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窄带隙肖特基异质结声敏剂提高膀胱癌声动力学治疗中的电子-空穴分离效率。

Narrow Bandgap Schottky Heterojunction Sonosensitizer with High Electron-Hole Separation Boosted Sonodynamic Therapy in Bladder Cancer.

机构信息

Guangdong Provincial Key Laboratory of Urology, Guangdong Engineering Research Center of Urinary Minimally invasive surgery Robot and Intelligent Equipment, Guangzhou Institute of Urology, The First Affiliated Hospital of Guangzhou Medical University, Guangzhou Medical University, Guangzhou, 510120, China.

Orthopedics Department, Guangdong Provincial Hospital of Traditional Chinese Medicine, The Second Affiliated Hospital of Guangzhou University of Chinese Medicine, Guangzhou, 510120, China.

出版信息

Adv Mater. 2024 Jun;36(26):e2401252. doi: 10.1002/adma.202401252. Epub 2024 Apr 9.

Abstract

Sonodynamic therapy (SDT) is applied to bladder cancer (BC) given its advantages of high depth of tissue penetration and nontoxicity due to the unique anatomical location of the bladder near the abdominal surface. However, low electron-hole separation efficiency and wide bandgap of sonosensitizers limit the effectiveness of SDT. This study aims to develop a TiO-Ru-PEG Schottky heterojunction sonosensitizer with high electron-hole separation and narrow bandgap for SDT in BC. Density functional theory (DFT) calculations and experiments collectively demonstrate that the bandgap of TiO-Ru-PEG is reduced due to the Schottky heterojunction with the characteristic of crystalline-amorphous interface formed by the deposition of ruthenium (Ru) within the shell layer of TiO. Thanks to the enhancement of oxygen adsorption and the efficient separation of electron-hole pairs, TiO-Ru-PEG promotes the generation of reactive oxygen species (ROS) under ultrasound (US) irradiation, resulting in cell cycle arrest and apoptosis of bladder tumor cells. The in vivo results prove that TiO-Ru-PEG boosted the subcutaneous and orthotopic bladder tumor models while exhibiting good safety. This study adopts the ruthenium complex for optimizing sonosensitizers, contributing to the progress of SDT improvement strategies and presenting a paradigm for BC therapy.

摘要

声动力学疗法(SDT)被应用于膀胱癌(BC),因为其具有较高的组织穿透深度和非毒性的优点,这是由于膀胱靠近腹部表面的独特解剖位置。然而,声敏剂的电子-空穴分离效率低和宽带隙限制了 SDT 的效果。本研究旨在开发一种具有高电子-空穴分离和窄带隙的 TiO-Ru-PEG 肖特基异质结声敏剂,用于 BC 的 SDT。密度泛函理论(DFT)计算和实验共同表明,由于 Ru 沉积在 TiO 壳层内形成的具有结晶-非晶界面特征的肖特基异质结,TiO-Ru-PEG 的带隙减小。由于增强了氧气吸附和电子-空穴对的有效分离,TiO-Ru-PEG 在超声(US)照射下促进了活性氧物质(ROS)的产生,导致膀胱肿瘤细胞的细胞周期停滞和凋亡。体内结果证明,TiO-Ru-PEG 增强了皮下和原位膀胱肿瘤模型,同时表现出良好的安全性。本研究采用钌配合物来优化声敏剂,有助于 SDT 改进策略的进展,并为 BC 治疗提供了范例。

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