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背景:断奶前后小鼠小肠中(自发的)免疫球蛋白产生情况。

Background (spontaneous) immunoglobulin production in the murine small intestine before and after weaning.

作者信息

van der Heijden P J, Bianchi A T, Heidt P J, Stok W, Bokhout B A

机构信息

Department of Immunology, Central Veterinary Institute, Lelystad, The Netherlands.

出版信息

J Reprod Immunol. 1989 Jul;15(3):217-27. doi: 10.1016/0165-0378(89)90013-2.

Abstract

The ontogeny of the murine intestinal B-cell compartment before and after weaning was studied by quantitative analysis of immunoglobulin-secreting cells (Ig-SC) in the small intestine (SI). Before weaning, few Ig-SC were detected in the SI, whereas spleen and bone marrow already contained many Ig-SC. The number of Ig-SC in the SI started to increase immediately after weaning. Comparing early-weaned mice with non-weaned mice of the same age clearly demonstrated that weaning brought on the development of Ig-SC in the SI. The influence of a gut flora on the number of Ig-SC in the SI was examined by comparing the number of Ig-SC in the SI of conventionally housed, specific pathogen free (SPF) and germ-free mice. A bacterial flora was apparently needed for the normal development of Ig-SC in the SI. Comparing mice containing an aerobic Gram-negative bacterial flora with mice containing only an anaerobic Gram-positive bacterial flora demonstrated that the type of bacterial flora is relatively unimportant. No evidence was found that circulating maternal antibodies suppressed the development of the "spontaneous" intestinal and systemic B cell response. The results show that bacterial colonization of the intestine plays a pivotal role in the development of the Ig-SC compartment in the SI.

摘要

通过对小肠(SI)中免疫球蛋白分泌细胞(Ig-SC)进行定量分析,研究了断奶前后小鼠肠道B细胞区室的个体发生。断奶前,在SI中检测到的Ig-SC很少,而脾脏和骨髓中已经含有许多Ig-SC。断奶后,SI中Ig-SC的数量立即开始增加。将早期断奶小鼠与同龄未断奶小鼠进行比较,清楚地表明断奶促进了SI中Ig-SC的发育。通过比较常规饲养、无特定病原体(SPF)和无菌小鼠SI中Ig-SC的数量,研究了肠道菌群对SI中Ig-SC数量的影响。显然,细菌菌群是SI中Ig-SC正常发育所必需的。将含有需氧革兰氏阴性菌菌群的小鼠与仅含有厌氧革兰氏阳性菌菌群的小鼠进行比较,结果表明细菌菌群的类型相对不重要。没有发现循环母体抗体抑制“自发”肠道和全身B细胞反应发展的证据。结果表明,肠道细菌定植在SI中Ig-SC区室的发育中起关键作用。

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