DOI: 10.1126/sciadv.aeh5237 ISSN: 2375-2548

Intratumoral therapeutic dust for chemo-photodynamic combination treatment

Rui Lin, Pingjin Zou, Junyang Chen, Zhixian Jiang, Kui Chen, Bin Tang, Zhihe Long, Qian Han, Zengyi Fang, Miao Yu, Songbo Zhang, Zhuoxuan Li, Hui Li, Jinyi Lang, Hao Wang, Lili Xing, Meihua Chen, Xinyu Xue

Implantable wireless ultrasound microdevices for intratumoral therapy are hindered by inadequate miniaturization for deep-seated sites and toxic lead-based piezoelectrics. Here, we report an injectable, lead-free, submillimeter therapeutic dust (TheraDust; 1.0 millimeters by 1.0 millimeters by 0.9 millimeters) for ultrasound-driven wireless chemo-photodynamic combined therapy. The core of the device is a lead-free tin-doped barium titanate piezoelectric ceramic that features a multiphase coexistence at physiological temperature and exhibits a high piezoelectric coefficient ( d 33  = 460 picocoulombs per newton). The TheraDust integrates with an ultrasound-responsive drug-loaded hydrogel for precise intratumoral injection. Under programmable ultrasound, it generates light for photodynamic therapy and triggers on-demand chemotherapeutic release for enhanced treatment. In animal models of breast cancer, the device achieved potent tumor suppression, reducing the final tumor volume to less than 3% after five treatment sessions (5 minutes each) and could be retrieved minimally invasively posttreatment. This platform can be adapted to deliver a range of therapeutic stimuli wirelessly, offering a versatile strategy for treating deep-seated pathologies.