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首页> 外文期刊>Advances in Experimental Medicine and Biology >Tissue hypoxia during bacterial sepsis is attenuated by PR-39, an antibacterial peptide.
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Tissue hypoxia during bacterial sepsis is attenuated by PR-39, an antibacterial peptide.

机译:PR-39(一种抗菌肽)可减轻细菌性脓毒症中的组织缺氧。

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Endotoxin (a lipopolysaccharide (LPS) component of the Gram negative bacterial cell wall) induces sepsis in laboratory animals and is the cause of septic shock in patients. Tissues often develop necrotic regions, particularly in kidney and liver, thought to be directly the result of endotoxin-induced release of nitric oxide (NO). These studies investigated the potential of PR-39, an antibacterial peptide, as an alternative treatment for sepsis. Our rationale for these experiments was based on the knowledge that PR-39 inhibits the superoxide-producing NADH/NADPH-oxidase system, and also inhibits NOS. In a mouse model of sepsis, we carried out EPR measurements of liver pO2 and NO simultaneously in vivo. Physiological parameters were also measured in these animals (blood pressure, heart rate). NO levels in blood were measured by EPR analysis of red blood cell nitrosyl-hemoglobin. We found PR-39 alleviated endotoxin-induced liver hypoxia 6 hrs after treatment. Tissue NO was higher in the PR-39 + LPS group compared to LPS alone. Circulating levels of NO were the same in these groups. Taken together, these results suggest PR-39 is effective in improving survival following a septic episode. The exact mechanism is unclear, but increased NO as a result of decreased superoxide production seems to play an important role in alleviating tissue hypoxia.
机译:内毒素(革兰氏阴性细菌细胞壁的脂多糖(LPS)成分)在实验动物中诱发败血症,并且是患者败血性休克的原因。组织通常会形成坏死区域,尤其是在肾脏和肝脏,是内毒素诱导的一氧化氮(NO)释放的直接结果。这些研究调查了抗菌肽PR-39作为败血症替代疗法的潜力。这些实验的基本原理是基于PR-39抑制产生超氧化物的NADH / NADPH-氧化酶系统,同时也抑制NOS的认识。在脓毒症的小鼠模型中,我们在体内同时进行了肝脏pO2和NO的EPR测量。还测量了这些动物的生理参数(血压,心率)。通过对红细胞亚硝酰基血红蛋白的EPR分析来测量血液中的NO水平。我们发现PR-39在治疗后6小时减轻了内毒素引起的肝脏缺氧。 PR-39 + LPS组的组织NO高于单独的LPS。这些组的循环NO水平相同。两者合计,这些结果表明PR-39在改善败血症发作后的存活率方面是有效的。确切的机制尚不清楚,但由于减少的过氧化物产生而增加的NO似乎在减轻组织缺氧中起重要作用。

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