首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Mouse model of liver ischemia and reperfusion injury: method for studying reactive oxygen and nitrogen metabolites in vivo.
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Mouse model of liver ischemia and reperfusion injury: method for studying reactive oxygen and nitrogen metabolites in vivo.

机译:肝缺血和再灌注损伤的小鼠模型:研究体内活性氧和氮代谢产物的方法。

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The mouse model of liver ischemia and reperfusion injury has proven to be valuable for our understanding of the role that reactive oxygen and nitrogen metabolites play in postischemic tissue injury. This methods paper provides a detailed protocol for inducing partial liver ischemia followed by reperfusion. Liver ischemia is induced in anesthetized mice by cross-clamping the hepatic artery and portal vein for varying lengths of time, resulting in deprivation of blood flow to approximately 70% of the liver. Restoration of blood flow to the ischemic lobes enhances superoxide production concomitant with a rapid and marked decrease in the bioavailability of nitric oxide, resulting in alterations in the redox state of the liver in favor of a more oxidative environment. This hepatocellular oxidative stress induces the activation of oxidant-sensitive transcription factors followed by the upregulation of proinflammatory cytokines and mediators that ultimately lead to liver injury. This model can be induced in any strain or sex of mouse and requires 1-2 months of practice to become proficient in the surgery and animal manipulation. The roles of various reactive metabolites of oxygen and nitrogen may be evaluated using genetically engineered mice as well as selective molecular, cellular, and/or pharmacological agents.
机译:肝脏缺血和再灌注损伤的小鼠模型已被证明对于我们了解活性氧和氮代谢产物在缺血后组织损伤中的作用具有重要意义。该方法论文提供了诱导部分肝缺血再灌注的详细方案。通过交叉钳夹肝动脉和门静脉持续不同的时间长度,可以在麻醉的小鼠中诱发肝脏缺血,从而导致大约70%的肝脏血流减少。恢复至缺血性叶的血流可增加超氧化物的产生,同时使一氧化氮的生物利用度迅速显着下降,从而导致肝脏氧化还原状态发生改变,有利于更氧化的环境。这种肝细胞氧化应激诱导了氧化剂敏感性转录因子的活化,随后促炎性细胞因子和介质的上调最终导致肝损伤。可以在任何品系或小鼠性别中诱导该模型,并且需要1-2个月的实践才能精通手术和动物操作。氧和氮的各种反应性代谢产物的作用可以使用基因工程小鼠以及选择性分子,细胞和/或药理学试剂进行评估。

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