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Alpha-lipoic acid attenuates hemorrhagic shock-induced apoptotic signaling and vascular hyperpermeability.

机译:α硫辛酸变弱出血性触觉凋亡信号和血管研究进展。

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摘要

Hemorrhagic shock (HS) is associated with the disruption of endothelial cell barrier leading to vascular hyperpermeability. Previous studies from our laboratory implicate reactive oxygen species (ROS) and the intrinsic apoptotic signaling cascades as mediators of vascular hyperpermeability after HS. Here we report the protective effects of alpha-lipoic acid, a natural antioxidant with antiapoptotic properties, against vascular hyperpermeability after HS. Hemorrhagic shock was induced in Sprague-Dawley rats by withdrawing blood to reduce the MAP to 40 mmHg for 60 min followed by resuscitation for 60 min. The rats were given fluorescein isothiocyanate-albumin (50 mg/kg) i.v., and the mesenteric postcapillary venules were examined for change in hyperpermeability using intravital microscopy. Mitochondrial ROS formation and change in mitochondrial transmembrane potential were measured using dihydrorhodamine 123 and the cationic dye JC-1, respectively. The mitochondrial release of cytochrome c and activationof caspase 3 were measured using enzyme-linked immunosorbent assay and fluorometric assay, respectively. Hemorrhagic shock resulted in vascular hyperpermeability and mitochondrial ROS formation. The activation of mitochondrial intrinsic apoptotic signaling pathway was evidenced from mitochondrial depolarization, an increase in cytochrome c release, and activation of caspase 3. alpha-Lipoic acid (100 mg/kg) given before the shock period attenuated vascular hyperpermeability, mitochondrial ROS formation, mitochondrial depolarization, cytochrome c release, and activation of caspase 3 (P < 0.05). Together, these results demonstrate that alpha-lipoic acid provides protection against vascular hyperpermeability by modulating the mitochondrial "intrinsic" apoptotic signaling.
机译:出血性休克(HS)的关联中断导致内皮细胞的屏障血管研究进展。我们实验室涉及活性氧(ROS)和内在的凋亡信号级联作为血管的介质商品后研究进展。α硫辛酸的保护作用天然抗氧化剂与抗凋亡属性,对血管研究进展在海关。Sprague-Dawley老鼠提取血液减少映射到40毫米汞柱为60分钟紧随其后复苏60分钟。老鼠荧光素isothiocyanate-albumin(50毫克/公斤)增长值,肠系膜postcapillary小静脉检查变化研究进展使用活体的显微镜。线粒体的形成和变化跨膜电位测量使用dihydrorhodamine 123和阳离子染料JC-1,分别。细胞色素c和activationof半胱天冬酶3使用酶联免疫吸附试验测定和荧光测定。冲击导致血管研究进展和线粒体活性氧的形成。内在线粒体凋亡信号从线粒体通路是证明去极化,增加细胞色素c释放和激活半胱天冬酶3。α硫辛酸(100毫克/公斤)之前休克期减毒血管研究进展,线粒体活性氧的形成,线粒体去极化,细胞色素c释放和激活半胱天冬酶3 (P < 0.05)。在一起,这些结果说明α硫辛酸提供保护血管调节的研究进展线粒体凋亡信号“内在”。

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