Suppr超能文献

同源MRL-Ipr/Ipr.xid小鼠的研究。

Studies of congenic MRL-Ipr/Ipr.xid mice.

作者信息

Steinberg E B, Santoro T J, Chused T M, Smathers P A, Steinberg A D

出版信息

J Immunol. 1983 Dec;131(6):2789-95.

PMID:6605990
Abstract

Highly inbred MRL-Ipr/Ipr.xid congenic mice were bred and compared with their + littermates. The xid-bearing congenics developed lymphadenopathy consisting of dull Ly-1+ T cells and impairment of cellular proliferation and IL 2 production in response to the T cell mitogen Con A. Thus, the lpr gene was fully expressed. The xid gene, however, was also expressed as indicated by the failure to respond to immunization with TNP-Ficoll and flow cytometric analysis of splenic B cells. The xid gene was associated with a marked reduction in IgM anti-ssDNA and anti-nDNA of both classes, and serum Ig-bound gp 70. Kidney disease was markedly retarded as was death from the autoimmune process. These studies suggest that the T cell lymphoproliferation and dysfunction characteristic of MRL-Ipr/Ipr mice is not sufficient to induce accelerated autoimmunity; xid is able to markedly slow the process. The xid gene interferes with the development of a B cell subset necessary for maximum autoantibody production, anti-gp 70 production, and the resultant immune complex renal and cardiac disease. The present finding of protection against accelerated autoimmunity in MRL-Ipr/Ipr mice by xid, coupled with previous demonstrations of protection against autoimmunity in other autoimmune mouse strains, suggests that a common approach to the therapy of systemic lupus may be possible.

摘要

培育出高度近交的MRL-Ipr/Ipr.xid同源基因小鼠,并与它们的 + 同窝小鼠进行比较。携带xid基因的同源基因小鼠出现淋巴结病,其特征为反应迟钝的Ly-1+ T细胞以及对T细胞有丝分裂原刀豆蛋白A的细胞增殖和白细胞介素2产生受损。因此,lpr基因得以充分表达。然而,xid基因也有表达,这表现为对TNP-菲可(TNP-Ficoll)免疫无反应以及对脾B细胞的流式细胞术分析结果。xid基因与两类IgM抗单链DNA和抗双链DNA以及血清Ig结合的gp 70显著减少有关。肾脏疾病明显延缓,自身免疫过程导致的死亡也明显延缓。这些研究表明,MRL-Ipr/Ipr小鼠特有的T细胞淋巴增殖和功能障碍不足以诱导加速的自身免疫;xid能够显著减缓这一过程。xid基因干扰了最大程度产生自身抗体、产生抗gp 70以及由此引发的免疫复合物性肾病和心脏病所必需的B细胞亚群的发育。目前发现xid可保护MRL-Ipr/Ipr小鼠免受加速的自身免疫影响,再加上之前证明可保护其他自身免疫小鼠品系免受自身免疫影响,这表明可能有一种治疗系统性红斑狼疮的通用方法。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验