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Pt(Ⅳ) prodrug initiated microparticles from microfluidics for tumor chemo-, photothermal and photodynamic combination therapy 被引量:1
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作者 Qingfei Zhang Xiaocheng Wang +1 位作者 Gaizhen Kuang Yuanjin Zhao 《Bioactive Materials》 SCIE CSCD 2023年第6期185-196,共12页
Multimodal treatment modalities hold great potential for cancer therapy,thus current efforts are focusing on the development of more effective and practical synergistic therapeutic platforms.Herein,we present a novel ... Multimodal treatment modalities hold great potential for cancer therapy,thus current efforts are focusing on the development of more effective and practical synergistic therapeutic platforms.Herein,we present a novel trans,trans,trans-[Pt(N_(3))_(2)(OH)_(2)(py)_(2)](Pt(Ⅳ))prodrug-initiated hydrogel microparticles(M_(ICG-Pt))with indocyanine green(ICG)encapsulation by microfluidics for efficiently synergistic chemo-,photothermal(PTT)and photodynamic therapy(PDT).The employed Pt(Ⅳ)could not only serves as an initiator to generate azidyl radical(N_(3)^(·))for photo-polymerization of methacrylate gelatin(GelMA)matrix,but also be reduced to high cytotoxic platinum(Ⅱ)(Pt(Ⅱ))species for tumor chemotherapy.The laden ICG with highly photothermal heating ability and intrinsic reactive oxygen species(ROS)productivity endows the M_(ICG-Pt) with effective PTT/PDT performances upon near-infrared(NIR)light irradiation.In addition,benefiting from the production of oxygen during the photo-activation process of Pt(Ⅳ),the PDT efficacy of ICG-laden M_(ICG-Pt) could be further enhanced.Based on these advantages,we have demonstrated that the M_(ICG-Pt) could significantly eliminate cancer cells in vitro,and remarkably suppressed the tumor growth in vivo via synergistic chemotherapy,PTT,and PDT.These results indicate that such Pt(Ⅳ)-initiated hydrogel microparticles are ideal candidates of multimodal treatment platforms,holding great prospects for cancer therapy. 展开更多
关键词 MICROFLUIDICS hydrogel microparticle Chemotherapy PHOTOTHERMAL Photodynamic Cancer therapy
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