[1] LIU Y D, TANG G, QIAN F, et al. Astroglial connexins in neurological, neuropsychological disorders and radiation exposure [J]. Current Medicinal Chemistry, 2020, 27:1-18.
[2] Schöllnberger H, Eidemüller M, Cullings H M, et al. Dose-responses for mortality from cerebrovascular and heart diseases in atomic bomb survivors: 1950-2003 [J]. Radiation and Environmental Biophysics, 2018, 57(1): 17-29.
[3] Purbey P K, Scumpia P O, Kim P J, et al. Defined sensing mechanisms and signaling pathways contribute to the global inflammatory gene output elicited by ionizing radiation [J]. Immunity, 2017, 47(3): 421-434.
[4] Gajowik A, Dobrzyńska M M. The evaluation of protective effect of lycopene against genotoxic influence of X-irradiation in human blood lymphocytes [J]. Radiation and Environmental Biophysics, 2017, 56(4): 413-422.
[5] Das U, Biswas S, Sengupta A, et al. Ferulic acid (FA) abrogates ionizing radiation-induced oxidative damage in murine spleen [J]. Int J Radiat Biol, 2016, 92(12): 806-818.
[6] 徐艺箐,谭辉,马超英,等. 茸怡露口服液的抗辐射及免疫调节研究 [J]. 华西药学杂志, 2019, 34(01): 52-54.
[7] 王依朝,樊丽,王红霞,等.γH2AX、53BP1及RAD51焦点用于分析DNA双链断裂损伤[J].生物学杂志,2020,37(01):16-19.
[8] Tarrade S, Bhardwaj T, Flegal M, et al. Histone H2AX is involved in FoxO3a-Mediated transcriptional responses to ionizing radiation to maintain genome stability [J]. International Journal of Molecular Sciences, 2015, 16(12): 29996-30014.
[9] 张博,龚建平,张伟,等.γ-H2AX分析CT检查致人外周血淋巴细胞DNA损伤的临床研究[J].中华放射医学与防护杂志,2015,35(09):662-664.
[10] WANG S W, REN B X, QIAN F, et al. Radioprotective effect of epimedium on neurogenesis and cognition after acute radiation exposure [J]. Neuroscience Research, 2019, 145: 46-53.
[11] Etani R, Ojima M, Ariyoshi K, et al. Cellular kinetics of hematopoietic cells with Sfpi1 deletion are present at different frequencies in bone-marrow and spleen in X-irradiated mice [J]. Int J Radiat Biol, 2020, 96(9): 1119-1124.
[12] Radic T, Frieß L, Vijikumar A, et al. Differential postnatal of neuronal maturation markers in the dentate gyrus of mice and rats [J]. Frontiers in Neuroanatomy, 2017, 11: 104.
[13] MAO A, GUO H, LIU Y, et al. Exogenous melatonin modulates carbon ion radiation-induced immune dysfunction in mice [J]. Toxicology, 2019, 417: 35-41.
[14] CHENG C, YI J, WANG R, et al. Protection of spleen tissue of γ-ray irradiated mice against immunosuppressive and oxidative effects of radiation by adenosine 5'-monophosphate [J]. International Journal of Molecular Sciences, 2018, 19(5):1273.
[15] 仪丽荣,田梅,朴春南,等.丙二醇对预防5.5 Gy ~(60)Co γ射线全身照射小鼠辐射损伤的初步探讨 [J]. 中国辐射卫生, 2019, 28(01): 17-21.
[16] 徐俊杰,王珺,杨占群.山药多糖对低强度连续微波辐射小鼠免疫系统功能的影响 [J]. 上海中医药杂志, 2019, 53(11): 82-85.
[17] 白杨,张俊玲,姚丹,张江虹,等.西咪替丁对胸部分割照射小鼠脾脏损伤的治疗作用[J].中华放射医学与防护杂志,2020,30(03):178-182.
[18] 于纯淼,付佳琪,赵力松,等.不同剂量X射线全身照射对小鼠部分免疫器官的影响[J].实验动物与比较医学,2019,39(02):131-135.
[19] 李敏,赵领,刘真宏,等.川芎提取物对电离辐照损伤实验小鼠脾脏组织细胞凋亡相关蛋白表达的影响[J].中国药理学通报,2018,34(11):1544-1548.
[20] Turinetto V, Giachino C. Multiple facets of histone variant H2AX: a DNA double-strand-break marker with several biological functions [J]. Nucleic Acids Research, 2015, 43(5): 2489-2498.
[21] FENG Y L, XIANG J F, LIU S C, et al. H2AX facilitates classical non-homologous end joining at the expense of limited nucleotide loss at repair junctions [J]. Nucleic Acids Research, 2017, 45(18): 10614-10633.
[22] Weyemi U, Paul B D, Snowman A M, et al. Histone H2AX deficiency causes neurobehavioral deficits and impaired redox homeostasis [J]. Nature Communications, 2018, 9(1): 1526.
[23] YANG Z, WA Q D, LU C, et al. miR-328-3p enhances the radiosensitivity of osteosarcoma and regulates apoptosis and cell viability via H2AX [J]. Oncology Reports, 2018, 39(2): 545-553. |