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基于石墨烯的纳米材料及其在先进药物输送和癌症治疗中的潜力。

Graphene-based nanomaterials and their potentials in advanced drug delivery and cancer therapy.

机构信息

State Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu 610041, China.

Department of Pharmacy, West China Hospital, Sichuan University, Chengdu 610041, China.

出版信息

J Control Release. 2018 Sep 28;286:64-73. doi: 10.1016/j.jconrel.2018.07.034. Epub 2018 Jul 18.

Abstract

The continuing increase of cancer morbidity and death rate requires efficient therapeutic strategies. The traditional chemotherapy usually fails to treat cancer or prolong survival rate due to its toxicity to normal cells, side effects and lack of targeting capacity. In recent years, nanomaterials have shown great potentials to treat various cancers efficiently. Graphene-based nanomaterials, especially graphene oxide (GO) and reduced GO (rGO), have arisen as promising candidates for cancer therapy. Due to their unique physicochemical and optical properties including the extremely large surface area, modifiable active groups, great biocompatibility and strong photothermal effect, they can act either as tunable carriers or active agents for advanced chemotherapeutics delivery and cancer therapy. Therefore, combing the photothermal therapy, targeted drug delivery and chemotherapy would have great potentials for efficient cancer therapy. Herein, the comprehensive understandings of the physicochemical properties and various anti-cancer applications of GO and rGO as drug delivery systems or photothermal agents are described. Also, the concerns in using GO and rGO, such as the nano-protein interaction, and possible solutions are discussed.

摘要

癌症发病率和死亡率的持续上升需要有效的治疗策略。由于传统化疗对正常细胞的毒性、副作用和靶向能力不足,通常无法治疗癌症或延长存活率。近年来,纳米材料在有效治疗各种癌症方面显示出巨大的潜力。基于石墨烯的纳米材料,特别是氧化石墨烯(GO)和还原氧化石墨烯(rGO),已成为癌症治疗的有前途的候选材料。由于其独特的物理化学和光学性质,包括极高的表面积、可修饰的活性基团、良好的生物相容性和强大的光热效应,它们可以作为可调载体或活性物质,用于先进的化疗药物传递和癌症治疗。因此,将光热疗法、靶向药物输送和化疗相结合,将为癌症的有效治疗提供巨大的潜力。本文描述了 GO 和 rGO 作为药物输送系统或光热剂的物理化学性质和各种抗癌应用。还讨论了使用 GO 和 rGO 时的关注点,如纳米蛋白相互作用以及可能的解决方案。

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