Department of Oncology, Radiation Oncology Division, and Department of Biochemistry, Microbiology and Immunology, Barbara Ann Karmanos Cancer Institute, Wayne State University School of Medicine, Detroit, MI.
Semin Radiat Oncol. 2019 Jan;29(1):62-71. doi: 10.1016/j.semradonc.2018.10.002.
Soy isoflavones have demonstrated chemopreventive and anticancer properties in epidemiology and biological studies, in addition to their function as antioxidants in prevention of cardiovascular disease. We have explored the potential of soy isoflavones, as a safe biological approach, to enhance the efficacy of radiotherapy for local tumor control and limit normal tissue damage in solid tumors. This review presents studies investigating the interaction between soy isoflavones and radiation in different malignancies, including prostate cancer, renal cell carcinoma, and nonsmall cell lung cancer. Soy isoflavones were found to be potent sensitizers of cancer cells to radiation causing increased cell killing in vitro in human tumor cell lines and greater tumor inhibition in vivo in preclinical orthotopic murine tumor models. In the course of these studies, radioprotection of normal tissues and organs in the field of radiation was observed both in a clinical trial for prostate cancer and in preclinical models. The mechanisms of radiosensitization and radioprotection mediated by soy isoflavones are discussed and emphasize the role of soy isoflavones in increasing radiation effect on tumor and mitigating inflammatory responses induced by radiation in normal tissues. Soy isoflavones could be used as a safe, nontoxic complementary strategy that simultaneously increases radiation effectiveness on the malignancy while reducing damage in normal tissues in the field of radiation.
大豆异黄酮在流行病学和生物学研究中表现出化学预防和抗癌特性,除了作为抗氧化剂预防心血管疾病外。我们已经探索了大豆异黄酮作为一种安全的生物方法的潜力,以提高局部肿瘤控制的放射治疗效果,并限制实体瘤中正常组织的损伤。本综述介绍了研究大豆异黄酮与不同恶性肿瘤(包括前列腺癌、肾细胞癌和非小细胞肺癌)中放射治疗相互作用的研究。大豆异黄酮被发现是癌细胞对放射治疗的有效增敏剂,在体外人类肿瘤细胞系中导致细胞杀伤增加,在临床前原位小鼠肿瘤模型中导致肿瘤抑制增加。在这些研究过程中,在前列腺癌的临床试验和临床前模型中观察到放射防护对辐射领域的正常组织和器官的保护作用。讨论了大豆异黄酮介导的放射增敏和放射保护的机制,并强调了大豆异黄酮在增加肿瘤对辐射的效应和减轻正常组织中辐射诱导的炎症反应方面的作用。大豆异黄酮可用作一种安全、无毒的补充策略,同时提高恶性肿瘤的放射治疗效果,减少辐射领域正常组织的损伤。