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胃癌的原位放射治疗:金及其他无机纳米颗粒的作用

In situ radiotherapy for gastric cancer: The role of gold and other inorganic nanoparticles.

作者信息

Guerreiro Sara F C, Dias Anabela G, Dias Juliana R, Granja Pedro L

机构信息

CDRSP - Centro para o Desenvolvimento Rápido e Sustentado do Produto, Politécnico de Leiria, R. de Portugal, Leiria 2430-028, Portugal; IPO-PORTO - Grupo de Física Médica, Radiobiologia e Proteção Radiológica, Centro de Investigação do Instituto Português de Oncologia Francisco Gentil, R. Dr. António Bernardino de Almeida, Porto 4200-072, Portugal; FEUP - Faculdade de Engenharia, Universidade do Porto, Rua Dr. Roberto Frias, s/n, Porto 4200-135, Portugal; i3S - Instituto de Investigação e Inovação em Saúde (i3S), Universidade do Porto, R. Alfredo Allen 208, Porto 4200-135, Portugal.

IPO-PORTO - Grupo de Física Médica, Radiobiologia e Proteção Radiológica, Centro de Investigação do Instituto Português de Oncologia Francisco Gentil, R. Dr. António Bernardino de Almeida, Porto 4200-072, Portugal.

出版信息

Acta Biomater. 2025 Aug;202:27-44. doi: 10.1016/j.actbio.2025.06.044. Epub 2025 Jun 24.

Abstract

The use of X-rays as a first-line treatment for gastric tumors is constrained by inaccurate target delineation and high toxicity to surrounding healthy tissues. The potential of inorganic nanoparticles (INPs; e.g. gold, silver, titanium oxide, tungsten oxide) in imaging and cancer therapy has been discussed as a solution to improve radiotherapy effectiveness, particularly in situations of challenging organ segmentation. X-rays interact with these INPs leading to the release of photons and electrons motivated by the photoelectric effect and Compton scattering that induces a cascade effect, resulting in the breakdown of DNA strands of tumor cells. Despite the associated radio-enhancing advantages, concerns have been raised regarding the bioaccumulation and potential toxicity of these nanoparticles, which could limit their administration and, consequently, their efficiency. To address these limitations, delivery systems based on novel biomaterials designs have been developed. These systems aim of achieve a more localized effect of NPs through targeting strategies, functionalization and use of delivery platforms that do not compromise surrounding healthy tissues. This review discusses the results of dose escalation induced by INPs in gastric tumors, along with the impact of design of INPs on the radiobiological effects observed. Furthermore, it explores prospective developments for combined therapy and potential alternatives for local delivery of nanoparticles. STATEMENT OF SIGNIFICANCE: Gastric cancer (GC) affects over more than one million globally each year. Considering the limited efficacy of chemo- and radiotherapies, surgical resection remains the standard treatment. However, stomach function and the patient quality of life are often compromised after surgical intervention. To enhance the effectiveness of radiotherapy in GC, small particles - typically composed of high atomic number materials - are being explored for their ability to increase tumor cell sensitivity to the X-rays. The delivery strategies and optimal design of these particles within the gastric environment are critical factors under investigation to maximize their radiosensitizing effects. The reduction of treatment invasiveness, and gastric cancer recurrence are key aspects associated with the translation of this approach to clinical routine.

摘要

X射线作为胃癌一线治疗手段,因肿瘤靶区勾画不准确以及对周围健康组织毒性大而受到限制。无机纳米粒子(如金、银、氧化钛、氧化钨)在成像和癌症治疗中的潜力已被探讨,有望作为提高放射治疗效果的解决方案,尤其是在器官分割具有挑战性的情况下。X射线与这些无机纳米粒子相互作用,通过光电效应和康普顿散射导致光子和电子释放,进而引发级联效应,导致肿瘤细胞DNA链断裂。尽管具有相关的放射增强优势,但人们对这些纳米粒子的生物蓄积和潜在毒性表示担忧,这可能会限制其应用,进而影响其疗效。为解决这些局限性,基于新型生物材料设计的递送系统已被开发出来。这些系统旨在通过靶向策略、功能化以及使用不损害周围健康组织的递送平台,实现纳米粒子更局部化的效应。本综述讨论了无机纳米粒子在胃癌中诱导剂量增加的结果,以及无机纳米粒子设计对所观察到的放射生物学效应的影响。此外,还探讨了联合治疗的前瞻性发展以及纳米粒子局部递送的潜在替代方案。重要性声明:胃癌每年在全球影响超过一百万人。考虑到化疗和放疗效果有限,手术切除仍是标准治疗方法。然而,手术干预后胃功能和患者生活质量常常受到影响。为提高胃癌放疗效果,正在探索通常由高原子序数材料组成的小颗粒,因其能够增加肿瘤细胞对X射线的敏感性。这些颗粒在胃环境中的递送策略和最佳设计是正在研究的关键因素,以最大化其放射增敏效果。减少治疗侵入性以及降低胃癌复发率是将该方法转化为临床常规治疗的关键方面。

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