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PubMed · 42713249

A photothermal ablation strategy for orthotopic ovarian cancer via mitochondria-dependent apoptosis.

Abstract

Photothermal therapy (PTT) shows promise for ovarian cancer, but unclear cell death mechanisms slow its clinical use. Here, we report two-dimensional rhenium diselenide (ReSe₂) nanosheets as a stable, high-performance photothermal agent that triggers ovarian cancer cell apoptosis through a mitochondria-dependent pathway. Under near-infrared light, ReSe₂ generates local hyperthermia. This triggers a rapid burst of intracellular reactive oxygen species, collapses mitochondrial membrane potential, and shifts the balance between pro- and anti-apoptotic Bcl-2 family proteins. In an orthotopic mouse model, this defined apoptotic cascade strongly suppresses tumors with no detectable systemic toxicity. Our work not only elucidates a clear molecular mechanism for photothermal tumor ablation but also establishes ReSe₂-mediated PTT as a translatable therapeutic strategy, advancing the rational design of photothermal agents based on biological mechanism.

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BibTeXRIS

Lei Zhou, Yongle Lv, Jinfa Huang, Zexian Xu, Wujiang Lai, Ning Xie, Kedan Liao, Qian Yang, Junchao Zhang, Lei Wang, Kaixian Deng. 2026-08-28. A photothermal ablation strategy for orthotopic ovarian cancer via mitochondria-dependent apoptosis.. https://doi.org/10.1016/j.ijpx.2026.100653

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