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An overview of nanoparticle assisted laser therapy

机译:纳米粒子辅助激光治疗概述

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Interest in minimally invasive and localized treatments for cancer has led toward a dramatic increase in the development of novel nanomaterials as light absorbing agents. The application of nanoparticles as exogenous agents in laser therapy or photothermal therapy (PTT) is rapidly expanding to include nano-structures of various composition and geometries. The particles enhance the magnitude of light absorption resulting in a more precise delivery of energy at lower laser powers and prevent damage to nearby healthy tissue. To date, preclinical and clinical studies of plasmonic photothermal therapy (PPTT) with gold metal nanoparticles have been extensively studied and recently PTT of magnetoplasmonic nanoparticles, carbon nanomaterials, and nano-polymers have shown success in treatment of subcutaneous tumors. In addition, numerical investigations serve as a subsidiary tool for experimental explorations of nanoparticle assisted laser therapy. Since PTT can only be delivered to subcutaneous regions, the introduction of phantom numerical models in nanoparticle assisted laser-induced interstitial thermotherapy (LITT) has shown potential in delivering efficient ablative energy doses to deep-seated tumors. The following review provides experimental and mathematical models that concern metal, inorganic, and polymer nanoparticle assisted laser therapy.
机译:对癌症的微创和局部治疗的兴趣已导致新型纳米材料作为光吸收剂的开发急剧增加。纳米粒子作为外源剂在激光治疗或光热疗法(PTT)中的应用正在迅速扩展,以包括各种组成和几何形状的纳米结构。粒子增强了光吸收的强度,从而在较低的激光功率下更精确地传递了能量,并防止了对附近健康组织的损害。迄今为止,已经对金金属纳米粒子进行等离子光热疗法(PPTT)的临床前和临床研究进行了广泛的研究,最近磁等离子纳米粒子,碳纳米材料和纳米聚合物的PTT在治疗皮下肿瘤方面已显示出成功。此外,数值研究可作为辅助工具进行纳米粒子辅助激光治疗的实验探索。由于PTT只能递送至皮下区域,因此在纳米粒子辅助的激光诱导间质热疗(LITT)中引入幻影数值模型已显示出向深部肿瘤递送有效消融能量剂量的潜力。以下评论提供了涉及金属,无机和聚合物纳米粒子辅助激光治疗的实验和数学模型。

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