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首页> 外文期刊>The Journal of Allergy and Clinical Immunology >Immunostimulatory DNA inhibits IL-4-dependent IgE synthesis by human B cells.
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Immunostimulatory DNA inhibits IL-4-dependent IgE synthesis by human B cells.

机译:免疫刺激性DNA抑制人B细胞依赖IL-4的IgE合成。

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BACKGROUND: Immunostimulatory sequence oligodeoxynucleotide (ISS-ODN) is a potent antiallergic immunomodulating agent in mice. However, few studies have addressed its antiallergic potential in human subjects. OBJECTIVE: We sought to determine whether a phosphoro-thioate ISS-ODN could inhibit IL-4-dependent IgE synthesis by human B cells. METHODS: Initially, nonatopic- and atopic-donor PBMCs were incubated with ISS-ODN or mutated oligodeoxynucleotide, and cytokine production and B-cell expression of IFN-gamma receptor and IL-4 receptor were measured by using ELISA and flow cytometry, respectively. In subsequent studies atopic-donor PBMCs were incubated with IL-4 alone or with ISS-ODN or mutated oligodeoxynucleotide. After 14 days, IgE production and IgM, IgG, and IgA production were determined by using ELISA. In select IgE studies cytokines were neutralized with mAbs. RESULTS: ISS-ODN induced IL-12, IFN-alpha, IFN-gamma, IL-10, and IL-6 production from both nonatopic- and atopic-donor PBMCs. ISS-ODN also increased IFN-gamma receptor and inhibited IL-4 receptor expression on B cells from both donor populations. Furthermore, ISS-ODN inhibited IL-4-dependent IgE production by atopic-donor PBMCs. Neutralization of IL-12, IFN-alpha, IFN-gamma, and IL-10, but not IL-6, attenuated the inhibitory activity of ISS-ODN on IgE production. In contrast to its inhibition of IgE synthesis, ISS-ODN stimulated the production of IgM, IgG, and IgA. CONCLUSION: These in vitro studies demonstrate that phos-phorothioate ISS-ODN elicits an innate immune response by PBMCs, which inhibits IL-4-dependent IgE synthesis. In addition, these results provide further support for consideration of ISS-ODN therapy for the treatment of allergic disease in clinical practice.
机译:背景:免疫刺激序列寡聚脱氧核苷酸(ISS-ODN)是一种有效的抗过敏免疫调节剂。然而,很少有研究涉及其在人类受试者中的抗过敏潜力。目的:我们试图确定硫代磷酸ISS-ODN是否可以抑制人B细胞IL-4依赖性IgE的合成。方法:最初,将非特应性和特应性供体PBMC与ISS-ODN或突变的寡脱氧核苷酸孵育,并分别通过ELISA和流式细胞术检测IFN-γ受体和IL-4受体的细胞因子产生和B细胞表达。在随后的研究中,将特应性供体PBMC与单独的IL-4或与ISS-ODN或突变的寡脱氧核苷酸孵育。 14天后,通过ELISA测定IgE的产生以及IgM,IgG和IgA的产生。在部分IgE研究中,细胞因子被mAb中和。结果:ISS-ODN诱导了非特应性和特应性PBMC产生IL-12,IFN-α,IFN-γ,IL-10和IL-6。 ISS-ODN还增加了两个供体群体的B细胞上的IFN-γ受体并抑制了IL-4受体的表达。此外,ISS-ODN抑制了特应性供体PBMC产生的IL-4依赖性IgE。 IL-12,IFN-α,IFN-γ和IL-10(而非IL-6)的中和作用减弱了ISS-ODN对IgE产生的抑制活性。与抑制IgE合成相反,ISS-ODN刺激了IgM,IgG和IgA的产生。结论:这些体外研究表明,磷酸硫代磷酸ISS-ODN可引起PBMC产生先天性免疫应答,从而抑制IL-4依赖性IgE合成。另外,这些结果为在临床实践中考虑使用ISS-ODN疗法治疗过敏性疾病提供了进一步的支持。

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