高原子序数纳米颗粒在增强现行放射治疗中的应用。
Application of High-Z Nanoparticles to Enhance Current Radiotherapy Treatment.
机构信息
Department of Physics and Astronomy, University of Victoria, Victoria, BC V8P 5C2, Canada.
British Columbia Cancer-Victoria, Victoria, BC V8R 6V5, Canada.
出版信息
Molecules. 2024 May 22;29(11):2438. doi: 10.3390/molecules29112438.
Radiotherapy is an essential component of the treatment regimens for many cancer patients. Despite recent technological advancements to improve dose delivery techniques, the dose escalation required to enhance tumor control is limited due to the inevitable toxicity to the surrounding healthy tissue. Therefore, the local enhancement of dosing in tumor sites can provide the necessary means to improve the treatment modality. In recent years, the emergence of nanotechnology has facilitated a unique opportunity to increase the efficacy of radiotherapy treatment. The application of high-atomic-number (Z) nanoparticles (NPs) can augment the effects of radiotherapy by increasing the sensitivity of cells to radiation. High-Z NPs can inherently act as radiosensitizers as well as serve as targeted delivery vehicles for radiosensitizing agents. In this work, the therapeutic benefits of high-Z NPs as radiosensitizers, such as their tumor-targeting capabilities and their mechanisms of sensitization, are discussed. Preclinical data supporting their application in radiotherapy treatment as well as the status of their clinical translation will be presented.
放射治疗是许多癌症患者治疗方案的重要组成部分。尽管最近的技术进步提高了剂量传递技术,但由于周围健康组织不可避免的毒性,提高肿瘤控制所需的剂量提升受到限制。因此,在肿瘤部位局部增加剂量可以提供必要的手段来改善治疗方式。近年来,纳米技术的出现为提高放射治疗的效果提供了独特的机会。高原子序数(Z)纳米颗粒(NPs)的应用可以通过提高细胞对辐射的敏感性来增强放射治疗的效果。高 Z NPs 可以作为放射增敏剂固有地发挥作用,也可以作为放射增敏剂的靶向递送载体。在这项工作中,讨论了高 Z NPs 作为放射增敏剂的治疗益处,例如它们的肿瘤靶向能力及其增敏机制。将介绍支持其在放射治疗中应用的临床前数据以及其临床转化的现状。