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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Inhibitory effect of HIV-specific neutralizing IgA on mucosal transmission of HIV in humanized mice
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Inhibitory effect of HIV-specific neutralizing IgA on mucosal transmission of HIV in humanized mice

机译:HIV特异性中和IgA对人源化小鼠HIV黏膜传播的抑制作用

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摘要

HIV-1 infections are generally initiated at mucosal sites. Thus, IgA antibody, which plays pivotal roles in mucosal immunity, might efficiently prevent HIV infection. However, mounting a highly effective HIV-specific mucosal IgA response by conventional immunization has been challenging and the potency of HIV-specific IgA against infection needs to be addressed in vivo. Here we show that the polymeric IgA form of anti-HIV antibody inhibits HIV mucosal transmission more effectively than the monomeric IgA or IgG1 form in a comparable range of concentrations in humanized mice. To deliver anti-HIV IgA in a continual manner, we devised a hematopoietic stem/progenitor cell (HSPC) - based genetic approach using an IgA gene. We transplanted human HSPCs transduced with a lentiviral construct encoding a class-switched anti-HIV IgA (b12-IgA) into the humanized bone marrow-liver-thymus (BLT) mice. The transgene was expressed specifically in B cells and plasma cells in lymphoid organs and mucosal sites. After vaginal HIV-1 challenge, mucosal CD4+T cells in the b12-IgA - producing mice were protected from virus-mediated depletion. Similar results were also obtained in a second humanized model, "human immune system mice." Our study demonstrates the potential of anti-HIV IgA in immunoprophylaxis in vivo, emphasizing the importance of the mucosal IgA response in defense against HIV/AIDS.
机译:HIV-1感染通常在粘膜部位开始。因此,在粘膜免疫中起关键作用的IgA抗体可能有效预防HIV感染。然而,通过常规免疫产生高效的HIV特异性粘膜IgA应答一直是挑战性的,并且HIV特异性IgA对感染的效力需要在体内解决。在这里,我们显示了在人源化小鼠中可比较的浓度范围内,抗HIV抗体的聚合IgA形式比单体IgA或IgG1形式更有效地抑制HIV粘膜传递。为了持续提供抗HIV IgA,我们设计了一种使用IgA基因的造血干/祖细胞(HSPC)遗传方法。我们将用编码类别转换的抗HIV IgA(b12-IgA)的慢病毒构建体转导的人HSPC移植到人源化骨髓-肝-胸腺(BLT)小鼠中。转基因在淋巴器官和粘膜部位的B细胞和浆细胞中特异性表达。在阴道HIV-1攻击后,可保护产生b12-IgA的小鼠的粘膜CD4 + T细胞免受病毒介导的消耗。在第二种人源化模型“人类免疫系统小鼠”中也获得了相似的结果。我们的研究证明了抗HIV IgA在体内免疫预防中的潜力,强调了粘膜IgA反应在防御HIV / AIDS中的重要性。

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