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金纳米颗粒、辐射与免疫系统:该新兴联合疗法在癌症治疗方面的物理机制和生物相互作用的最新研究进展。

Gold nanoparticles, radiations and the immune system: Current insights into the physical mechanisms and the biological interactions of this new alliance towards cancer therapy.

机构信息

Department of Physics, School of Applied Mathematical and Physical Sciences, National Technical University of Athens, 15780 Athens, Greece.

Biomedical Research Foundation of the Academy of Athens, 4 Soranou Ephessiou St., 115 27, Athens, Greece.

出版信息

Pharmacol Ther. 2017 Oct;178:1-17. doi: 10.1016/j.pharmthera.2017.03.006. Epub 2017 Mar 18.

Abstract

Considering both cancer's serious impact on public health and the side effects of cancer treatments, strategies towards targeted cancer therapy have lately gained considerable interest. Employment of gold nanoparticles (GNPs), in combination with ionizing and non-ionizing radiations, has been shown to improve the effect of radiation treatment significantly. GNPs, as high-Z particles, possess the ability to absorb ionizing radiation and enhance the deposited dose within the targeted tumors. Furthermore, they can convert non-ionizing radiation into heat, due to plasmon resonance, leading to hyperthermic damage to cancer cells. These observations, also supported by experimental evidence both in vitro and in vivo systems, reveal the capacity of GNPs to act as radiosensitizers for different types of radiation. In addition, they can be chemically modified to selectively target tumors, which renders them suitable for future cancer treatment therapies. Herein, a current review of the latest data on the physical properties of GNPs and their effects on GNP circulation time, biodistribution and clearance, as well as their interactions with plasma proteins and the immune system, is presented. Emphasis is also given with an in depth discussion on the underlying physical and biological mechanisms of radiosensitization. Furthermore, simulation data are provided on the use of GNPs in photothermal therapy upon non-ionizing laser irradiation treatment. Finally, the results obtained from the application of GNPs at clinical trials and pre-clinical experiments in vivo are reported.

摘要

考虑到癌症对公众健康的严重影响和癌症治疗的副作用,近年来,针对癌症的靶向治疗策略引起了相当大的关注。结合电离辐射和非电离辐射使用金纳米颗粒(GNPs)已被证明可显著提高放射治疗的效果。作为高 Z 粒子,GNPs 具有吸收电离辐射的能力,并能增强靶肿瘤内的沉积剂量。此外,由于等离子体共振,它们可以将非电离辐射转化为热量,导致癌细胞过热损伤。这些观察结果,也得到了体外和体内系统的实验证据的支持,揭示了 GNPs 作为不同类型辐射的放射增敏剂的能力。此外,它们可以进行化学修饰以选择性地靶向肿瘤,这使得它们适合未来的癌症治疗疗法。本文对 GNPs 的物理特性及其对 GNP 循环时间、生物分布和清除的影响,以及它们与血浆蛋白和免疫系统的相互作用的最新数据进行了综述。还重点讨论了放射增敏作用的潜在物理和生物学机制。此外,还提供了关于在非电离激光照射治疗下使用 GNPs 进行光热治疗的模拟数据。最后,报告了在临床试验和体内临床前实验中应用 GNPs 获得的结果。

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