ArticleInternational journal of biological sciences2026
RMAD1, a Novel Cell-Penetrating Peptide Derived from ADARB2: Preclinical Insights into Antigen Uptake and T Cell Activation.
Article in International journal of biological sciences, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
The development of effective cancer vaccines remains a major challenge in oncology, largely due to limited antigen delivery and suboptimal T cell priming. Here, we report RMAD1, a novel human-derived cell-penetrating peptide (CPP) originating from the ADARB2 (Adenosine Deaminase RNA Specific B2) protein, identified through an intra-dermal delivery technology (IDDT) platform, and evaluate its potential as a vaccine delivery enhancer. RMAD1 exhibited superior intracellular delivery compared with conventional CPPs and preferential uptake by antigen-presenting cells (APCs), including dendritic cells and macrophages. RMAD1 conjugated vaccines showed enhanced accumulation in draining lymph nodes and facilitated efficient antigen cross-presentation through the MHC class I pathway. In murine E.G7-OVA and TC-1 tumor models, RMAD1 conjugated vaccines induced robust antigen-specific CD8⁺ T cell responses across peripheral blood, lymphoid organs, and tumor tissues. Functional analyses revealed increased IFN-γ and TNF-α production by both CD8⁺ and CD4⁺ T cells, accompanied by a reduction in Foxp3⁺CD25⁺ regulatory T cells. In addition, RMAD1 conjugation promoted epitope spreading and established durable immunological memory, resulting in protection against tumor rechallenge. Therapeutic efficacy was further demonstrated in a TC-1 lung metastasis model, where RMAD1-based vaccination significantly reduced metastatic burden. Importantly, RMAD1-vaccinated mice exhibited therapeutic efficacy comparable to cisplatin treatment, while demonstrating a favorable safety profile. Together, these findings position RMAD1 as a next-generation CPP platform that outperforms existing peptides in enhancing antigen delivery and anti-tumor immunity, offering a promising strategy for advancing cancer vaccine development.
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