首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >From the Cover: Enhancing humoral responses to a malaria antigen with nanoparticle vaccines that expand Tfh cells and promote germinal center induction
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From the Cover: Enhancing humoral responses to a malaria antigen with nanoparticle vaccines that expand Tfh cells and promote germinal center induction

机译:从封面开始:用纳米颗粒疫苗增强对疟疾抗原的体液反应该疫苗可扩展Tfh细胞并促进生发中心诱导

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摘要

For subunit vaccines, adjuvants play a key role in shaping immunological memory. Nanoparticle (NP) delivery systems for antigens and/or molecular danger signals are promising adjuvants capable of promoting both cellular and humoral immune responses, but in most cases the mechanisms of action of these materials are poorly understood. Here, we studied the immune response elicited by NPs composed of multilamellar “stapled” lipid vesicles carrying a recombinant Plasmodium vivax circumsporozoite antigen, VMP001, both entrapped in the aqueous core and anchored to the lipid bilayer surfaces. Immunization with these particles and monophosphoryl lipid A (MPLA), a US Food and Drug Administration–approved immunostimulatory agonist for Toll-like receptor-4, promoted high-titer, high-avidity antibody responses against VMP001, lasting more than 1 y in mice at 10-fold lower doses than conventional adjuvants. Compared to soluble VMP001 mixed with MPLA, VMP001-NPs promoted broader humoral responses, targeting multiple epitopes of the protein and a more balanced Th1/Th2 cytokine profile from antigen-specific T cells. To begin to understand the underlying mechanisms, we examined components of the B-cell response and found that NPs promoted robust germinal center (GC) formation at low doses of antigen where no GC induction occurred with soluble protein immunization, and that GCs nucleated near depots of NPs accumulating in the draining lymph nodes over time. In parallel, NP vaccination enhanced the expansion of antigen-specific follicular helper T cells (Tfh), compared to vaccinations with soluble VMP001 or alum. Thus, NP vaccines may be a promising strategy to enhance the durability, breadth, and potency of humoral immunity by enhancing key elements of the B-cell response.
机译:对于亚单位疫苗,佐剂在塑造免疫记忆中起关键作用。用于抗原和/或分子危险信号的纳米颗粒(NP)输送系统是有前途的佐剂,能够促进细胞和体液免疫反应,但是在大多数情况下,人们对这些物质的作用机理了解甚少。在这里,我们研究了由携带重组间日疟原虫环子孢子抗原VMP001的多层“吻合”脂质囊泡组成的NPs引发的免疫应答,二者都包裹在水核心中并锚定在脂质双层表面上。使用这些颗粒和单磷酰脂质A(MPLA)进行免疫,美国食品药品监督管理局批准了Toll样受体4的免疫刺激激动剂,可促进针对VMP001的高滴度,高免疫力抗体应答,在小鼠中持续超过1年剂量比常规佐剂低10倍。与与MPLA混合的可溶性VMP001相比,VMP001-NP促进了更广泛的体液反应,靶向该蛋白的多个表位,并且抗原特异性T细胞的Th1 / Th2细胞因子谱更平衡。为了开始理解潜在的机制,我们检查了B细胞应答的组成部分,发现在低剂量的抗原下NP促进了稳健的生发中心(GC)的形成,而可溶性蛋白免疫没有发生GC诱导,并且GC在贮库附近成核了随着时间的流逝,NP积聚在引流淋巴结中。同时,与可溶性VMP001或明矾疫苗相比,NP疫苗接种可增强抗原特异性卵泡辅助性T细胞(Tfh)的扩增。因此,NP疫苗可能是通过增强B细胞反应的关键要素来增强体液免疫的持久性,广度和效力的一种有前途的策略。

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