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粒子疗法克服癌症辐射抗性:“ARCHADE”联盟在放射生物学方面的进展

Particle Therapy to Overcome Cancer Radiation Resistance: "ARCHADE" Consortium Updates in Radiation Biology.

作者信息

Valable Samuel, Césaire Mathieu, Lecrosnier Kilian, Gilbert Antoine, Tudor Mihaela, Vares Guillaume, Hamdi Dounia Houria, Diouf Ousseynou Ben, Nguyen Pham Thao, Coupey Julie, Thariat Juliette, Lesueur Paul, Pérès Elodie Anne, Aury-Landas Juliette, Nikitaki Zacharenia, Haghdoost Siamak, Laurent Carine, Poully Jean-Christophe, Balosso Jacques, Bernaudin Myriam, Savu Diana I, Chevalier François

机构信息

ARCHADE, Association for "Advanced Resource Center for Hadrontherapy in Europe", 14000 Caen, France.

Université de Caen Normandie, CNRS, Normandie Université, ISTCT UMR6030, GIP CYCERON, 14000 Caen, France.

出版信息

Cancers (Basel). 2025 May 6;17(9):1580. doi: 10.3390/cancers17091580.

Abstract

Radiation therapy is a medical treatment that uses high doses of radiation to kill or damage cancer cells. It works by damaging the DNA within the cancer cells, ultimately causing cell death. Radiotherapy can be used as a primary treatment, adjuvant treatment in combination with surgery or chemotherapy or palliative treatment to relieve symptoms in advanced cancer stages. Radiation therapy is constantly improving in order to enhance the effect on cancer cells and reduce the side effects on healthy tissues. Our results clearly demonstrate that proton therapy and, even more, carbon ion therapy appear as promising alternatives to overcome the radioresistance of various tumors thanks to less dependency on oxygen and a better ability to kill cancer stem cells. Interestingly, hadrons also retain the advantages of radiosensitization approaches. These data confirm the great ability of hadrons to spare healthy tissue near the tumor via various mechanisms (reduced lymphopenia, bystander effect, etc.). Technology and machine improvements such as image-guided radiotherapy or particle therapies can improve treatment quality and efficacy (dose deposition and biological effect) in tumors while increasingly sparing healthy tissues. Radiation biology can help to understand how cancer cells resist radiation (hypoxia, DNA repair mechanisms, stem cell status, cell cycle position, etc.), how normal tissues may display sensitivity to radiation and how radiation effects can be increased with either radiosensitizers or accelerated particles. All these research topics are under investigation within the ARCHADE research community in France. By focusing on these areas, radiotherapy can become more effective, targeted and safe, enhancing the overall treatment experience and outcomes for cancer patients. Our goal is to provide biological evidence of the therapeutic advantages of hadrontherapy, according to the tumor characteristics. This article aims to give an updated view of our research in radiation biology within the frame of the French "ARCHADE association" and new perspectives on research and treatment with the C400 multi-ions accelerator prototype.

摘要

放射治疗是一种利用高剂量辐射杀死或损伤癌细胞的医学治疗方法。它通过破坏癌细胞内的DNA起作用,最终导致细胞死亡。放射治疗可作为主要治疗方法、与手术或化疗联合的辅助治疗方法,或在癌症晚期用于缓解症状的姑息治疗方法。放射治疗在不断改进,以增强对癌细胞的作用并减少对健康组织的副作用。我们的结果清楚地表明,质子治疗,甚至更重要的是碳离子治疗,由于对氧气的依赖性较小且具有更好的杀死癌症干细胞的能力,似乎是克服各种肿瘤放射抗性的有前景的替代方法。有趣的是,强子还保留了放射增敏方法的优点。这些数据证实了强子通过各种机制(减少淋巴细胞减少、旁观者效应等)在肿瘤附近保护健康组织的强大能力。图像引导放射治疗或粒子治疗等技术和设备改进可以提高肿瘤治疗的质量和疗效(剂量沉积和生物学效应),同时越来越多地保护健康组织。放射生物学有助于理解癌细胞如何抵抗辐射(缺氧、DNA修复机制、干细胞状态、细胞周期位置等)、正常组织如何对辐射表现出敏感性以及如何使用放射增敏剂或加速粒子增强辐射效应。法国的ARCHADE研究团队正在对所有这些研究课题进行调查。通过关注这些领域,放射治疗可以变得更有效、更有针对性和更安全,从而改善癌症患者的整体治疗体验和治疗效果。我们的目标是根据肿瘤特征提供强子治疗的治疗优势的生物学证据。本文旨在介绍我们在法国“ARCHADE协会”框架内进行的放射生物学研究的最新情况,以及使用C400多离子加速器原型进行研究和治疗的新前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b64/12071746/0b5acdcc3f7a/cancers-17-01580-g001.jpg

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