A protective vaccine against HIV will likely need to induce broadly neutralizing antibodies (bnAbs) that engage relatively conserved epitopes on the HIV envelope glycoprotein (Env) trimer. Nearly all vaccine strategies to induce bnAbs require the use of relatively complex immunization regimens involving a series of different immunogens, most of which are Env trimers. Producing protein-based clinical material to evaluate such relatively complex regimens in humans presents major challenges in cost and time. Furthermore, immunization with HIV trimers as soluble proteins induces strong non-neutralizing responses to the trimer base, which is normally occluded on the virion. These base responses could potentially detract from the induction of nAbs and the eventual induction of bnAbs. mRNA vaccine platforms offer potential advantages over protein delivery for HIV vaccine development, including increased production speed, reduced cost, and the ability to deliver membrane-bound trimers that might facilitate improved immuno-focusing to non-base epitopes. We report the design of mRNA-delivered soluble and membrane-bound forms of a stabilized native-like Env trimer (BG505 MD39.3), initial immunogenicity evaluation in rabbits that triggered clinical evaluation, and more comprehensive evaluation of B cell, T cell, and antibody responses in non-human primates. mRNA-encoded membrane-bound Env immunization elicited reduced off-target base-directed Env responses and stronger neutralizing antibody responses, compared with mRNA-encoded soluble Env. Overall, mRNA delivery of membrane-bound Env appears promising for enhancing B cell responses to subdominant epitopes and facilitating rapid translation to clinical testing, which should assist HIV vaccine development.
Vaccination with mRNA-encoded membrane-bound HIV Envelope trimer induces neutralizing antibodies in animal models.
用 mRNA 编码的膜结合 HIV 包膜三聚体进行疫苗接种,可在动物模型中诱导中和抗体
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作者:Ramezani-Rad Parham, Cottrell Christopher A, Marina-Zárate Ester, Liguori Alessia, Landais Elise, Torres Jonathan L, Myers Amber, Lee Jeong Hyun, Baboo Sabyasachi, Flynn Claudia, McKenney Katherine, Salcedo Eugenia, Zhou Xiaoya, Kalyuzhniy Oleksandr, Georgeson Erik, Phelps Nicole, Lu Danny, Eskandarzadeh Saman, Menis Sergey, Kubitz Michael, Groschel Bettina, Alavi Nushin, Jackson Abigail M, Lee Wen-Hsin, Tran Andy S, Ben-Akiva Elana, Michaels Katarzyna Kaczmarek, Diedrich Jolene K, Enemuo Chiamaka A, Lewis Vanessa, Pradhan Arpan, Kasturi Sudhir Pai, Schiffner Torben, Steichen Jon M, Carnathan Diane G, Himansu Sunny, Yates John R 3rd, Paulson James C, Ozorowski Gabriel, Irvine Darrell J, Silvestri Guido, Sok Devin, Ward Andrew B, Crotty Shane, Schief William R
| 期刊: | bioRxiv | 影响因子: | 0.000 |
| 时间: | 2025 | 起止号: | 2025 Jan 25 |
| doi: | 10.1101/2025.01.24.634423 | 研究方向: | 免疫/内分泌 |
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