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Recent advances in nanomaterials for enhanced photothermal therapy of tumors

机译:为增强纳米材料的最新进展光照治疗肿瘤

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Nowadays, photothermal therapy (PTT) utilizing photothermal conversion agents (PTAs) to generate sufficient heat under near-infrared (NIR) light irradiation for tumor ablation has attracted extensive research attention. Despite the great advancement, the therapeutic efficacy of PTT in tumor treatment is still compromised by several obstacles, such as low photothermal conversion efficiency, poor stability of PTAs, inadequate tumor accumulation and cellular uptake, and thermal-resistance of tumors, as well as tumor recurrence and metastasis. In this review, we highlight recent advances in nanomaterials that focus on overcoming the above obstacles and thus enhancing the therapeutic outcome of PTT. PTAs with improved photothermal performance and modification strategies for efficient PTT are summarized, which are further classified into three main types, utilizing activatable PTAs, improving the local concentration of PTAs, and overcoming intrinsic drawbacks of PTT (e.g., heat shock responses). Furthermore, the limitations and challenges of nanomaterials for enhanced PTT are also discussed.
机译:如今,光照疗法(PTT)利用光热光谱分析转换代理(正在)来生成足够的光在近红外(NIR)热辐照对肿瘤消融吸引了广泛研究的关注。进步,PTT的治疗效果肿瘤治疗还是妥协了障碍,如低光照转换正在效率,稳定性差,不够的积累和肿瘤细胞吸收热阻的肿瘤以及肿瘤复发和转移。强调在纳米材料的最新进展关注,从而克服上述障碍提高PTT的治疗结果。与光热光谱分析性能和改善修改策略有效PTT总结,进一步分为三个主要类型,利用激活做和平,改善当地的和平克服PTT的内在缺陷(如热量冲击响应)。和挑战提高PTT的纳米材料进行了讨论。

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