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首页> 外文期刊>The journal of immunology >CC Chemokine Ligands 25 and 28 Play Essential Roles in Intestinal Extravasation of IgA Antibody-Secreting Cells
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CC Chemokine Ligands 25 and 28 Play Essential Roles in Intestinal Extravasation of IgA Antibody-Secreting Cells

机译:CC趋化因子配体25和28在IgA抗体分泌细胞的肠道外渗中起重要作用。

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CCL25 (also known as thymus-expressed chemokine) and CCL28 (also known as mucosae-associated epithelial chemokine) play important roles in mucosal immunity by recruiting IgA Ab-secreting cells (ASCs) into mucosal lamina propria. However, their exact roles in vivo still remain to be defined. In this study, we first demonstrated in mice that IgA ASCs in small intestine expressed CCR9, CCR10, and CXCR4 on the cell surface and migrated to their respective ligands CCL25, CCL28, and CXCL12 (also known as stromal cell-derived factor 1), whereas IgA ASCs in colon mainly expressed CCR10 and CXCR4 and migrated to CCL28 and CXCL12. Reciprocally, the epithelial cells of small intestine were immunologically positive for CCL25 and CCL28, whereas those of colon were positive for CCL28 and CXCL12. Furthermore, the venular endothelial cells in small intestine were positive for CCL25 and CCL28, whereas those in colon were positive for CCL28, suggesting their direct roles in extravasation of IgA ASCs. Consistently, in mice orally immunized with cholera toxin (CT), anti-CCL25 suppressed homing of CT-specific IgA ASCs into small intestine, whereas anti-CCL28 suppressed homing of CT-specific IgA ASCs into both small intestine and colon. Reciprocally, CT-specific ASCs and IgA titers in the blood were increased in mice treated with anti-CCL25 or anti-CCL28. Anti-CXCL12 had no such effects. Finally, both CCL25 and CCL28 were capable of enhancing α4 integrin-dependent adhesion of IgA ASCs to mucosal addressin cell adhesion molecule-1 and VCAM-1. Collectively, CCL25 and CCL28 play essential roles in intestinal homing of IgA ASCs primarily by mediating their extravasation into intestinal lamina propria.
机译:CCL25(也称为胸腺表达的趋化因子)和CCL28(也称为与粘膜相关的上皮趋化因子)通过将IgA Ab分泌细胞(ASC)募集到粘膜固有层中,在粘膜免疫中发挥重要作用。然而,它们在体内的确切作用仍待确定。在这项研究中,我们首先在小鼠中证明了小肠中的IgA ASC在细胞表面表达了CCR9,CCR10和CXCR4,并迁移到它们各自的配体CCL25,CCL28和CXCL12(也称为基质细胞衍生因子1),而结肠中的IgA ASC主要表达CCR10和CXCR4,并迁移到CCL28和CXCL12。相反,小肠上皮细胞对CCL25和CCL28免疫阳性,而结肠对CCL28和CXCL12阳性。此外,小肠中的静脉内皮细胞CCL25和CCL28呈阳性,而结肠中的CCL28呈阳性,表明它们直接参与了IgA ASC的外渗。一致地,在口服霍乱毒素(CT)免疫的小鼠中,抗CCL25抑制了CT特异性IgA ASC向小肠的归巢,而抗CCL28抑制了CT特异性IgA ASC向小肠和结肠的归巢。相反,用抗CCL25或抗CCL28处理的小鼠血液中的CT特异性ASC和IgA滴度增加。抗CXCL12没有这种作用。最后,CCL25和CCL28都能够增强IgA ASC对细胞粘附分子1和VCAM-1的粘膜膜地址的α4整合素依赖性粘附。总体而言,CCL25和CCL28在IgA ASC的肠道归巢中起主要作用,主要是通过将其渗入肠道固有层来进行。

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