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Stimuli-activatable nanomaterials for phototherapy of cancer

机译:刺激可活化的纳米材料,用于癌症光疗法

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摘要

Phototherapy including photothermal therapy (PTT) and photodynamic therapy (PDT), as non-invasive therapy approaches, have gained accumulated attention for cancer treatment in past years. PTT and PDT can generate local hyperthermia effects and reactive oxygen species (ROS) respectively, for tumor eradication. To improve the therapeutic performance while minimizing the reverse side effects of phototherapy, extensive efforts have been devoted to developing stimuli-activatable (e.g. pH, redox, ROS, enzyme, etc) nanomaterials for tumor-specific delivery/activation of the phototherapeutics. In this review, we first overviewed the recent advances of the engineered stimuli-responsive nanovectors for the phototherapy of cancer. We particularly summarized the progress of stimuli-activatable nanomaterials-based combinatory therapy strategies for augmenting the performance of phototherapy. We further discuss challenges for the clinical translation of nanomaterials-based phototherapy.
机译:作为非侵入性治疗方法,包括光热疗(PTT)和光动力治疗(PDT)的光疗法在过去几年中获得了癌症治疗的积累注意。 PTT和PDT可以分别产生局部热疗效应和活性氧物质(ROS),用于肿瘤根除。 为了提高治疗性能,同时最小化光疗法的逆副作用,已经致力于开发刺激可活化的(例如pH,氧化还原,ROS,酶等)纳米材料,用于肿瘤特异性递送/激活光照学。 在本综述中,我们首先概述了最近的工程刺激响应纳米型纳米型对癌症光疗法的进步。 我们特别总结了刺激可激活的基于纳米材料的组合治疗策略的进展,用于增强光疗的性能。 我们进一步探讨了纳米材料的光疗临床翻译的挑战。

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