首页> 外文期刊>Microcirculation: The official journal of the Microcirculatory Society >Carbon monoxide‐releasing molecule‐3 ( CORM CORM ‐3) offers protection in an in vitro model of compartment syndrome
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Carbon monoxide‐releasing molecule‐3 ( CORM CORM ‐3) offers protection in an in vitro model of compartment syndrome

机译:一氧化碳释放分子-3(CIMN CINT -3)在室内综合征的体外模型中提供保护

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Abstract Objective Limb compartment syndrome ( CS ), a complication of trauma, results in muscle necrosis and cell death; ischemia and inflammation contribute to microvascular dysfunction and parenchymal injury. Carbon monoxide‐releasing molecule‐3 ( CORM ‐3) has been shown to protect microvascular perfusion and reduce inflammation in animal models of CS . The purpose of the study was to test the effect of CORM ‐3 in human in vitro CS model, allowing exploration of the mechanism(s) of CO protection and potential development of pharmacologic treatment. Methods Confluent human vascular endothelial cells ( HUVEC s) were stimulated for 6?h with serum isolated from patients with CS . Intracellular oxidative stress (production of reactive oxygen species ( ROS )) apoptosis, transendothelial resistance ( TEER ), polymorphonuclear leukocyte ( PMN ) activation and transmigration across the monolayer in response to the CS stimulus were assessed. All experiments were performed in the presence of CORM ‐3 (100?μM) or its inactive form, iCORM ‐3. Results CS serum induced a significant increase in ROS , apoptosis and endothelial monolayer breakdown; it also increased PMN superoxide production, leukocyte rolling and adhesion/transmigration. CORM ‐3 completely prevented CS ‐induced ROS production, apoptosis, PMN adhesion, rolling and transmigration, while improving monolayer integrity. Conclusion CORM ‐3 offers potent anti‐oxidant and anti‐inflammatory effects, and may have a potential application to patients at risk of developing CS .
机译:摘要客观肢体隔室综合征(CS),创伤并发症,导致肌坏死和细胞死亡;缺血和炎症有助于微血管功能障碍和实质损伤。已显示一氧化碳释放分子-3(CINT -3)保护微血管灌注并减少CS的动物模型中的炎症。该研究的目的是测试CIMR -3在人体外CS模型中的作用,从而探讨了CO保护机制和药物治疗的潜在发展。方法用CS患者分离的血清刺激融合人血管内皮细胞(HUVEC S)。分析细胞内氧化应激(活性氧(ROS)的产生)凋亡,转型性抗性(TEER),多核白细胞(PMN)活化和在整个单层响应于CS刺激的单层的激活和迁移。所有实验均在CIMR -3(100μm)或其无活性形式的存在下进行,ICOM-3进行。结果CS血清诱导ROS,细胞凋亡和内皮单层击穿的显着增加;它还增加了PMN超氧化物生产,白细胞轧制和粘附/迁移。 CIMR -3完全防止CS诱导ROS生产,凋亡,PMN粘附,滚动和迁移,同时改善单层完整性。结论CVER -3提供有效的抗氧化剂和抗炎作用,可能对患者有潜在的应用,患者有发展CS的风险。

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