·g(-1)干肺,而CoQ1可防止鱼藤酮对Kf的影响。另一种复合物I抑制剂,杀稻瘟菌素A,定性地重现了鱼藤酮对Kf和乳酸:丙酮酸比值的影响。综上所述,这些观察结果表明肺内皮屏障的完整性取决于线粒体生物能量学,如肺组织ATP水平所反映的那样,并且全肺糖酵解的代偿性激活不能防止因线粒体阻断而导致的肺内皮高通透性。该研究进一步表明,低分子量两亲性醌类可能在保护线粒体功能不全时的肺屏障功能方面具有治疗作用。

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