Duan Wei, So Takanori, Croft Michael
Division of Molecular Immunology, La Jolla Institute for Allergy and Immunology, La Jolla, CA 92037, USA.
J Immunol. 2008 Dec 15;181(12):8650-9. doi: 10.4049/jimmunol.181.12.8650.
Respiratory exposure to allergens can lead to airway tolerance. Factors that antagonize tolerance mechanisms in the lung might result in susceptibility to diseases such as asthma. We show that inhalation of endotoxin/LPS with Ag prevented airway tolerance and abolished protection from T cell-driven asthmatic lung inflammation. Under conditions leading to tolerance, adaptive Ag-specific CD4(+)Foxp3(+) T regulatory cells (Treg) were generated following exposure to intranasal Ag and outnumbered IL-4- and IFN-gamma-producing CD4 T cells by 100:1 or greater. Inhaled LPS altered the ratio of Treg to IL-4(+) or IFN-gamma(+) T cells by concomitantly suppressing Treg generation and promoting effector T cell generation. LPS induced OX40L expression on dendritic cells and B cells that resulted in a synergistic activity between TLR4 and OX40 signals, leading to production of IL-4, IFN-gamma, and IL-6, which blocked Treg development. Furthermore, inhibiting OX40/OX40L interactions prevented LPS from suppressing tolerance, and resulted in the generation of greater numbers of adaptive Treg. Thus, cooperation between TLR4 and OX40 controls susceptibility to developing airway disease via modulating the balance between adaptive Treg and IL-4(+) or IFN-gamma(+) T cells. Targeting OX40L then has the potential to improve the efficacy of Ag immunotherapy to promote tolerance.
呼吸道暴露于过敏原可导致气道耐受。肺部中拮抗耐受机制的因素可能会导致对哮喘等疾病的易感性。我们发现,吸入内毒素/LPS与抗原可预防气道耐受,并消除对T细胞驱动的哮喘性肺部炎症的保护作用。在导致耐受的条件下,鼻内给予抗原后会产生适应性抗原特异性CD4(+)Foxp3(+)调节性T细胞(Treg),其数量比产生IL-4和IFN-γ的CD4 T细胞多100倍或更多。吸入的LPS通过同时抑制Treg的产生和促进效应T细胞的产生,改变了Treg与IL-4(+)或IFN-γ(+) T细胞的比例。LPS诱导树突状细胞和B细胞上OX40L的表达,导致TLR4和OX40信号之间的协同活性,从而产生IL-4、IFN-γ和IL-6,这些细胞因子会阻断Treg的发育。此外,抑制OX40/OX40L相互作用可防止LPS抑制耐受,并导致产生更多数量的适应性Treg。因此,TLR4和OX40之间的协同作用通过调节适应性Treg与IL-4(+)或IFN-γ(+) T细胞之间的平衡来控制气道疾病发生的易感性。靶向OX40L则有可能提高抗原免疫疗法促进耐受的疗效。