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Co-delivery of a CD4 T cell helper epitope via covalent liposome attachment with a surface-arrayed B cell target antigen fosters higher affinity antibody responses

机译:通过共价脂质体与表面排列的B细胞靶抗原的共递送CD4 T细胞辅助抗原决定簇促进了更高的亲和力抗体反应

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摘要

Liposomal vaccines incorporating adjuvant and CD4 T cell helper peptides enhance antibody responses against weakly immunogenic B cell epitopes such as found in the membrane proximal external region (MPER) of the HIV-1 gp41 subunit. While the inclusion of exogenous helper peptides in vaccine formulations facilitates stronger and more durable antibody responses, the helper peptide incorporation strategy per se may influence the overall magnitude and quality of B cell target antigen immunogenicity. Both variability in individual peptide encapsulation as well as the potential for liposome surface-associated helper peptides to misdirect the humoral response are potential parameters impacting outcome. In this study, we used MPER/liposome vaccines as a model system to examine how the mode of the potent LACK T helper peptide formulation modulates antibody responses against the MPER antigen. We directly compared liposome surface-arrayed palmitoyl LACK (pLACK) versus soluble LACK (sLACK) encapsulated in the liposomes and free in solution. Independent of LACK formulation methods, dendritic cell activation and LACK presentation were equivalent in vivo. The frequency of MPER-specific GC B cells promoted by sLACK was higher than that stimulated by pLACK formulation, a finding associated with a significantly greater frequency of LACK-specific GC B cells induced by pLACK. While there were no significant differences in the quantity of MPER-specific serological responses, the MPER-specific antibody titer trended higher with sLACK formulated vaccines at the lower dose of LACK. However, pLACK generated relatively greater MPER-specific antibody affinities than those induced by sLACK-formulated vaccines. Overall, the results suggest that liposomal surface-associated LACK enhances immunogenicity of LACK through better engagement of LACK-specific B cells. Of note, this is not detrimental to the induction of MPER-specific immune responses; rather, the elicitation of higher affinity anti-MPER antibodies benefits from augmented help delivered via covalent linkage of the pLACK CD4 T cell epitope in conjunction with MPER/liposome presentation.
机译:掺入佐剂和CD4 T细胞辅助肽的脂质体疫苗可增强针对弱免疫原性B细胞表位的抗体应答,例如在HIV-1 gp41亚基的膜近端外部区域(MPER)中发现的抗体。虽然疫苗制剂中包含外源性辅助肽有助于更强和更持久的抗体反应,但辅助肽的掺入策略本身可能会影响B细胞靶抗原免疫原性的总体大小和质量。单个肽封装的可变性以及脂质体与表面相关的辅助肽误导体液反应的可能性都是影响结果的潜在参数。在这项研究中,我们使用MPER /脂质体疫苗作为模型系统,以研究有效的LACK T辅助肽制剂的模式如何调节针对MPER抗原的抗体反应。我们直接比较了脂质体表面排列的棕榈酰LACK(pLACK)与封装在脂质体内并在溶液中游离的可溶性LACK(sLACK)。独立于LACK配制方法,树突状细胞激活和LACK呈递在体内是等效的。 sLACK促进的MPER特异性GC B细胞的频率高于pLACK制剂刺激的频率,这一发现与pLACK诱导的LACK特异性GC B细胞的频率明显更高有关。虽然MPER特异性血清反应的数量没有显着差异,但是sLACK配制疫苗在LACK剂量较低时,MPER特异性抗体滴度趋向较高。但是,与由sLACK配制的疫苗诱导的亲和力相比,pLACK产生了相对更高的MPER特异性抗体亲和力。总体而言,结果表明脂质体表面相关的LACK通过更好地结合LACK特异性B细胞而增强了LACK的免疫原性。值得注意的是,这对MPER特异性免疫反应的诱导无害。相反,较高亲和力的抗MPER抗体的诱导受益于通过结合pPERX CD4 T细胞表位的共价键结合MPER /脂质体呈递而提供的增强帮助。

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