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通过打破耐受性未能诱导器官特异性自身免疫:微环境的重要性。

Failure to induce organ-specific autoimmunity by breaking of tolerance: importance of the microenvironment.

作者信息

Limmer A, Sacher T, Alferink J, Kretschmar M, Schönrich G, Nichterlein T, Arnold B, Hämmerling G J

机构信息

Division of Molecular Immunology, German Cancer Research Center, Heidelberg.

出版信息

Eur J Immunol. 1998 Aug;28(8):2395-406. doi: 10.1002/(SICI)1521-4141(199808)28:08<2395::AID-IMMU2395>3.0.CO;2-D.

Abstract

Peripheral tolerance is considered to be a safeguard against autoimmunity. Using a TCR-transgenic mouse system displaying peripheral tolerance against a liver-specific MHC class I Kb antigen, we investigated whether the breaking of tolerance would result in autoimmunity. Reversal of tolerance was achieved by simultaneous challenge with cells expressing the Kb autoantigen and IL-2. Tolerance could not be broken with IL-2 alone or when Kb- and IL-2-expressing cells were applied to different sites of the mice. However, despite the presence of activated autoreactive T cells that were able to reject Kb-positive grafts no autoaggression against the Kb-positive liver was observed. These results indicate that breaking of tolerance per se is not sufficient to cause liver-specific autoimmunity. However, when in addition to breaking tolerance the mice were infected with a liver-specific pathogen, autoaggression occurred. Thus, in this system at least two independent steps seem to be required for organ-specific autoimmunity: reversal of peripheral tolerance resulting in functional activation of autoreactive T cells and conditioning of the liver microenvironment which enables the activated T cells to cause tissue damage.

摘要

外周耐受被认为是防止自身免疫的一种保护机制。利用一个对肝脏特异性MHC I类Kb抗原表现出外周耐受的TCR转基因小鼠系统,我们研究了耐受的打破是否会导致自身免疫。通过同时用表达Kb自身抗原的细胞和白细胞介素-2(IL-2)进行刺激,实现了耐受的逆转。单独使用IL-2或当表达Kb和IL-2的细胞应用于小鼠的不同部位时,耐受无法被打破。然而,尽管存在能够排斥Kb阳性移植物的活化自身反应性T细胞,但未观察到对Kb阳性肝脏的自身攻击。这些结果表明,耐受的打破本身不足以引起肝脏特异性自身免疫。然而,当除了打破耐受之外,小鼠还感染了肝脏特异性病原体时,就会发生自身攻击。因此,在这个系统中,器官特异性自身免疫似乎至少需要两个独立的步骤:外周耐受的逆转导致自身反应性T细胞的功能活化,以及肝脏微环境的调节,使活化的T细胞能够造成组织损伤。

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