Christian J. Maine, Shigeki J. Miyake-Stoner, Darina S. Spasova, Gaelle Picarda, Annie C. Chou, Emily D. Brand, Melanie D. Olesiuk, Christine C. Domingo, Hunter J. Little, Thomas T. Goodman, Jacqueline L. Posy, Jasmin Gonzalez, Terrina L. Bayone, Jessica Sparks, Ebony N. Gary, Zhi Xiang, Nicholas J. Tursi, Casey E. Hojecki, Hildegund C. J. Ertl, David B. Weiner, Irafasha C. Casmil, Anna K. Blakney, Brandon Essink, Guillermo Somodevilla, Nathaniel S. Wang, Andrew J. Geall, Zelanna Goldberg, Parinaz Aliahmad
{"title":"用于低剂量或单剂量疫苗应用的优化自我复制RNA平台的安全性和免疫原性:一项在健康志愿者中随机、开放标签的I期研究","authors":"Christian J. Maine, Shigeki J. Miyake-Stoner, Darina S. Spasova, Gaelle Picarda, Annie C. Chou, Emily D. Brand, Melanie D. Olesiuk, Christine C. Domingo, Hunter J. Little, Thomas T. Goodman, Jacqueline L. Posy, Jasmin Gonzalez, Terrina L. Bayone, Jessica Sparks, Ebony N. Gary, Zhi Xiang, Nicholas J. Tursi, Casey E. Hojecki, Hildegund C. J. Ertl, David B. Weiner, Irafasha C. Casmil, Anna K. Blakney, Brandon Essink, Guillermo Somodevilla, Nathaniel S. Wang, Andrew J. Geall, Zelanna Goldberg, Parinaz Aliahmad","doi":"10.1038/s41467-025-55843-9","DOIUrl":null,"url":null,"abstract":"<p>Self-replicating RNA (srRNA) technology, in comparison to mRNA vaccines, has shown dose-sparing by approximately 10-fold and more durable immune responses. However, no improvements are observed in the adverse events profile. Here, we develop an srRNA vaccine platform with optimized non-coding regions and demonstrate immunogenicity and safety in preclinical and clinical development. Optimized srRNA vaccines generate protective immunity (according to the WHO defined thresholds) at doses up to 1,000,000-fold lower than mRNA in female mouse models of influenza and rabies. Clinically, safety and immunogenicity of RBI-4000, an srRNA vector encoding the rabies glycoprotein, was evaluated in a Phase I study (NCT06048770). RBI-4000 was able to elicit de novo protective immunity in the majority of healthy participants when administered at a dose of 0.1, 1, or 10 microgram (71%, 94%, 100%, respectively) in a prime-boost schedule. Similarly, we observe immunity above the WHO benchmark of protection following a single administration in most participants at both 1 and 10 microgram doses. There are no serious adverse events reported across all cohorts. These data establish the high therapeutic index of optimized srRNA vectors, demonstrating feasibility of both low dose and single dose approaches for vaccine applications.</p>","PeriodicalId":19066,"journal":{"name":"Nature Communications","volume":"2 1","pages":""},"PeriodicalIF":15.7000,"publicationDate":"2025-01-07","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Safety and immunogenicity of an optimized self-replicating RNA platform for low dose or single dose vaccine applications: a randomized, open label Phase I study in healthy volunteers\",\"authors\":\"Christian J. Maine, Shigeki J. Miyake-Stoner, Darina S. Spasova, Gaelle Picarda, Annie C. Chou, Emily D. Brand, Melanie D. Olesiuk, Christine C. Domingo, Hunter J. Little, Thomas T. Goodman, Jacqueline L. Posy, Jasmin Gonzalez, Terrina L. Bayone, Jessica Sparks, Ebony N. Gary, Zhi Xiang, Nicholas J. Tursi, Casey E. Hojecki, Hildegund C. J. Ertl, David B. Weiner, Irafasha C. Casmil, Anna K. Blakney, Brandon Essink, Guillermo Somodevilla, Nathaniel S. Wang, Andrew J. Geall, Zelanna Goldberg, Parinaz Aliahmad\",\"doi\":\"10.1038/s41467-025-55843-9\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>Self-replicating RNA (srRNA) technology, in comparison to mRNA vaccines, has shown dose-sparing by approximately 10-fold and more durable immune responses. However, no improvements are observed in the adverse events profile. Here, we develop an srRNA vaccine platform with optimized non-coding regions and demonstrate immunogenicity and safety in preclinical and clinical development. Optimized srRNA vaccines generate protective immunity (according to the WHO defined thresholds) at doses up to 1,000,000-fold lower than mRNA in female mouse models of influenza and rabies. Clinically, safety and immunogenicity of RBI-4000, an srRNA vector encoding the rabies glycoprotein, was evaluated in a Phase I study (NCT06048770). RBI-4000 was able to elicit de novo protective immunity in the majority of healthy participants when administered at a dose of 0.1, 1, or 10 microgram (71%, 94%, 100%, respectively) in a prime-boost schedule. Similarly, we observe immunity above the WHO benchmark of protection following a single administration in most participants at both 1 and 10 microgram doses. There are no serious adverse events reported across all cohorts. 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Safety and immunogenicity of an optimized self-replicating RNA platform for low dose or single dose vaccine applications: a randomized, open label Phase I study in healthy volunteers
Self-replicating RNA (srRNA) technology, in comparison to mRNA vaccines, has shown dose-sparing by approximately 10-fold and more durable immune responses. However, no improvements are observed in the adverse events profile. Here, we develop an srRNA vaccine platform with optimized non-coding regions and demonstrate immunogenicity and safety in preclinical and clinical development. Optimized srRNA vaccines generate protective immunity (according to the WHO defined thresholds) at doses up to 1,000,000-fold lower than mRNA in female mouse models of influenza and rabies. Clinically, safety and immunogenicity of RBI-4000, an srRNA vector encoding the rabies glycoprotein, was evaluated in a Phase I study (NCT06048770). RBI-4000 was able to elicit de novo protective immunity in the majority of healthy participants when administered at a dose of 0.1, 1, or 10 microgram (71%, 94%, 100%, respectively) in a prime-boost schedule. Similarly, we observe immunity above the WHO benchmark of protection following a single administration in most participants at both 1 and 10 microgram doses. There are no serious adverse events reported across all cohorts. These data establish the high therapeutic index of optimized srRNA vectors, demonstrating feasibility of both low dose and single dose approaches for vaccine applications.
期刊介绍:
Nature Communications, an open-access journal, publishes high-quality research spanning all areas of the natural sciences. Papers featured in the journal showcase significant advances relevant to specialists in each respective field. With a 2-year impact factor of 16.6 (2022) and a median time of 8 days from submission to the first editorial decision, Nature Communications is committed to rapid dissemination of research findings. As a multidisciplinary journal, it welcomes contributions from biological, health, physical, chemical, Earth, social, mathematical, applied, and engineering sciences, aiming to highlight important breakthroughs within each domain.