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近红外光激活纳米材料介导的光热治疗纳米药物:癌症治疗的新兴范例。

Near-Infrared-Light-Activatable Nanomaterial-Mediated Phototheranostic Nanomedicines: An Emerging Paradigm for Cancer Treatment.

机构信息

Department of Chemistry, National Tsing Hua University, Hsinchu, 30013, Taiwan ROC.

出版信息

Adv Mater. 2018 Jun;30(23):e1706320. doi: 10.1002/adma.201706320. Epub 2018 Mar 25.

Abstract

Cancer is one of the most deadly diseases threatening the lives of humans. Although many treatment methods have been developed to tackle cancer, each modality of cancer treatment has its own limitations and drawbacks. The development of minimally invasive treatment modalities for cancers remains a great challenge. Near-infrared (NIR) light-activated nanomaterial-mediated phototherapies, including photothermal and photodynamic therapies, provide an alternative means for spatially and temporally controlled minimally invasive treatments of cancers. Nanomaterials can serve as nanocargoes for the delivery of chemo-drugs, diagnostic contrast reagents, and organic photosensitizers, and can be used to directly generate heat or reactive oxygen species for the treatment of tumors without the need for organic photosensitizers with NIR-light irradiation. Here, current progress in NIR-light-activated nanomaterial-mediated photothermal therapy and photodynamic therapy is summarized. Furthermore, the effects of size, shape, and surface functionalities of nanomaterials on intracellular uptake, macrophage clearance, biodistribution, cytotoxicities, and biomedical efficacies are discussed. The use of various types of nanomaterials, such as gold nanoparticles, carbon nanotubes, graphene, and many other inorganic nanostructures, in combination with diagnostic and therapeutic modalities for solid tumors, is briefly reviewed.

摘要

癌症是威胁人类生命的最致命疾病之一。尽管已经开发出许多治疗方法来治疗癌症,但每种癌症治疗方法都有其自身的局限性和缺点。开发用于癌症的微创治疗方法仍然是一个巨大的挑战。近红外(NIR)光激活纳米材料介导的光疗,包括光热和光动力疗法,为癌症的时空可控微创治疗提供了一种替代方法。纳米材料可用作化学药物、诊断对比试剂和有机光敏剂的纳米载体,并可用于直接产生热量或活性氧物质来治疗肿瘤,而无需使用近红外光照射的有机光敏剂。在这里,总结了近红外光激活纳米材料介导的光热疗法和光动力疗法的最新进展。此外,还讨论了纳米材料的尺寸、形状和表面功能对细胞内摄取、巨噬细胞清除、生物分布、细胞毒性和生物医学疗效的影响。简要回顾了各种类型的纳米材料(如金纳米粒子、碳纳米管、石墨烯和许多其他无机纳米结构)与实体瘤的诊断和治疗方式的结合使用。

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