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Triaptosis and Cancer: Next Hope?

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Research (Washington, D.C.) 📖 저널 OA 100% 2022: 1/1 OA 2024: 1/1 OA 2025: 14/14 OA 2026: 22/22 OA 2022~2026 2025 Vol.8() p. 0880
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Li ZZ, Zhou K, Wu J, Cao LM, Wang GR, Luo HY

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Cancer persists as one of the most formidable global public health crises and socioeconomic burdens of our era, compelling the scientific community to develop innovative and diversified therapeutic mo

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APA Li ZZ, Zhou K, et al. (2025). Triaptosis and Cancer: Next Hope?. Research (Washington, D.C.), 8, 0880. https://doi.org/10.34133/research.0880
MLA Li ZZ, et al.. "Triaptosis and Cancer: Next Hope?." Research (Washington, D.C.), vol. 8, 2025, pp. 0880.
PMID 40933235 ↗

Abstract

Cancer persists as one of the most formidable global public health crises and socioeconomic burdens of our era, compelling the scientific community to develop innovative and diversified therapeutic modalities to revolutionize clinical management and enhance patient outcomes. The recent seminal discovery by Swamynathan et al. has unveiled menadione, a vitamin K precursor, as a potent inducer of triaptosis-a novel regulated cell death pathway mediated through the oxidative modulation of phosphatidylinositol 3-kinase PIK3C3/VPS34. This mechanistically distinct cell death paradigm, characterized by its intimate association with endosomal dysfunction and oxidative stress-induced cellular catastrophe, has demonstrated remarkable therapeutic efficacy in preclinical prostate cancer models, outperforming conventional therapeutic regimens and emerging as a potential paradigm-shifting strategy in oncology. This comprehensive review provides a critical synthesis of the triaptosis discovery landscape, elucidating its molecular intricacies and pathophysiological implications. We systematically examine the multifaceted roles of endosomal biology in oncogenesis and tumor progression, while offering a nuanced perspective on redox homeostasis in malignant cells and the therapeutic potential of oxidative stress modulation. Furthermore, we address the inherent dichotomy of oxidative stress induction in cancer therapy, balancing its therapeutic promise against potential adverse effects. Looking toward the horizon of cancer research, we explore transformative therapeutic strategies leveraging triaptosis induction and its potential applications beyond oncology, aiming to catalyze a new era of precision medicine that ultimately enhances patient survival and quality of life.

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