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J-type assembled Pt(Ⅳ)-coordinated carbon dots for near-infrared light-triggered pyroptosis

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摘要 Near-infrared(NIR)light-triggered pyroptosis based on biocompatible Pt(IV)-coordinated nanomedicine for tumor precision therapy is challenging.Here,we disclose a supramolecular approach to construct a hollow-spherical supra-(carbon dots)(HS-Pt-CDs)via ultrasound-assisted J-type assembly of Pt(IV)-coordinated carbon dots(Pt-CDs).The peculiar assembling behaviors arise from the steric hindrance and lattice distortion in the bowl-like Pt-CDs caused by the coordination of Pt(IV)atoms among the sp^(2)domains,which result in around 240 nm red-shifted absorption bands and promoting charge separation in the NIR region due to strong inter-molecular charge transfer(CT)in HS-Pt-CDs.The results reveal that HS-Pt-CDs exhibit excellent NIR light-activated photocatalytic capacities,involving the release of Pt(II)species,the generation of hydroxyl radicals,and acidification under 690 nm laser irradiation.Combined with the effective cellular uptake and tumor accumulation,HS-Pt-CDs can efficiently trigger cancer cell pyroptosis under 690 nm laser irradiation,resulting in the destruction of the primary tumor and effectively induction of strong immunogenic cell death(ICD),thereby evoking anti-tumor immune responses to suppress distant tumor and prevent cancer metastasis.Taken these merits,an important perspective of Pt(IV)-contained supra-CDs with outstanding NIRtriggered photocatalytic behaviors can be of great significance toward precision tumor phototherapy.
出处 《Light: Science & Applications》 2025年第6期1629-1642,共14页 光(科学与应用)(英文版)
基金 supported by the National Natural Science Foundation of China(52203160,52362006,32360238) Project of Sanya Yazhou Bay Science and Technology City(SKJC-JYRC-2024-34,SKJC-JYRC-2024-33) Science and Technology Development Fund of Macao SAR(0002/2024/TFP,0139/2022/A3,0007/2021/AKP).
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