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Nanomaterials and their composite scaffolds for photothermal therapy and tissue engineering applications

机译:用于光热疗和组织工程应用的纳米材料及其复合支架

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Photothermal therapy (PTT) has attracted broad attention as a promising method for cancer therapy with less severe side effects than conventional radiation therapy, chemotherapy and surgical resection. PTT relies on the photoconversion capacity of photothermal agents (PTAs), and a wide variety of nanomaterials have been employed as PTAs for cancer therapy due to their excellent photothermal properties. The PTAs are systematically or locally administered and become enriched in cancer cells to increase ablation efficiency. In recent years, PTAs and three-dimensional scaffolds have been hybridized to realize the local delivery of PTAs for the repeated ablation of cancer cells. Meanwhile, the composite scaffolds can stimulate the reconstruction and regeneration of the functional tissues and organs after ablation of cancer cells. A variety of composite scaffolds of photothermal nanomaterials have been prepared to combine the advantages of different modalities to maximize their therapeutic efficacy with minimal side effects. The synergistic effects make the composite scaffolds attractive for biomedical applications. This review summarizes these latest advances and discusses the future prospects.
机译:光热疗法(PTT)引起了广泛的关注,作为癌症治疗的有希望,副作用较小的癌症治疗,而不是常规放射治疗,化疗和手术切除。 PTT依赖于光热试剂(PTA)的光电转换能力,并且由于其优异的光热性能,已经使用各种纳米材料作为PTA用于癌症治疗。系统或局部施用PTA并富集癌细胞以增加消融效率。近年来,PTA和三维支架已经杂交,以实现PTA的局部递送癌细胞的反复消融。同时,复合支架可以刺激癌细胞后功能组织和器官的重建和再生。已经制备了各种光热纳米材料的复合支架,以将不同方式的优点与最大化的副作用结合起来最大化其治疗效果。协同效应使复合支架对生物医学应用具有吸引力。本综述总结了这些最新的进展并讨论了未来的前景。

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