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Overview of the application of inorganic nanomaterials in cancer photothermal therapy

机译:无机纳米材料在癌症光热疗法中的应用概述

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Cancer photothermal therapy (PTT) has captured the attention of researchers worldwide due to its localized and trigger-activated therapeutic effect. In this field, nanomaterials capable of converting the energy of the irradiation light into heat have been showing promising results in several pre-clinical and clinical assays. Such a therapeutic modality takes advantage of the innate capacity of nanomaterials to accumulate in the tumor tissue and their capacity to interact with NIR laser irradiation to exert a therapeutic effect. Therefore, several nanostructures composed of different materials and organizations for mediating a photothermal effect have been developed. In this review, the most common inorganic nanomaterials, such as gold, carbon-based materials, tungsten, copper, molybdenum, and iron oxide, which have been explored for mediating a tumor-localized photothermal effect, are summarized. Moreover, the physicochemical parameters of nanoparticles that influence the PTT effectiveness are discussed and the recent clinical advances involving inorganic nanomaterial-mediated cancer photothermal therapy are also presented.
机译:由于其本地化和触发激活的治疗效果,癌症光热疗(PTT)捕获了全世界的研究人员的注意。在该领域中,能够将照射光的能量转化为热量的纳米材料已经显示出在若干临床前和临床测定中的有希望的结果。这种治疗模态利用纳米材料的先天能力,以积聚在肿瘤组织中,它们与鼻激光照射相互作用以施加治疗效果。因此,已经开发出由不同材料和用于调解光热效应的不同材料和组织组成的若干纳米结构。在该评论中,已经概述了用于介导肿瘤局部光热效应的金,碳基材料,钨,铜,钼和氧化铁等最常见的无机纳米材料。此外,还讨论了影响PTT效果的纳米颗粒的物理化学参数,并且还介绍了涉及无机纳米材料介导的癌症光热疗法的最近临床进展。

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