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Roadmap to clinical use of gold nanoparticles for radiation sensitization

机译:金纳米颗粒用于放射增敏的临床使用路线图

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摘要

The past decade has seen a dramatic increase in interest in the use of gold nanoparticles (GNPs) as radiation sensitizers for radiation therapy. This interest was initially driven by their strong absorption of ionizing radiation and the resulting ability to increase dose deposited within target volumes even at relatively low concentrations. These early observations are supported by extensive experimental validation, showing GNPs' efficacy at sensitizing tumors in both in vitro and in vivo systems to a range of types of ionizing radiation, including kilovoltage and megavoltage X rays as well as charged particles. Despite this experimental validation, there has been limited translation of GNP-mediated radiation sensitization to a clinical setting. One of the key challenges in this area is the wide range of experimental systems that have been investigated, spanning a range of particle sizes, shapes, and preparations. As a result, mechanisms of uptake and radiation sensitization have remained difficult to clearly identify. This has proven a significant impediment to the identification of optimal GNP formulations which strike a balance among their radiation sensitizing properties, their specificity to the tumors, their biocompatibility, and their imageability in vivo. This white paper reviews the current state of knowledge in each of the areas concerning the use of GNPs as radiosensitizers, and outlines the steps which will be required to advance GNP-enhanced radiation therapy from their current pre-clinical setting to clinical trials and eventual routine usage.
机译:在过去的十年中,人们对将金纳米颗粒(GNP)用作放射治疗的放射增敏剂的兴趣大增。这种兴趣最初是由其对电离辐射的强烈吸收以及所产生的即使在相对较低的浓度下也能够增加沉积在目标体积内的剂量的能力而引起的。这些早期的观察得到广泛的实验验证的支持,表明GNP在体外和体内系统中使肿瘤对各种类型的电离辐射(包括千伏和兆伏X射线以及带电粒子)敏感的功效。尽管进行了这一实验验证,但GNP介导的放射致敏作用在临床上的翻译仍然有限。该领域的主要挑战之一是已经研究了各种各样的实验系统,涵盖了各种粒径,形状和制备方法。结果,吸收和辐射敏化的机理仍然很难清楚地确定。这已被证明严重阻碍了最佳GNP制剂的鉴定,这些制剂在辐射敏感性,肿瘤特异性,生物相容性和体内成像能力之间取得了平衡。本白皮书回顾了有关使用GNP作为放射增敏剂的每个领域的当前知识水平,并概述了将GNP增强的放射治疗从目前的临床前环境推进到临床试验和最终例行程序所需的步骤。用法。

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