Yenepoya Research Centre, Yenepoya (Deemed to be University), Deralakatte, Mangalore - 575 018, Karnataka, India.
Curr Pharm Des. 2021;27(7):919-931. doi: 10.2174/1381612826666201002145454.
Radiation therapy is a widely employed modality that is used to destroy cancer cells, but it also tends to induce changes in the tumor microenvironment and promote angiogenesis. Radiation, when used as a sole means of therapeutic approach to treat cancer, tends to trigger the angiogenic pathways, leading to the upregulation of several angiogenic growth factors such as VEGF, bFGF, PDGF and angiogenin. This uncontrolled angiogenesis leads to certain angiogenic disorders like vascular outgrowth and an increase in tumor progression that can pose a serious threat to patients.
This review emphasizes on various components of the tumor microenvironment, angiogenic growth factors and biological effects of radiation on tumors in provoking the relapse. It also describes the angiogenic mechanisms that trigger the tumor relapse after radiation therapy and how angiogenesis inhibitors can help in overcoming this phenomenon. It gives an overview of various angiogenesis inhibitors in pre-clinical as well as in clinical trials.
The review focuses on the beneficial effects of the combinatorial therapeutic approach of anti-angiogenesis therapy and radiation in tumor management.
放射疗法是一种广泛应用的方法,用于破坏癌细胞,但它也往往会引起肿瘤微环境的变化,并促进血管生成。放射疗法作为治疗癌症的单一手段,往往会触发血管生成途径,导致几种血管生成生长因子(如 VEGF、bFGF、PDGF 和血管生成素)的上调。这种不受控制的血管生成导致某些血管生成紊乱,如血管过度生长和肿瘤进展增加,这可能对患者构成严重威胁。
本综述强调了肿瘤微环境的各个组成部分、血管生成生长因子以及放射对肿瘤的生物学效应在促使复发方面的作用。它还描述了放射治疗后引发肿瘤复发的血管生成机制,以及血管生成抑制剂如何帮助克服这一现象。本文概述了临床前和临床试验中各种血管生成抑制剂的情况。
本综述重点介绍了抗血管生成治疗与放射相结合的治疗方法在肿瘤管理中的有益作用。