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Polymeric Nanoparticles with ROS‐Responsive Prodrug and Platinum Nanozyme for Enhanced Chemophotodynamic Therapy of Colon Cancer

机译:聚合物纳米颗粒,具有ROS响应性前药和铂纳米酶,用于增强结肠癌的化学球动力学治疗

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The combination of chemotherapy and photodynamic therapy (PDT) has promising potential in the synergistic treatment of cancer. However, chemotherapy and photodynamic synergistic therapy are impeded by uncontrolled chemotherapeutics release behavior, targeting deficiencies, and hypoxia‐associated poor PDT efficacy in solid tumors. Here, a platinum nanozyme (PtNP) loaded reactive oxygen species (ROS)‐responsive prodrug nanoparticle (CPT‐TK‐HPPH/Pt NP) is created to overcome these limitations. The ROS‐responsive prodrug consists of a thioketal bond linked with camptothecin (CPT) and photosensitizer‐2‐(1‐hexyloxyethyl)‐2‐devinyl pyropheophorbide‐a (HPPH). The PtNP in CPT‐TK‐HPPH/Pt NP can efficiently catalyze the decomposition of hydrogen peroxide (H2O2) into oxygen to relieve hypoxia. The production of oxygen can satisfy the consumption of HPPH under 660?nm laser irradiation to attain the on‐demand release of CPT and ensure enhanced photodynamic therapy. As a tumor diagnosis agent, the results of photoacoustic imaging and fluorescence imaging for CPT‐TK‐HPPH/Pt NP exhibit desirable long circulation and enhanced in vivo targeting. CPT‐TK‐HPPH/Pt NPs effectively inhibit tumor proliferation and growth in vitro and in vivo. CPT‐TK‐HPPH/Pt NP, with its excellent ROS‐responsive drug release behavior and enhanced PDT efficiency can serve as a new cancer theranostic agent, and will further promote the research of chemophotodynamic synergistic cancer therapy.
机译:化疗和光动力治疗(PDT)的组合在癌症的协同治疗方面具有很大的潜力。然而,化疗和光动力学协同疗法受到不受控制的化学治疗释放行为,靶向缺陷和缺氧相关的差异在实体肿瘤中的缺氧。这里,产生铂纳米氧化物(PTNP)负载的反应性氧(ROS) - 反应前药纳米颗粒(CPT-TK-HPPH / PT NP)以克服这些限制。 ROS响应性前药包括与喜树碱(CPT)和光敏剂-2-(1-己氧基乙基)-2-脱乙烯基乙酰硼博物-A(HPPH)连接的硫酮键。 CPT-TK-HPPH / PT NP中的PTNP可以有效地催化过氧化氢(H 2 O 2)的分解成氧气以缓解缺氧。氧气的生产可以满足660℃以下的HPPH的消耗,以获得CPT的按需释放,并确保增强的光动力治疗。作为肿瘤诊断剂,对CPT-TK-HPPH / PT NP的光声成像和荧光成像的结果表现出理想的长循环和增强体内靶向。 CPT-TK-HPPH / PT NPS有效地抑制体外和体内肿瘤增殖和生长。 CPT-TK-HPPH / PT NP,其优异的ROS响应药物释放行为和增强的PDT效率可以作为新的癌症治疗剂,并进一步促进化学光学动力学协同癌症治疗的研究。

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