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首页> 外文期刊>Journal of Emergencies, Trauma and Shock >Effects of aminoguanidine, a potent nitric oxide synthase inhibitor, on myocardial and organ structure in a rat model of hemorrhagic shock
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Effects of aminoguanidine, a potent nitric oxide synthase inhibitor, on myocardial and organ structure in a rat model of hemorrhagic shock

机译:一氧化氮合酶有效抑制剂氨基胍对失血性休克大鼠心肌和器官结构的影响

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Background:Nitric oxide (NO) has been shown to increase following hemorrhagic shock (HS). Peroxynitrite is produced by the reaction of NO with reactive oxygen species, leads to nitrosative stress mediated organ injury. We examined the protective effects of a potent inhibitor of NO synthase, aminoguanidine (AG), on myocardial and multiple organ structure in a rat model of HS.Materials and Methods:Male Sprague Dawley rats (300-350 g) were assigned to 3 experimental groups (n = 6 per group): (1) Normotensive rats (N), (2) HS rats and (3) HS rats treated with AG (HS-AG). Rats were hemorrhaged over 60 min to reach a mean arterial blood pressure of 40 mmHg. Rats were treated with 1 ml of 60 mg/kg AG intra-arterially after 60 min HS. Resuscitation was performed in vivo by the reinfusion of the shed blood for 30 min to restore normo-tension. Biopsy samples were taken for light and electron microscopy.Results:Histological examination of hemorrhagic shocked untreated rats revealed structural damage. Less histological damage was observed in multiple organs in AG-treated rats. AG-treatment decreased the number of inflammatory cells and mitochondrial swollen in myocardial cells.Conclusion:AG treatment reduced microscopic damage and injury in multiple organs in a HS model in rats.
机译:背景:出血性休克(HS)后一氧化氮(NO)升高。过氧亚硝酸盐是由NO与活性氧反应生成的,导致亚硝化应激介导的器官损伤。我们研究了一种强力的NO合酶抑制剂氨基胍(AG)对HS模型大鼠的心肌和多器官结构的保护作用。材料与方法:将雄性Sprague Dawley大鼠(300-350 g)分为3组组(每组n = 6):(1)降压大鼠(N),(2)HS大鼠和(3)用AG(HS-AG)治疗的HS大鼠。在60分钟内使大鼠出血,使平均动脉血压达到40 mmHg。 HS 60分钟后,用1 ml的60 mg / kg AG动脉内处理大鼠。在体内通过回输血液30分钟以恢复血压正常来进行复苏。结果:对失血性休克未治疗的大鼠进行组织学检查,发现其结构受损。在AG治疗的大鼠中,在多个器官中观察到较少的组织学损伤。 AG治疗可减少大鼠心肌炎性细胞数量和线粒体肿胀。结论:AG治疗可减轻HS模型大鼠多器官的微观损伤和损伤。

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