
1. (苏州大学医学部放射医学与防护学院 江苏省放射医学与防护重点实验室 ),苏州,215123
扫 描 看 全 文
葛杨杨 谷 庆 刘 静 葛 欣 唐益庭 罗居东 陈光烈 张舒羽 曹建平. 表没食子儿茶素没食子酸酯对人皮肤HaCat细胞的辐射保护作用[J]. 辐射研究与辐射工艺学报, 2013,31(3):2-030201.
用四甲基偶氮唑盐(MTT)比色法检测不同浓度EGCG处理HaCat细胞24、48和72 h的生长变化,确定EGCG的最适作用浓度;将细胞分为对照组、EGCG单独处理组、X射线单独照射组、EGCG联合X射线照射组,克隆形成实验检测EGCG对HaCat细胞的辐射保护作用;DCFH-DA检测细胞内ROS变化;Annexin V-FITC检测细胞凋亡的变化;DNA片段分析出现凋亡的片段;流式细胞术检测细胞周期变化。结果表明,EGCG在0-50 μmol/L浓度范围内可刺激 HaCat细胞增殖,高浓度则抑制生长,其效应呈时间依赖性;50μmol/L的EGCG能提高放射后HaCat细胞的克隆形成率;EGCG能抑制X射线诱导的细胞凋亡,与单纯照射组相比,药物+照射组凋亡率由9.25%降至7.82%,能抑制X射线诱导的凋亡片段;相比于单纯照射组,EGCG降低了X射线诱导的HaCat细胞G2/M期阻滞。提示EGCG对人皮肤HaCat细胞具有辐射保护作用;EGCG可能通过抑制X射线引起的ROS,从而抑制细胞凋亡及降低辐射诱导的细胞G2/M期阻滞发挥辐射保护作用。
The radioprotecting effects of EGCG on Human HaCat cells of epidermal keratinocytes irradiated by X rays were investigated. MTT assays were used to evaluate the impact of different concentrations of EGCG on HaCat cells for 24, 48 and 72 h to find the optimal concentration. HaCat cells were divided into four groups: control, EGCG treatment, X-ray exposure, and EGCG combined with X-ray. Cell survival rates were analyzed by clonogenic assays. The changes in ROS were measured by the DCFH-DA method, and cell apoptosis was detected with the Annexin V-FITC cell apoptosis kit and the apoptotic fragments were analyzed with DNA fragment analysis. Flow cytometry was employed to analyze cell-cycle progression. An increase of HaCat cell numbers was observed after the HaCat cells were treated with EGCG at 0-50 μmol/L, showing a time-dependent manner, while a high concentration of EGCG inhibiting HaCat cell growth. EGCG (50 μmol/L) increased the cloning efficiency of HaCat cells after radiation. EGCG reduced the apoptosis of HaCat cells by X-ray irradiation, compared with single radiation group, the apoptosis rates of the medicine and radiation group decreased from 9.25% to 7.82%; EGCG reduced the apoptosis fragments of HaCat cells by X-ray irradiation compared with the single radiation group. The G2/M phase arrest population of HaCat cells decreased after X-ray radiation, which was induced by the EGCG pretreatment. EGCG can protect HaCat cells during radiation. Radioprotection of EGCG for the cells from apoptosis is associated with its inhibition of ROS induced by radiation, meanwhile, the decrease of radiation-induced G2/M phase arrest may be involved.Cited
表没食子儿茶素没食子酸酯人皮肤HaCat细胞活性氧辐射防护细胞凋亡细胞周期
EGCGHuman HaCat cellReactive oxygen speciesRadioprotecting effectApoptosisCell cycle
0
浏览量
1
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621