Grigorieva Elvira V
Institute of Molecular Biology and Biophysics, Federal Research Center of Fundamental and Translational Medicine, Novosibirsk, Russia.
V. Zelman Institute for Medicine and Psychology, Novosibirsk State University, Novosibirsk, Russia.
Front Oncol. 2020 Oct 2;10:576701. doi: 10.3389/fonc.2020.576701. eCollection 2020.
Radiotherapy is an important therapeutic approach to treating malignant tumors of different localization, including brain cancer. Glioblastoma multiforme (GBM) represents the most aggressive brain tumor, which develops relapsed disease during the 1st year after the surgical removal of the primary node, in spite of active adjuvant radiochemotherapy. More and more evidence suggests that the treatment's success might be determined by the balance of expected antitumor effects of the treatment and its non-targeted side effects on the surrounding brain tissue. Radiation-induced damage of the GBM microenvironment might create tumor-susceptible niche facilitating proliferation and invasion of the residual glioma cells and the disease relapse. Understanding of molecular mechanisms of radiation-induced changes in brain ECM might help to reconsider and improve conventional anti-glioblastoma radiotherapy, taking into account the balance between its antitumor and ECM-destructing activities. Although little is currently known about the radiation-induced changes in brain ECM, this review summarizes current knowledge about irradiation effects onto the main components of brain ECM such as proteoglycans, glycosaminoglycans, glycoproteins, and the enzymes responsible for their modification and degradation.
放射治疗是治疗包括脑癌在内的不同部位恶性肿瘤的重要治疗方法。多形性胶质母细胞瘤(GBM)是最具侵袭性的脑肿瘤,尽管进行了积极的辅助放化疗,但在手术切除原发灶后的第1年仍会出现疾病复发。越来越多的证据表明,治疗的成功可能取决于治疗预期的抗肿瘤效果与其对周围脑组织的非靶向副作用之间的平衡。辐射诱导的GBM微环境损伤可能会形成肿瘤易感小生境,促进残留胶质瘤细胞的增殖和侵袭以及疾病复发。了解辐射诱导脑ECM变化的分子机制可能有助于重新考虑和改进传统的抗胶质母细胞瘤放疗,同时考虑到其抗肿瘤活性和ECM破坏活性之间的平衡。尽管目前对辐射诱导的脑ECM变化了解甚少,但本综述总结了目前关于辐射对脑ECM主要成分(如蛋白聚糖、糖胺聚糖、糖蛋白以及负责其修饰和降解的酶)影响的知识。