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March 29, 2026Molecular Therapy2 citationsOpen Access

Enhanced Efficacy of a Next-Generation EEEV Self-Replicating RNA Platform for Combination Cancer Immunotherapies

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SMShigeki J. Miyake-StonerCMChristian J. MaineACAnnie C. Chou

Key Points

  • This research focuses on evaluating a next-generation self-replicating RNA (srRNA) platform derived from EEEV for cancer immunotherapy.
  • Investigated a novel srRNA vector from Eastern equine encephalitis virus.
  • Assessed the immunogenicity of RBI-1000, a multigenic vaccine targeting breast cancer mutations.
  • Evaluated the efficacy of RBI-2000, a combination biotherapeutic of IL-12 and IL-1RA in preclinical tumor models.
  • RBI-1000 elicited strong immune responses to tumor-associated antigens and neoantigens.
  • RBI-2000 demonstrated therapeutic protein expression that enhanced anti-tumor immune responses.
  • Both therapies showed significant efficacy in preclinical models.

Abstract

Self-replicating RNA (srRNA) technology has received its first approval with Kostaive and EUA for GEMCOVAC COVID-19 vaccines. The effective doses for srRNA vaccines are far lower than for conventional mRNA, as srRNA drives greater protein expression and has attributes of viral vectors that can potentiate immunogenicity. Importantly, srRNA encodes for a viral replicase, frequently derived from non-structural proteins (nsP) from Venezuelan equine encephalitis virus (VEEV), that helps amplify the encoded transgene. nsPs also influence critical cellular processes, including protein translation and processing, inflammation and autophagy, that can impact downstream performance. Here we show that a next-generation srRNA vector derived from Eastern equine encephalitis virus (EEEV), identified from a wider screen of alphaviruses, that has high potency in two immunotherapeutic applications, RBI-1000 and RBI-2000. RBI-1000, a multigenic vaccine targeting acquired resistance mutations in breast cancer, was able to elicit antigen-specific immune responses to tumor-associated antigens and neoantigens. In addition, RBI-2000, a combination IL-12 and IL-1RA biotherapeutic, resulted in therapeutic levels of protein expression that bolstered anti-tumor immune responses in vivo. Both RBI-1000 and RBI-2000 successfully demonstrated efficacy in preclinical tumor models. These data show the importance of empirically evaluating new srRNA vectors for the development of fit-for-purpose therapies.

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Miyake-Stoner et al. (2026) studied this question.

synapsesocial.com/papers/69c8c0b0de0f0f753b39b9c0https://doi.org/10.1016/j.ymthe.2026.03.026
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