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T-Cell "Rejuvenation" Nanovaccine: Enhancing Immunological Memory and Antitumor Responses through Telomere Extension.

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Journal of the American Chemical Society 📖 저널 OA 19% 2024: 0/2 OA 2025: 8/28 OA 2026: 4/33 OA 2024~2026 2026 Vol.148(4) p. 4706-4721
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Cao X, Zeng T, Bai S, Li S, Liu Y, Fang L

📝 환자 설명용 한 줄

Replicative senescence in immune cells undermines vaccine efficacy, with telomere attrition recognized as a key factor to cellular senescence.

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APA Cao X, Zeng T, et al. (2026). T-Cell "Rejuvenation" Nanovaccine: Enhancing Immunological Memory and Antitumor Responses through Telomere Extension.. Journal of the American Chemical Society, 148(4), 4706-4721. https://doi.org/10.1021/jacs.5c21977
MLA Cao X, et al.. "T-Cell "Rejuvenation" Nanovaccine: Enhancing Immunological Memory and Antitumor Responses through Telomere Extension.." Journal of the American Chemical Society, vol. 148, no. 4, 2026, pp. 4706-4721.
PMID 41582446 ↗

Abstract

Replicative senescence in immune cells undermines vaccine efficacy, with telomere attrition recognized as a key factor to cellular senescence. Studies have shown that the extracellular vesicles (EVs) of bone marrow-derived dendritic cells (BMDCs), which contain the telomeric compounds, can promote telomerase-independent T-cell telomere extension via telomere transfer. Based on this mechanism, we designed a long-term memory T-cell vaccine (LMT/OT-II), which is composed of EVs from BMDCs carrying the ovalbumin peptide OT-II. This vaccine not only enhances antigen presentation but also extends T-cell telomere length, enhancing T-cell vitality and restoring youthful characteristics. To further enhance the antitumor effects, we incorporated the immune adjuvant Poly(I:C) to activate T cells. In both young and aged mouse models, the LMT/OT-II + Poly(I:C) effectively suppressed the growth of B16-OVA melanoma and significantly prolonged the survival of the mouse models. We further developed the LMT/Adpgk + Poly(I:C) vaccine based on mouse colon cancer cell (MC38) neoantigen peptide, which also showed promising results in mice. Through telomere transfer to restore T-cell function and enhance immune memory, our study provides a novel and universal strategy for developing more effective and durable T-cell vaccines, particularly for diseases associated with immunosenescence.

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