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A Protein-Polymer Bioconjugate-Coated Upconversion Nanosystem for Simultaneous Tumor Cell Imaging, Photodynamic Therapy, and Chemotherapy

机译:蛋白质-聚合物生物共轭物涂层的上转换纳米系统,用于同时肿瘤细胞成像,光动力疗法和化学疗法

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摘要

Combined cancer therapy possesses many advantages including improved tumoricidal efficacy, reduced side effects, and retarded drug resistance. Herein, a protein-polymer bioconjugate-coated multifunctional upconversion nanosystem, consisting of upconversion nanoparticles (UCNs) core, tailored amphiphilic protein-polymer bioconjugate shell, and photosensitizer zinc phthalocyanine (ZnPc) and antitumor drug doxorubicin coloaded inside, was elaborately developed for combined photodynamic therapy (PDT) and chemotherapy. In this system, UCNs core could convert deep penetrating near infrared light to visible light for simultaneous cell fluorescence imaging and photodynamic therapy by activating ZnPc to generate cytotoxic ROS, while the protective shell of bovine serum albumin-poly(e-caprolactone) (BSA-PCL) offered excellent water solubility, good stability, and low cytotoxicity. The ROS production test showed that this nanosystem could successfully generate singlet oxygen under NIR irradiation. A cellular uptake study demonstrated that intense fluorescence emission of the UCNs could be observed in HeLa cells, indicating their outstanding real-time imaging capability. More importantly, compared with single PDT or chemotherapy systems, the constructed combined therapy UCNs system demonstrated significantly enhanced tumor cell killing efficiency. On the basis of our findings, this multifunctional UCNs nanosystem could be a promising versatile theranostic nanoplatform for image-guided combined cancer therapy.
机译:联合癌症治疗具有许多优势,包括改善的杀肿瘤功效,减少的副作用和延迟的耐药性。本文中,精心开发了蛋白质-聚合物生物共轭物包被的多功能上转换纳米系统,该系统由上转换纳米粒子(UCNs)核,定制的两亲性蛋白质-聚合物生物共轭物壳,以及光敏剂锌酞菁(ZnPc)和抗肿瘤药阿霉素组成,该组合物被组合起来用于光动力学研究治疗(PDT)和化学疗法。在该系统中,UCN的核心可以通过激活ZnPc产生细胞毒性的ROS,同时将深穿透的近红外光转换为可见光,以同时进行细胞荧光成像和光动力疗法,而牛血清白蛋白-聚己内酯(BSA- PCL)具有出色的水溶性,良好的稳定性和低细胞毒性。 ROS生产测试表明,该纳米系统可以在近红外辐射下成功产生单线态氧。细胞吸收研究表明,在HeLa细胞中可以观察到UCN的强烈荧光发射,表明它们具有出色的实时成像能力。更重要的是,与单个PDT或化学疗法系统相比,构建的联合治疗UCNs系统显示出显着增强的肿瘤细胞杀伤效率。根据我们的发现,这种多功能的UCNs纳米系统可能是用于图像引导的联合癌症治疗的有前途的多功能治疗学纳米平台。

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