a Department of Mechanical Engineering , Texas Tech University , Lubbock , TX , USA.
b Department of Nutritional Sciences , Texas Tech University , Lubbock , TX , USA.
Int J Radiat Biol. 2019 Apr;95(4):506-515. doi: 10.1080/09553002.2018.1484194. Epub 2018 Jul 2.
Recently, new studies have brought to light the potential risks of low dose radiation (LDR) in cancer. In this review, we discuss in detail the detrimental effects of LDR in some model organisms and animal models, as well as potential risks to human beings from some routine medical screening procedures. Furthermore, cellular mechanisms by which LDR exerts its negative effects like endoplasmic reticulum stress, epigenetic changes and microRNAs are also reviewed. A few studies are discussed that have reported some benefits of LDR through changes in energy metabolism. Lastly, we focus on breast cancer, one of the predominant forms of cancer potentially affected by LDR and some of the benefits of n-3 polyunsaturated fatty acids (PUFA) as dietary compounds that offer protection against radiation effects on cancer cells and cancer progression.
Overall, LDR exerts mainly damaging effects through diverse cell and molecular mechanisms, with a few beneficial effects reported. In some cancers, surrounding adipose tissue of the breast may contribute to obesity-related cancer. Further, preclinical data suggest that anti-inflammatory dietary compounds such as PUFA and other dietary interventions may protect against radiation effects on cancer cells and cancer progression.
最近,一些新的研究揭示了低剂量辐射(LDR)在癌症方面的潜在风险。在这篇综述中,我们详细讨论了 LDR 在一些模式生物和动物模型中产生的有害影响,以及一些常规医疗筛查程序对人类可能产生的潜在风险。此外,还讨论了 LDR 通过内质网应激、表观遗传改变和 microRNAs 等细胞机制产生负面影响的潜在机制。有一些研究报告称,通过改变能量代谢,LDR 可能会带来一些益处。最后,我们重点关注乳腺癌,这是一种主要的癌症形式,可能会受到 LDR 的影响,以及 n-3 多不饱和脂肪酸(PUFA)等膳食化合物的一些益处,这些化合物可以提供针对辐射对癌细胞和癌症进展的影响的保护。
总的来说,LDR 通过多种细胞和分子机制主要产生破坏作用,只有少数有益作用的报道。在某些癌症中,乳房周围的脂肪组织可能与肥胖相关的癌症有关。此外,临床前数据表明,抗炎性膳食化合物如 PUFA 和其他膳食干预措施可能有助于预防辐射对癌细胞和癌症进展的影响。