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首页> 外文期刊>Nanoscale >A HMCuS@MnO(2)nanocomplex responsive to multiple tumor environmental clues for photoacoustic/fluorescence/magnetic resonance trimodal imaging-guided and enhanced photothermal/photodynamic therapy
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A HMCuS@MnO(2)nanocomplex responsive to multiple tumor environmental clues for photoacoustic/fluorescence/magnetic resonance trimodal imaging-guided and enhanced photothermal/photodynamic therapy

机译:HMCuS@MnO (2) nanocomplex响应多个肿瘤环境线索光声/荧光/核磁共振三峰成像制导和增强光热光谱分析/光动力治疗

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摘要

Hollow mesoporous copper sulfide nanoparticles (HMCuS NPs) are advantageous for loading small-molecule therapeutic drugs coupled with photothermal ablation for synergistic tumor therapy. However, treatment efficacy mediated by HMCuS NPs is not always satisfactory owing to their insensitivity toward the tumor microenvironment (TME), and unpredictable drug leakage may also result in deleterious systemic toxicity. Here, a novel HMCuS@MnO2-based core-shell nanoplatform was developed as a highly efficient TME modulator, which could alleviate tumor hypoxia, deplete the level of intracellular glutathione (GSH) and trigger the dissolution of Mn2+. Moreover, MnO2,in situgrown on the surface of HMCuS, may act as a gatekeeper by forming a stimulus-responsive plug within the mesoporous structure, which effectively prevented the premature release of encapsulated photosensitizer chlorin e6 (Ce6) and was responsive to the acidic TME for demand-based drug release. Under the condition of 660/808 nm dual-wavelength laser irradiation, hyperthermia-mediated photothermal therapy (PTT) and reactive oxygen species (ROS)-mediated photodynamic therapy (PDT) can be triggered for tumor eradication, which were further enhanced upon the modification of the TME. In the meantime, splendid photoacoustic (PA)/fluorescence (FL)/magnetic resonance (MR) imaging properties of HMCuS@MnO2/Ce6 (CMC) NPs could enable the realization of more precise, reliable and on-demand combination therapy. In a word, this study illustrated a promising approach to strengthen the efficacy of HMCuS-based nanotherapeutics, which would definitely promote the further exploitation of smarter nanoplatforms for synergistic disease management.
机译:空心介孔硫化铜纳米粒子加载(HMCuS NPs)是有利的再加上小分子治疗药物光照对协同肿瘤消融治疗。HMCuS NPs并不总是令人满意的由于他们向肿瘤不敏感微环境(时间)和不可预知的药物泄漏也可能导致有害的系统性毒性。核壳nanoplatform开发作为一个高度有效时间调制器,它可以缓解肿瘤组织缺氧,消耗细胞内的水平谷胱甘肽(GSH)和触发解散Mn2 +。HMCuS,可能形成一个充当看门人stimulus-responsive介孔内的插头结构,有效地阻止了过早释放封装光敏剂氯e6 (Ce6)和酸性反应“需求导向药物释放。660/808 nm双波长激光的条件辐照,hyperthermia-mediated光热光谱分析治疗(PTT)和活性氧(ROS)介导的光动力疗法(PDT)引发肿瘤根除,进一步加强的修改制造时间。(PA) /荧光(FL) /磁共振(先生)成像的性质HMCuS@MnO2 / Ce6 NPs (CMC)能够更精确的实现,可靠的和按需组合疗法。词,这项研究展示了一个有前途的方法加强HMCuS-based的功效肯定会促进纳米疗法进一步开发nanoplatforms聪明协同疾病管理。

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