首页> 美国卫生研究院文献>Frontiers in Immunology >The Receptor for Advanced Glycation Endproducts Does Not Contribute to Pathology in a Mouse Mesenteric Ischemia/Reperfusion-Induced Injury Model
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The Receptor for Advanced Glycation Endproducts Does Not Contribute to Pathology in a Mouse Mesenteric Ischemia/Reperfusion-Induced Injury Model

机译:先进的糖基化终产物的受体在小鼠肠系膜缺血/再灌注诱导的损伤模型中并不有助于病理。

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摘要

The receptor for advanced glycation endproducts (RAGE) can engage a diverse class of ligands and contribute to the immune and inflammatory response to infection and injury. It is known to be a pathogenic receptor in many inflammatory diseases, including ischemia/reperfusion (IR) injuries in several tissues; however, its role has not been investigated in IR injuries of the intestine to date. Mesenteric (or intestinal) IR leads to recruitment of inflammatory cells into intestinal interstitial spaces, which markedly disrupts intestinal mucosa. IR-induced mucosal injury is accompanied by the development of a local and systemic inflammatory response and remote organ injury, and results in high mortality in the clinic. We hypothesized that elimination of RAGE signaling using RAGE−/− mice would result in decreased local and remote organ injury and reduced inflammation in a mesenteric IR model, and thus be a target for therapeutic intervention. We found that RAGE ligands including HMGB-1 and C3a were elevated after mesenteric IR indicating the potential for enhanced RAGE activation in this model. However despite this, wild-type and RAGE−/− mice both displayed similar degrees of mesenteric injury, neutrophil infiltration, intestinal edema, cytokine generation, neutrophil mobilization, and remote organ injury after mesenteric IR. We, therefore, conclude that despite its role in other organ IR injuries, and the robust production of RAGE ligands after intestinal ischemia, RAGE itself does not directly influence tissue injury and the inflammatory response in mesenteric IR.
机译:晚期糖基化终产物的受体(RAGE)可以与各种配体结合,并有助于对感染和损伤的免疫和炎症反应。已知它是许多炎症性疾病的致病性受体,包括多个组织的缺血/再灌注(IR)损伤。然而,迄今为止,尚未对其在肠道IR损伤中的作用进行过研究。肠系膜(或肠)IR导致炎症细胞募集进入肠间隙,这明显破坏了肠粘膜。 IR引起的粘膜损伤伴随着局部和全身性炎症反应的发展以及远端器官损伤,并导致临床上的高死亡率。我们假设使用RAGE -// 小鼠消除RAGE信号传导将减少肠系膜IR模型的局部和远端器官损伤并减少炎症,因此成为治疗干预的目标。我们发现肠系膜IR后RAGE配体(包括HMGB-1和C3a)升高,表明该模型中RAGE激活增强的潜力。然而,尽管如此,野生型和RAGE -/-小鼠在肠系膜IR后均表现出相似程度的肠系膜损伤,中性粒细胞浸润,肠水肿,细胞因子生成,中性白细胞动员和远端器官损伤。因此,我们得出的结论是,尽管RAGE可能在其他器官IR损伤中起作用,并且在肠缺血后会大量产生RAGE配体,但RAGE本身并不直接影响组织损伤和肠系膜IR中的炎症反应。

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