Suppr超能文献

BXSB小鼠中胸腺对自身免疫调节的证据:新生期胸腺切除加速疾病进程

Evidence for thymic regulation of autoimmunity in BXSB mice: acceleration of disease by neonatal thymectomy.

作者信息

Smith H R, Chused T M, Smathers P A, Steinberg A D

出版信息

J Immunol. 1983 Mar;130(3):1200-4.

PMID:6600477
Abstract

BXSB mice spontaneously develop an autoimmune syndrome characterized by autoantibody production, immune complex renal disease, and lymphadenopathy containing B cells. The male BSXB mouse has a rapid onset of disease that is determined by defective stem cells. Although the B cell hyperactivity has been traced to the stem cell, previous studies did not evaluate the T cells of BXSB mice with regard to a role in modifying their natural history. The present study was carried out in an attempt to determine whether or not thymic regulation played a role in modulating the stem-B cell abnormalities in BXSB mice. It was found that neonatal thymectomy led to a marked increase in autoantibody production (anti-RBC, anti-DNA), a dramatic increase in lymphadenopathy, and worsening of renal disease. Flow cytometric analysis of the lymph node cells from intact and thymectomized mice demonstrated a loss of Lyt-2+ cells from the thymectomized mice and an increased proportion of Ly-1+, Thy-1.2- cells. These results indicate that although the B cell hyperactivity of BXSB mice is determined by a marrow stem cell defect, thymic regulation normally serves to dampen that B cell hyperactivity; neonatal thymectomy reduces the thymic regulation of autoimmunity in the BXSB males and leads to excessive B cell numbers and function.

摘要

BXSB小鼠会自发发展出一种自身免疫综合征,其特征为自身抗体产生、免疫复合物肾病以及含有B细胞的淋巴结病。雄性BXSB小鼠发病迅速,这由缺陷干细胞决定。尽管B细胞的过度活跃已追溯至干细胞,但先前的研究并未评估BXSB小鼠的T细胞在改变其自然病程中所起的作用。本研究旨在确定胸腺调节是否在调节BXSB小鼠的干细胞 - B细胞异常中发挥作用。研究发现,新生期胸腺切除导致自身抗体产生(抗红细胞、抗DNA)显著增加、淋巴结病急剧增加以及肾病恶化。对完整小鼠和胸腺切除小鼠的淋巴结细胞进行流式细胞术分析显示,胸腺切除小鼠的Lyt - 2 +细胞减少,Ly - 1 +、Thy - 1.2 -细胞比例增加。这些结果表明,尽管BXSB小鼠的B细胞过度活跃由骨髓干细胞缺陷决定,但胸腺调节通常会抑制该B细胞过度活跃;新生期胸腺切除会降低BXSB雄性小鼠自身免疫的胸腺调节,导致B细胞数量和功能过多。

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