Department of Radiation Oncology, University of Cincinnati, Cincinnati, OH 45219.
College of Medicine, University, of Cincinnati College of Medicine, Cincinnati, OH, 45267.
Crit Rev Oncog. 2022;27(2):73-84. doi: 10.1615/CritRevOncog.2022044635.
The application of radiotherapy to the treatment of cancer has existed for over 100 years. Although its use has cured many, much work remains to be done to minimize side effects, and in-field tumor recurrences. Resistance of the tumor to a radiation-mediated death remains a complex issue that results in local recurrence and significantly decreases patient survival. Here, we review mechanisms of radioresistance and selective treatment combinations that improve the efficacy of the radiation that is delivered. Further investigation into the underlying mechanisms of radiation resistance is warranted to develop not just novel treatments, but treatments with improved safety profiles relative to current radiosensitizers. This review is written in memory and honor of Dr. Peter Stambrook, an avid scientist and thought leader in the field of DNA damage and carcinogenesis, and a mentor and advocate for countless students and faculty.
放射治疗在癌症治疗中的应用已经有 100 多年的历史了。尽管它已经治愈了许多患者,但仍有许多工作要做,以尽量减少副作用和场内肿瘤复发。肿瘤对辐射介导的死亡的抵抗仍然是一个复杂的问题,导致局部复发,并显著降低患者的生存率。在这里,我们回顾了放射抵抗的机制和选择性治疗组合,这些组合提高了放射治疗的疗效。进一步研究放射抵抗的潜在机制是必要的,不仅要开发新的治疗方法,还要开发相对于目前的放射增敏剂具有更好安全性的治疗方法。本综述是为了纪念彼得·斯坦布鲁克博士而写的,他是 DNA 损伤和癌变领域的一位热衷于科学研究的思想家和领军人物,也是无数学生和教师的导师和拥护者。