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Changes in lamina propria dendritic cells on the oral administration of exogenous protein antigens during weaning

机译:断奶期间口服外源蛋白抗原后固有层树突状细胞的变化

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Two critical periods of maximum exposure to antigens occur in young mammals, immediately after birth and at weaning, as a result of colonization by commensal bacteria and the ingestion of new diets. At weaning, active immune responses of antibody production against dietary proteins are known to occur, but simultaneously, oral tolerance is acquired for harmless food proteins. However, regulated mechanisms of the immune system at weaning remain to be elucidated although its immune responses may be somewhat similar to those in adulthood. Considering that tolerogenic antigen-presenting cells (APCs) are likely to be a key factor in the acquisition of oral tolerance, in the present study, we examined the changes of dendritic cells (DCs) in the lamina propria (LP) on exposure to food proteins at weaning. C57BL/6 female mice were weaned at the age of 3?weeks and orally administered 10?mg of ovalbumin (OVA) for ten consecutive days after weaning. The administration led to a decrease in the plasma level of immunoglobulin specific for OVA, suggesting the acquisition of oral tolerance. The uptake of fluorescence-labeled OVA was significantly observed for CD11c+LPDCs. When we analyzed the changes of two types of LPDCs, PDCA-1+ MHC II+ DCs and CD103+ MHC II+ DCs, ten consecutive gavages of OVA marginally, but not significantly, augmented only the frequency of PDCA-1+ MHC II+ DCs. Considering that the change of APCs likely appears immediately on the response to antigen intake, we found the statistically significant increase in the frequency of PDCA-1+ DCs, but not in that of CD103+ DCs, even after two treatments, indicating PDCA-1+ DCs to be recruited in the LP within 2?days of exposure to food proteins. These results suggest that the behavior of tolerogenic PDCA-1+ DCs may change at weaning with the removal of the immunoprotective components of maternal milk.
机译:由于共生细菌的定殖和新饮食的摄入,刚出生和刚断奶的年轻哺乳动物会出现两个最大暴露于抗原的关键时期。断奶时,已知会产生针对膳食蛋白的抗体产生主动免疫反应,但同时,获得了对无害食品蛋白的口服耐受性。然而,尽管其免疫反应可能与成年期的免疫反应有些相似,但在断奶时免疫系统的调节机制仍有待阐明。考虑到耐受性抗原呈递细胞(APC)可能是获得口服耐受性的关键因素,在本研究中,我们研究了暴露于食物的固有层(LP)中树突状细胞(DC)的变化断奶时的蛋白质。 C57BL / 6雌性小鼠在3周龄时断奶,断奶后连续10天口服10 µmg卵清蛋白(OVA)。施用导致OVA特异性免疫球蛋白的血浆水平降低,提示获得口服耐受性。对于CD11c + LPDC,显着观察到荧光标记的OVA的摄取。当我们分析两种类型的LPDC(PDCA-1 + MHC II + DC和CD103 + MHC II + DC)的变化时,OVA的十次连续管饲略有(但不显着)增加了PDCA-1 + MHC II + DC的频率。考虑到APC的变化很可能会在抗原摄入后立即出现,因此我们发现,即使经过两次处理,PDCA-1 + DC的频率也有统计学上的显着增加,但CD103 + DC的频率却没有统计学上的显着增加,表明PDCA-1 +暴露于食物蛋白的2天之内将在LP中募集DC。这些结果表明,耐受性PDCA-1 + DC的行为在断奶时可能会随着母乳中免疫保护成分的去除而改变。

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