生物相容性
活性氧
体内
材料科学
体外
催化作用
纳米颗粒
纳米材料
小分子
生物物理学
超声波
纳米技术
压电
癌症研究
激素疗法
乳腺肿瘤
激素
氧气
分子
内生
组合化学
生物医学工程
生物化学
作者
Zhilin Yang,Nan Yuan,Yaning Gong,Yang Jiao,Najun Li,Jianmei Lu
标识
DOI:10.1002/adfm.202519435
摘要
Abstract Piezocatalytic therapy based on piezoelectric nanomaterials has emerged as an effective strategy to induce the generation of reactive oxygen species (ROS) for tumor inhibition. But the biocompatibility and toxicity risks during treatment and metabolic processes of the inorganic piezoelectric materials are big obstacles for their clinical application. As an alternative, L‐thyroxine, an endocrine hormone with high biocompatibility, is selected for piezocatalytic therapy testing based on its piezoelectric catalytic activity derived from its chiral confirmation. Without any complex synthetic process, the water‐insoluble L‐thyroxine molecules can well self‐assembled into small particles with a diameter about 100 nm in physiological medium, and then effectively taken up by 4T1 breast tumor cells. The high‐concentrated ROS is stimulated by L‐thyroxine under ultrasonic vibration, thereby effectively inhibiting tumor growth. In vitro results demonstrate the high biocompatibility of L‐thyroxine, while in vivo results achieve a remarkable tumor inhibition rate of 81.2% against 4T1 breast tumor cells under ultrasound treatment, thereby validating the effectiveness and potential of endogenous chiral molecules in piezocatalytic therapy.
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