Malignant pleural effusion (MPE), persistently generated by thorax tumor cells at the advanced stage, remains a major challenge for cancer therapy. Herein, we develop an ultra-sensitive piezoelectric nano-system by doping ytterbium in metal-organic framework (O(3)P@LPYU), which can be triggered by physiological intrapleural pressure during breath. Under the gently alterative pressure, the piezoelectric nanoparticles with notable peroxidase-like activity effectively produce a burst of reactive oxygen species and induce immunogenic cell death by catalysis of carried ozone as well as peroxide in interstitial fluid. A clear and sustained biodistribution is observed in thorax effusion and tumors upon intrapleural administration of particle. Remarkably, due to the abundant substrates in oxygen-rich environment of pleural cavity, O(3)P@LPYU particle provides a potent reduction of MPE volume and durable inhibition of tumor growth in thorax. Our work not only develops a bio-responsive piezoelectric nano-system, but also provides a strategy for persistent suppression of MPE in clinics.
Intrapleural pressure-controlled piezo-catalytic nanozyme for the inhibition of malignant pleural effusion
胸膜腔内压力控制的压电催化纳米酶用于抑制恶性胸膜积液
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作者:Zihan Xu # ,Xiujing He # ,Yu Gui # ,Lingkai Tang # ,Yuxin Zhao ,Linlin Song ,Tianyue Xu ,Meixu Chen ,Yujie Zhao ,Peixin Du ,Xin Wang ,Siyi Chen ,Yong Luo ,Feng Luo ,Huan Meng ,Jianping Hu ,Wei Zhuo ,Jing Jing ,Hubing Shi
| 期刊: | Nature Communications | 影响因子: | 14.700 |
| 时间: | 2025 | 起止号: | 2025 Apr 3;16(1):3194. |
| doi: | 10.1038/s41467-025-58354-9 | 研究方向: | 其它 |
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