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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >PAD4 Deficiency Leads to Decreased Organ Dysfunction and Improved Survival in a Dual Insult Model of Hemorrhagic Shock and Sepsis
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PAD4 Deficiency Leads to Decreased Organ Dysfunction and Improved Survival in a Dual Insult Model of Hemorrhagic Shock and Sepsis

机译:PAD4缺乏症导致器官功能障碍降低,在出血性休克和败血症的双重损害模型中提高生存

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摘要

Indirect acute respiratory distress syndrome (iARDS) is caused by a nonpulmonary inflammatory process resulting from insults such as nonpulmonary sepsis. Neutrophils are thought to play a significant role in mediating ARDS, with the development of iARDS being characterized by dysregulation and recruitment of activated neutrophils into the lung. Recently, a novel mechanism of microbial killing by neutrophils was identified through the formation of neutrophil extracellular traps (NETs). NETs are composed of large webs of decondensed chromatin released from activated neutrophils into the extracellular space; they are regulated by the enzyme peptidylarginine deiminase 4 (PAD4) through mediation of chromatin decondensation via citrullination of target histones. Components of NETs have been implicated in ARDS. However, it is unknown whether there is any pathological significance of NET formation in ARDS caused indirectly by nonpulmonary insult. We subjected PAD4(-/-) mice and wild-type mice to a " two-hit" model of hypovolemic shock (fixed-pressure hemorrhage [Hem]) followed by septic cecal ligation and puncture (CLP) insult (Hem/ CLP). Mice were hemorrhaged and resuscitated; 24 h after Hem, mice were then subjected to CLP. Overall, PAD4 deletion led to an improved survival as compared with wild-type mice. PAD4(-/-) mice displayed a marked decrease in neutrophil influx into the lung, as well decreased presence of proinflammatory mediators. PAD4(-/-) mice were also able to maintain baseline kidney function after Hem/CLP. These data taken together suggest PAD4-mediated NET formation contributes to the mortality associated with shock/sepsis and may play a role in the pathobiology of end organ injury in response to combined hemorrhage plus sepsis.
机译:间接急性呼吸窘迫综合征(IARDS)是由非玻璃败血症等侮辱引起的非玻利炎症过程引起的。中性粒细胞被认为在调解ARDS中发挥重要作用,随着IIARD的表现为表征,其在肺部进入肺部的活化中性粒细胞的表征。最近,通过形成中性粒细胞细胞外疏水膜(网)来鉴定中性粒细胞的微生物杀死微生物杀伤的新机制。网是由从活性中性粒细胞释放到细胞外空间的大型裂解染色质的覆盖染色质的纤维素组成;它们由酶Peptidyl族氨酰胺酶4(PAD4)通过靶组蛋白的瓜毛蛋白裂解的调节来调节。网的组成部分涉及ARDS。然而,尚不清楚在非玻璃损伤间接地引起的ARDS中净形成是否存在任何病理意义。我们使PAC4( - / - )小鼠和野生型小鼠进行“两次击中”的缓慢休克(固定压力出血[下摆]),然后进行脓肠杆菌连接和穿刺(CLP)侮辱(HEM / CLP) 。小鼠出血并复苏;下摆后24小时,然后进行小鼠进行CLP。总体而言,与野生型小鼠相比,PAD4删除导致了改善的存活。 PAD4( - / - )小鼠显示出中性粒细胞流入肺部的显着降低,同时降低了促炎介质的存在。 PAD4( - / - )小鼠还能够在下摆/ CLP后保持基线肾功能。将这些数据组合在一起表明PAD4介导的净形成有助于与休克/败血症相关的死亡率,并且可能在终体器官损伤的病原体学中发挥作用,以应对脓毒症组合败血症。

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