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用联合疗法复苏适应性调节性T细胞?

Resuscitating adaptive Tregs with combination therapies?

作者信息

Bresson Damien, von Herrath Matthias

机构信息

Developmental Immunology-3, La Jolla Institute for Allergy and Immunology, La Jolla, CA 92037, USA.

出版信息

Novartis Found Symp. 2008;292:50-60; discussion 60-7, 122-9, 202-3. doi: 10.1002/9780470697405.ch5.

Abstract

Induction of 'adaptive' regulatory T cells (Tregs) using islet-specific antigen vaccinations has been shown to prevent disease in various animal models for type 1 diabetes (T1D). Even though translation from bench to bedside has been unsuccessful so far, this non-invasive approach is the Holy Grail to safely achieve immune tolerance in humans. We will discuss here the fact that every immune response appears to contain a balance of adaptive effector and Treg cells. The evolution of these population and their antigen specificities over time during diabetes development will determine at which time and route a given islet antigen can be chosen to augment such adaptive Tregs most efficiently. Their 'resuscitation' will be crucial for long-term tolerance and homeostasis in the islet micro-environment, which is ultimately needed for a cure from T1D. Recent insight from our studies shows that short-term creation of a systemic milieu that favours Treg propagation, as it occurs after systemic administration of non Fc-binding anti-CD3, can strongly enhance this process. We propose that combination therapies with anti-CD3 or similar systemic immune modulators that lower effector cells and enhance Tregs with vaccines that induce adaptive Tregs will be a crucial step in developing successful immune-based intervention in T1D.

摘要

使用胰岛特异性抗原疫苗诱导“适应性”调节性T细胞(Tregs)已被证明可在多种1型糖尿病(T1D)动物模型中预防疾病。尽管迄今为止从实验室到临床的转化尚未成功,但这种非侵入性方法是在人类中安全实现免疫耐受的圣杯。我们将在此讨论这样一个事实,即每种免疫反应似乎都包含适应性效应细胞和调节性T细胞的平衡。在糖尿病发展过程中,这些细胞群体及其抗原特异性随时间的演变将决定在何时以及通过何种途径选择特定的胰岛抗原,以最有效地增强此类适应性调节性T细胞。它们的“复苏”对于胰岛微环境中的长期耐受和稳态至关重要,而这最终是治愈1型糖尿病所必需的。我们研究的最新见解表明,如全身给予非Fc结合抗CD3后出现的有利于调节性T细胞增殖的全身微环境的短期创建,可强烈增强这一过程。我们提出,将抗CD3或类似的全身免疫调节剂与诱导适应性调节性T细胞的疫苗联合使用,以降低效应细胞并增强调节性T细胞,将是开发成功的基于免疫的1型糖尿病干预措施的关键一步。

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