Ramezani-Rad Parham, Marina-Zárate Ester, Maiorino Laura, Myers Amber, Michaels Katarzyna Kaczmarek, Pires Ivan S, Bloom Nathaniel I, Lopez Paul G, Cottrell Christopher A, Burton Iszac, Groschel Bettina, Pradhan Arpan, Stiegler Gabriela, Budai Magdolna, Kumar Daniel, Pallerla Sam, Sayeed Eddy, Sagar Sangeetha L, Kasturi Sudhir Pai, Van Rompay Koen K A, Hangartner Lars, Wagner Andreas, Burton Dennis R, Schief William R, Crotty Shane, Irvine Darrell J
bioRxiv. 2024 Aug 3:2024.07.31.604373. doi: 10.1101/2024.07.31.604373.
The induction of durable protective immune responses is the main goal of prophylactic vaccines, and adjuvants play an important role as drivers of such responses. Despite advances in vaccine strategies, a safe and effective HIV vaccine remains a significant challenge. The use of an appropriate adjuvant is crucial to the success of HIV vaccines. Here we assessed the saponin/MPLA nanoparticle (SMNP) adjuvant with an HIV envelope (Env) trimer, evaluating the safety and impact of multiple variables including adjuvant dose (16-fold dose range), immunization route, and adjuvant composition on the establishment of Env-specific memory T and B cell responses (T and B ) and long-lived plasma cells in non-human primates. Robust B were detected in all groups, but a 6-fold increase was observed in the highest SMNP dose group vs. the lowest dose group. Similarly, stronger vaccine responses were induced in the highest SMNP dose for CD40L OX40 CD4 T (11-fold), IFNγ CD4 T (15-fold), IL21 CD4 T (9-fold), circulating T (3.6-fold), bone marrow plasma cells (7-fold), and binding IgG (1.3-fold). Substantial tier-2 neutralizing antibodies were only observed in the higher SMNP dose groups. These investigations highlight the dose-dependent potency of SMNP in non-human primates, which are relevant for human use and next-generation vaccines.
诱导持久的保护性免疫反应是预防性疫苗的主要目标,而佐剂作为此类反应的驱动因素发挥着重要作用。尽管疫苗策略取得了进展,但安全有效的HIV疫苗仍然是一项重大挑战。使用合适的佐剂对HIV疫苗的成功至关重要。在此,我们评估了与HIV包膜(Env)三聚体结合的皂苷/MPLA纳米颗粒(SMNP)佐剂,评估了多个变量(包括佐剂剂量(16倍剂量范围)、免疫途径和佐剂组成)对非人灵长类动物中Env特异性记忆T细胞和B细胞反应(T和B)以及长寿浆细胞的建立的安全性和影响。在所有组中均检测到强大的B反应,但最高SMNP剂量组与最低剂量组相比增加了6倍。同样,在最高SMNP剂量下,对CD40L OX40 CD4 T细胞(11倍)、IFNγ CD4 T细胞(15倍)、IL21 CD4 T细胞(9倍)、循环T细胞(3.6倍)、骨髓浆细胞(7倍)和结合IgG(1.3倍)诱导了更强的疫苗反应。仅在较高SMNP剂量组中观察到大量的2级中和抗体。这些研究突出了SMNP在非人灵长类动物中的剂量依赖性效力,这与人类使用和下一代疫苗相关。