机械敏感通道
压电1
阿霉素
化学
药理学
药物输送
常用化疗药物
药品
离子通道
细胞内
癌症研究
化疗
生物医学工程
癌细胞
全身给药
医学
增强子
靶向给药
膀胱癌
细胞毒性
体外
生物相容性材料
细胞
机械转化
体内
癌症治疗
人膀胱
脂质体
癌症
细胞培养
钙通道
作者
Minghai Ma,Xing Li,Xing Li,Zezhong Yang,Jiale He,Jianpeng Li,Xiao Liang,Yunzhong Jiang,Rou Huang,Yuanquan Zhang,Yuanchun Pu,Jiawei Xiu,Yutong Chen,Kaibo Mi,Pu Zhang,Lei Wang,Jinhai Fan
标识
DOI:10.1002/advs.202522936
摘要
Intravesical chemotherapy for bladder cancer remains limited by poor efficacy and significant toxicity, imposing profound physical and psychological burdens on patients. While several physical-assisted approaches comprising hyperthermic intravesical chemotherapy and electromotive drug administration have been investigated to enhance the chemotherapy, but limited in clinical application due to their technical complexity and high costs. Herein, we introduce a simple yet powerful approach: utilizing programmable mechanical pressure as a therapeutic enhancer to establish a mechano-chemotherapy strategy. We demonstrate that controlled pressure activates the mechanosensitive ion channel Piezo1 in bladder cancer, triggering a calcium ion cascade that transiently and reversibly amplifies mechanosensitivity and membrane permeability. This force-controlled process obviously enhances intracellular accumulation of standard chemotherapeutics, including Doxorubicin (DOX) and Mitomycin-C (MMC), leading to significantly increased tumor cell apoptosis. Crucially, mechano-chemotherapy potently enhances antitumor efficacy while mitigating dose-limiting mucosal toxicity in orthotopic models. In a word, this work establishes Piezo1-mediated mechano-chemotherapy as a readily translatable strategy, transforming mechanical force into a safe and effective tool for optimizing cancer treatment.
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