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Human natural IgM can induce ischemia/reperfusion injury in a murine intestinal model

机译:人天然IgM可以在鼠肠模型中诱导缺血/再灌注损伤

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摘要

A new mechanism of ischemia/reperfusion (I/R) injury is discovered recently operating through innate autoimmunity. Studies of different animal I/R models showed that reperfusion of ischemic tissues elicits an acute inflammatory response involving complement system which is activated by autoreactive natural IgM. Whether similar mechanism operating in human is still unknown. We investigated this important question by testing if human natural IgM could induce I/R injury in an established murine intestinal model. RAG-1−/− mice (immunoglobulin deficient), which are protected from I/R injury, were reconstituted with purified normal human IgM and subjected in an intestinal injury model. Reconstituted RAG-1−/− mice that were underwent sham treatment did not show tissue injury in intestine. In contrast, reconstituted RAG-1−/− mice that underwent 40 minutes intestinal ischemia and 3 hours reperfusion showed significant injury in the local tissues. In addition, immunohistochemistry showed that complement C4 were deposited in intestinal villi of I/R but not sham treated mice. Therefore, our study is the first report describing that human natural IgM is capable to induce I/R injury in the intestinal model, and further suggests that innate autoimmunity may operate under pathogenic conditions in human.
机译:最近发现通过先天性自身免疫起作用的一种新的缺血/再灌注(I / R)损伤机制。对不同动物I / R模型的研究表明,缺血组织的再灌注引发了涉及补体系统的急性炎症反应,该补体系统由自身反应性天然IgM激活。在人体内是否有类似的机制尚不清楚。我们通过测试人类天然IgM是否可以在已建立的鼠肠模型中诱发I / R损伤,从而研究了这一重要问题。保护免受I / R损伤的RAG-1 -/-小鼠(免疫球蛋白缺陷),用纯化的正常人IgM重建,并置于肠损伤模型中。接受假手术处理的重组RAG-1 -/-小鼠在肠中未显示组织损伤。相反,重组的RAG-1 -/-小鼠经历了40分钟的肠缺血和3小时的再灌注,对局部组织显示出明显的损伤。此外,免疫组化显示补体C4沉积在I / R的肠绒毛中,而不是假处理的小鼠。因此,我们的研究是第一个描述人类天然IgM能够在肠道模型中诱导I / R损伤的报告,并且进一步表明先天自身免疫可能在人类的致病条件下起作用。

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