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靶向放射性核素治疗的放射生物学简介。

Introduction to radiobiology of targeted radionuclide therapy.

机构信息

Institut de Recherche en Cancérologie de Montpellier , Montpellier , France ; INSERM, U1194 , Montpellier , France ; Université de Montpellier , Montpellier , France ; Institut régional du Cancer de Montpellier , Montpellier , France.

出版信息

Front Med (Lausanne). 2015 Mar 17;2:12. doi: 10.3389/fmed.2015.00012. eCollection 2015.

Abstract

During the last decades, new radionuclide-based targeted therapies have emerged as efficient tools for cancer treatment. Targeted radionuclide therapies (TRTs) are based on a multidisciplinary approach that involves the cooperation of specialists in several research fields. Among them, radiobiologists investigate the biological effects of ionizing radiation, specifically the molecular and cellular mechanisms involved in the radiation response. Most of the knowledge about radiation effects concerns external beam radiation therapy (EBRT) and radiobiology has then strongly contributed to the development of this therapeutic approach. Similarly, radiobiology and dosimetry are also assumed to be ways for improving TRT, in particular in the therapy of solid tumors, which are radioresistant. However, extrapolation of EBRT radiobiology to TRT is not straightforward. Indeed, the specific physical characteristics of TRT (heterogeneous and mixed irradiation, protracted exposure, and low absorbed dose rate) differ from those of conventional EBRT (homogeneous irradiation, short exposure, and high absorbed dose rate), and consequently the response of irradiated tissues might be different. Therefore, specific TRT radiobiology needs to be explored. Determining dose-effect correlation is also a prerequisite for rigorous preclinical radiobiology studies because dosimetry provides the necessary referential to all TRT situations. It is required too for developing patient-tailored TRT in the clinic in order to estimate the best dose for tumor control, while protecting the healthy tissues, thereby improving therapeutic efficacy. Finally, it will allow to determine the relative contribution of targeted effects (assumed to be dose-related) and non-targeted effects (assumed to be non-dose-related) of ionizing radiation. However, conversely to EBRT where it is routinely used, dosimetry is still challenging in TRT. Therefore, it constitutes with radiobiology, one of the main challenges of TRT in the future.

摘要

在过去的几十年中,新的基于放射性核素的靶向治疗方法已成为癌症治疗的有效工具。靶向放射性核素治疗(TRT)基于多学科方法,涉及多个研究领域的专家合作。其中,放射生物学家研究电离辐射的生物学效应,特别是涉及辐射反应的分子和细胞机制。关于辐射效应的大部分知识都涉及外照射放射治疗(EBRT),放射生物学为该治疗方法的发展做出了重要贡献。同样,放射生物学和剂量学也被认为是改善 TRT 的途径,特别是在治疗对辐射具有抗性的实体瘤方面。然而,将 EBRT 放射生物学外推到 TRT 并不简单。实际上,TRT 的特定物理特性(不均匀和混合照射、延长暴露时间和低吸收剂量率)与常规 EBRT(均匀照射、短时间暴露和高吸收剂量率)不同,因此受照射组织的反应可能不同。因此,需要探索特定的 TRT 放射生物学。确定剂量-效应关系也是严格的临床前放射生物学研究的前提,因为剂量学为所有 TRT 情况提供了必要的参考。在临床中为了开发针对患者的 TRT,以估计最佳的肿瘤控制剂量,同时保护健康组织,从而提高治疗效果,这也是必需的。最后,它将允许确定电离辐射的靶向效应(假定与剂量相关)和非靶向效应(假定与剂量无关)的相对贡献。然而,与常规使用的 EBRT 相反,剂量学在 TRT 中仍然具有挑战性。因此,它与放射生物学一起,是 TRT 在未来的主要挑战之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ef8/4362338/156a97254e1a/fmed-02-00012-g001.jpg

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