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首页> 外文期刊>Thrombosis Research: An International Journal on Vascular Obstruction, Hemorrhage and Hemostasis >Unfractionated heparin attenuates lung vascular leak in a mouse model of sepsis:Role of RhoA/Rho kinase pathway
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Unfractionated heparin attenuates lung vascular leak in a mouse model of sepsis:Role of RhoA/Rho kinase pathway

机译:普通肝素可减轻脓毒症小鼠模型中的肺血管渗漏:RhoA / Rho激酶途径的作用

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Introduction Excessive vascular permeability is a characteristic feature of ALI. We have previously demonstrated that UFH prevents LPS-induced disruption of endothelial barrier function in vitro. It was the objective of this study to determine whether UFH may attenuate endotoxin-induced lung vascular leak in mice and to further explore the possible underlying mechanisms. Methods C57BL/6J mice were randomly divided into the control, LPS and LPS plus UFH groups. Sepsis was induced by intraperitoneal injection of LPS at a dose of 30 mg/kg. Mice in the LPS plus UFH group were intravenously received 8 units UFH (heparin sodium) diluted in 20 μl sterile saline at 0.5 h before the injection of LPS. Results 1) UFH pretreatment attenuated LPS-induced histopathological changes in Lung at 6 h; 2) Pretreatment of mice with UFH ameliorated LPS-induced lung edema and lung vascular leak at 6 h; 3) UFH pretreatment dramatically inhibited RhoA and ROCK activation in the lung tissues of LPS-treated mice (3 and 6 h). 4) UFH pretreatment significantly down-regulated ROCK1 gene expression, but did not affect the increased expression of ROCK2 mRNA in the lung tissues of LPS-treated mice at 3 or 6 h. Conclusion These data suggest that UFH may attenuate endotoxin-induced lung vascular leak by regulating RhoA/Rho kinase pathway.
机译:简介血管通透性过高是ALI的特征。我们以前已经证明,UFH可以在体外阻止LPS诱导的内皮屏障功能的破坏。这项研究的目的是确定UFH是否可以减轻内毒素诱导的小鼠肺血管渗漏,并进一步探讨可能的潜在机制。方法将C57BL / 6J小鼠随机分为对照组,LPS组和LPS加UFH组。通过腹膜内注射30 mg / kg的LPS引起败血症。 LPS加UFH组的小鼠在注射LPS之前0.5小时静脉内接受8单位UFH(肝素钠)稀释于20μl无菌盐水中。结果1)UFH预处理在6 h减弱了LPS诱导的肺组织病理学改变; 2)UFH预处理小鼠在6 h改善LPS诱导的肺水肿和肺血管渗漏; 3)UFH预处理可显着抑制LPS处理的小鼠肺组织中的RhoA和ROCK活化(3和6小时)。 4)UFH预处理在3或6 h显着下调ROCK1基因表达,但不影响LPS处理小鼠肺组织中ROCK2 mRNA的表达增加。结论这些数据表明,UFH可能通过调节RhoA / Rho激酶途径减轻内毒素诱导的肺血管渗漏。

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