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CD47-deficient mice have decreased production of intestinal IgA following oral immunization but a maintained capacity to induce oral tolerance

机译:CD47缺陷型小鼠口服免疫后肠道IgA产量降低但诱导口服耐受的能力得以维持

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摘要

Signal regulatory protein α (SIRPα/CD172a), expressed by myeloid cells including CD11b+ dendritic cells, interacts with ubiquitously expressed CD47 to mediate cell–cell signalling and therefore, may be pivotal in the development of tolerance or immunity. We show that in mice deficient in CD47 (CD47−/−) the cellularity in gut-associated lymphoid tissues is reduced by 50%. In addition, the frequency of CD11b+ CD172a+ dendritic cells is significantly reduced in the gut and mesenteric lymph nodes, but not in Peyer’s patches. Activation of ovalbumin (OVA)-specific CD4+ T cells in the mesenteric lymph nodes after feeding OVA is reduced in CD47−/− mice compared with wild-type however, induction of oral tolerance is maintained. The addition of cholera toxin generated normal serum anti-OVA IgG and IgA titres but resulted in reduced intestinal anti-OVA IgA in CD47−/− mice. Replacing the haematopoietic compartment in CD47−/− mice with wild-type cells restored neither the cellularity in gut-associated lymphoid tissues nor the capacity to produce intestinal anti-OVA IgA following immunization. This study demonstrates that CD47 signalling is dispensable for oral tolerance induction, whereas the expression of CD47 by non-haematopoietic cells is required for intestinal IgA B-cell responses. This suggests that differential CD4 T cell functions control tolerance and enterotoxin-induced IgA immunity in the gut.
机译:包括CD11b + 树突状细胞在内的髓样细胞表达的信号调节蛋白α(SIRPα/ CD172a),与普遍表达的CD47相互作用,介导细胞间信号传导,因此可能在耐受性或免疫。我们显示,在缺乏CD47(CD47 -/-)的小鼠中,与肠道相关的淋巴样组织的细胞减少了50%。此外,CD11b + CD172a + 树突状细胞在肠道和肠系膜淋巴结中的频率显着降低,但在Peyer的斑块中却没有。与野生型相比,喂食OVA的CD47 -/-小鼠中卵清蛋白(OVA)特异性CD4 + T细胞在肠系膜淋巴结中的激活减少,但是诱导维持口腔耐受性。霍乱毒素的添加产生正常的血清抗OVA IgG和IgA滴度,但导致CD47 -/-小鼠的肠道抗OVA IgA减少。用野生型细​​胞代替CD47 -/-小鼠的造血区室,既不能恢复肠道相关淋巴组织的细胞活力,也不能恢复免疫后产生肠道抗OVA IgA的能力。这项研究表明,CD47信号传导对于口服耐受诱导是必不可少的,而非造血细胞的CD47表达是肠道IgA B细胞应答所必需的。这表明差异的CD4 T细胞功能控制肠道的耐受性和肠毒素诱导的IgA免疫力。

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