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Photosensitizer-assembled PEGylated graphene-copper sulfide nanohybrids as a synergistic near-infrared phototherapeutic agent

机译:光敏剂组装的聚乙二醇化石墨烯-硫化铜纳米杂化物作为增效型近红外光疗剂

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摘要

Objectives: Stimulative nanostructures play a crucial role in developing the smart nanomedicine for high therapeutic efficacy with minimum adverse effects. Herein, a near-infrared (NIR) light-responsive nanohybrids p-nanographene oxide (GO)-copper sulfide (CuS)/indocyanine green (ICG) comprised of GO, CuS nanoparticles and photosensitizer ICG was fabricated to couple the photothermal property of CuS and photodynamic effect of ICG in one system in order to achieve the synergistic phototherapy.Methods: pGO-CuS/ICG was constructed by self-assembling ICG on pGO-CuS nanostructure. Its physicochemical, photothermal and photodynamic properties were studied by spectroscopic methods. The in vitro cellular uptake, cytotoxicity, the single/combined photothermal therapeutic (PTT) and photodynamic therapeutic (PDT) effects were investigated with biological techniques.Results: pGO-CuS/ICG exhibited high efficacy of photothermal conversation and singlet oxygen generation under NIR laser excitation. It entered into the target cancer cells probably via passive transmembrane pathway and exerted obvious PTT and PDT effect against the tumor cells upon irradiation with the respective 940 and 808nm lasers. In particular, the tremendous synergistic efficacy of PDT and PTT had been demonstrated by tuning the NIR laser combined irradiation.Conclusions: This study promises the future applications of pGO-CuS/ICG as a NIR light activable theranostic nanodrug for deep-seated cancer noninvasive phototherapy.
机译:目标:刺激性纳米结构在开发智能纳米药物中发挥关键作用,以实现高治疗效果和最小的不良反应。本文中,制备了由GO,CuS纳米颗粒和光敏剂ICG组成的近红外(NIR)光响应纳米杂化体对-氧化萘(GO)-硫化铜(CuS)/吲哚菁绿(ICG),以耦合CuS的光热性能。方法:通过在pGO-CuS纳米结构上自组装ICG,构建pGO-CuS / ICG。通过光谱法研究了其理化性质,光热性质和光动力学性质。用生物学技术研究了体外细胞的吸收,细胞毒性,单/组合光热疗法(PTT)和光动力疗法(PDT)的作用。结果:pGO-CuS / ICG在近红外光下表现出了高效率的光热对话和单线态氧产生励磁。它可能通过被动跨膜途径进入目标癌细胞,并且在分别用940和808nm激光照射后,对肿瘤细胞产生了明显的PTT和PDT效应。特别是,通过调节近红外激光联合照射已证明了PDT和PTT具有巨大的协同功效。结论:本研究有望将pGO-CuS / ICG用作近红外光可活化治疗性纳米药物,用于深层癌无创光疗。 。

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