Radiotherapy Department, Lucien Neuwirth Cancerology Institute, Saint Priest en Jarez, France.
Université Lyon 1, Faculté de Médecine-Lyon-Sud, Oullins, France.
Med Sci Monit. 2021 Nov 3;27:e934116. doi: 10.12659/MSM.934116.
Hypoxia involves neoplastic cells. Unlike normal tissue, solid tumors are composed of aberrant vasculature, leading to a hypoxic microenvironment. Hypoxia is also known to be involved in both metastasis initiation and therapy resistance. Radiotherapy is the appropriate treatment in about half of all cancers, but loco-regional control failure and a disease recurrence often occur due to clinical radioresistance. Hypoxia induces radioresistance through a number of molecular pathways, and numerous strategies have been developed to overcome this. Nevertheless, these strategies have resulted in disappointing results, including adverse effects and limited efficacy. Additional clinical studies are needed to achieve a better understanding of the complex hypoxia pathways. This review presents an update on the mechanisms of hypoxia in radioresistance in solid tumors and the potential therapeutic solutions.
缺氧涉及肿瘤细胞。与正常组织不同,实体瘤由异常的脉管系统组成,导致缺氧微环境。缺氧也被认为与转移的起始和治疗抵抗有关。放射治疗是所有癌症中约一半的适当治疗方法,但由于临床放射抵抗,局部区域控制失败和疾病复发经常发生。缺氧通过多种分子途径诱导放射抵抗,已经开发了许多策略来克服这一点。然而,这些策略导致了令人失望的结果,包括不良反应和有限的疗效。需要更多的临床研究来更好地理解复杂的缺氧途径。本综述介绍了实体瘤中缺氧诱导放射抵抗的机制以及潜在的治疗解决方案的最新进展。