烧伤影响肠道相关淋巴组织衍生的CD4+ T细胞

Nadeem Fazal , Alla Shelip , Alhusain J. Alzahrani
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引用次数: 5

摘要

烫伤烧伤后,肠道免疫系统反应维持免疫平衡。在这方面,肠道相关淋巴组织(GALT)中的CD4+T细胞,如肠系膜淋巴结(MLN)和Peyer’s patches (PP),在烧伤等重大损伤后会做出反应,以避免免疫抑制。因此,我们假设肠道CD4+T细胞功能失调,使免疫稳态转向CD4+T细胞介导的适应性免疫反应的抑制。在本研究中,我们发现粘膜CD4+ T细胞增殖、IL-2产生和细胞表面标志物表达下调,粘膜CD4+ T细胞向抑制性方向发展。急性烧伤损伤导致调节标志物(CD25+)表达上调,粘附(CD62L、CD11a)和归巢受体(CD49d)表达下调,负共刺激(CTLA-4)分子表达上调。此外,肠道来源的CD4+CD25+ T细胞对自发和诱导的细胞凋亡表现出抗性,这可能有助于抑制效应CD4+ T细胞。此外,从烧伤动物获得的肠道CD4+CD25+ T细胞在将烧伤动物的CD4+CD25+ T细胞过继转移到假对照动物后,能够下调naïve CD4+ T细胞的增殖,而对细胞表面活化标志物没有显著影响。总之,这些数据表明,肠道CD4+ T细胞进化出一种促进抑制性CD4+ T细胞效应反应的策略,如CD4+CD25+ T细胞增强、CTLA-4表达上调、IL-2产生减少、抑制性CD4+ T细胞凋亡减少的趋势,从而在急性烧伤损伤后失去调节免疫稳态和预防免疫瘫痪的自然能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Burn-injury affects gut-associated lymphoid tissues derived CD4+ T cells

After scald burn-injury, the intestinal immune system responds to maintain immune balance. In this regard CD4+T cells in Gut-Associated Lymphoid Tissues (GALT), like mesenteric lymph nodes (MLN) and Peyer's patches (PP) respond to avoid immune suppression following major injury such as burn. Therefore, we hypothesized that the gut CD4+T cells become dysfunctional and turn the immune homeostasis towards depression of CD4+ T cell-mediated adaptive immune responses. In the current study we show down regulation of mucosal CD4+ T cell proliferation, IL-2 production and cell surface marker expression of mucosal CD4+ T cells moving towards suppressive-type. Acute burn-injury lead to up-regulation of regulatory marker (CD25+), down regulation of adhesion (CD62L, CD11a) and homing receptor (CD49d) expression, and up-regulation of negative co-stimulatory (CTLA-4) molecule. Moreover, CD4+CD25+ T cells of intestinal origin showed resistance to spontaneous as well as induced apoptosis that may contribute to suppression of effector CD4+ T cells. Furthermore, gut CD4+CD25+ T cells obtained from burn-injured animals were able to down-regulate naïve CD4+ T cell proliferation following adoptive transfer of burn-injured CD4+CD25+ T cells into sham control animals, without any significant effect on cell surface activation markers. Together, these data demonstrate that the intestinal CD4+ T cells evolve a strategy to promote suppressive CD4+ T cell effector responses, as evidenced by enhanced CD4+CD25+ T cells, up-regulated CTLA-4 expression, reduced IL-2 production, tendency towards diminished apoptosis of suppressive CD4+ T cells, and thus lose their natural ability to regulate immune homeostasis following acute burn-injury and prevent immune paralysis.

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