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Schottky barrier in pea-like Au@BiS nanoreactor enabling efficient photodynamic therapy of hepatocellular carcinoma.

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Materials today. Bio 📖 저널 OA 100% 2022: 1/1 OA 2023: 1/1 OA 2024: 3/3 OA 2025: 65/65 OA 2026: 57/57 OA 2022~2026 2025 Vol.33() p. 102001
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Tao L, Gu R, Yang J, Wang J, Wu T, Rao X

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Hepatocellular carcinoma (HCC), a leading cause of tumor-related mortality globally, demands innovative therapeutic strategies to overcome limitations of conventional treatments.

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APA Tao L, Gu R, et al. (2025). Schottky barrier in pea-like Au@BiS nanoreactor enabling efficient photodynamic therapy of hepatocellular carcinoma.. Materials today. Bio, 33, 102001. https://doi.org/10.1016/j.mtbio.2025.102001
MLA Tao L, et al.. "Schottky barrier in pea-like Au@BiS nanoreactor enabling efficient photodynamic therapy of hepatocellular carcinoma.." Materials today. Bio, vol. 33, 2025, pp. 102001.
PMID 40642288 ↗

Abstract

Hepatocellular carcinoma (HCC), a leading cause of tumor-related mortality globally, demands innovative therapeutic strategies to overcome limitations of conventional treatments. Photodynamic therapy (PDT), reliant on reactive oxygen species (ROS) generation, has emerged as a promising therapeutic strategy for neoplastic diseases. But it is constrained by inefficient charge separation in traditional photosensitizers. Here, we engineered a pea-like Au@BiS nanoreactors by anchoring gold nanoparticles onto BiS surfaces to establish a Schottky junction with interfacial Au-S covalent bonds, which suppresses electron-hole recombination and amplifies ROS production. Under light irradiation, Au@BiS exhibited remarkable inhibitory efficacy against HepG-2 cells, producing twice the ROS yield of BiS. Transcriptomic analysis via RNA sequencing identified activation of the Hippo/Yap signaling pathway, which orchestrated endoplasmic reticulum stress and autophagic flux in malignant cells, ultimately driving apoptotic elimination of HepG-2 populations. These findings delineate a mechanistic paradigm wherein Schottky junction engineering potentiates ROS-mediated cytotoxicity, thereby advancing precise photodynamic interventions for HCC management.

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