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作 者:黄鹂[1,2] 刘敬佳[1,2] 杜立法[1,2] 曲昂[1,2] 赵勇[3] 王俊杰[1,2] 张建国[4] 张杰[4]
机构地区:[1]北京大学第三医院肿瘤治疗中心 [2]北京大学近距离治疗中心,北京100191 [3]中国科学院动物研究所生物膜与膜生物工程国家重点实验室,北京100101 [4]北京大学口腔医院口腔颌面外科,北京100081
出 处:《癌症进展》2015年第1期69-73,共5页Oncology Progress
摘 要:目的探讨125I粒子持续低剂量率照射与分次照射、单次照射对人喉鳞癌细胞Hep2的抑制作用及其作用机制。方法实验分为无照射对照组(Ctrl组)、单次照射组(SDR组)、分次照射组(FDR组)和125I粒子持续低剂量率照射组(125I-CLDR组)四组。采用细胞克隆形成实验法检测Hep2细胞在不同照射条件下细胞克隆的形成能力;用流式细胞仪检测细胞凋亡和细胞周期阻滞情况;用蛋白印迹法检测不同照射条件后Hep2细胞总γ-H2AX、Cyclin B1、Caspase3蛋白表达的变化。结果经2 Gy、4 Gy、6 Gy的剂量照射,125I-CLDR组Hep2细胞克隆形成率均低于SDR组和FDR组。经4 Gy的剂量照射后,125I-CLDR组Hep2细胞出现G2/M期阻滞,且阻滞效应较SDR组及FDR组的细胞强;125I-CLDR组Hep2细胞的凋亡比例明显高于SDR组及FDR组;三个照射组γ-H2AX、Cyclin B1、Caspase3、NF-κB、P21和Cdk1的表达水平上调,125I-CLDR组p-Cdc25c蛋白表达水平低于SDR组和FDR组。结论在本实验条件下,125I粒子持续低剂量率照射较单次照射、分次照射能够诱发更多Hep2细胞出现DNA损伤、引起持续的G2/M期阻滞、诱导细胞凋亡并抑制细胞的再增殖。Objective To investigate the inhibition effects of different irradiation methods on the proliferation of Hep2, which is the human laryngeal squamous carcinoma cell line, and the corresponding mechanisms. Method Four groups of patients receiving different irradiations were compared in our experiment, which were non-radiation control group (Ctrl), high dose rate single dose radiation group (SDR), high dose rate fractionated dose radiation group (FDR), and iodine-125 seeds continuous low dose rate radiation group (125^I-CLDR), respectively. Colony forma-tion assay was used to determine the radiosensitivity of Hep2 cells to each radiation, and flow cytometry was applied for detecting cell apoptosis and cell cycle arrest, while the protein expression levels of γ-H2AX, CyclinB1 and Cas-pase3 were detected with Western blot. Result The capability of clone formation of Hep2 cells after 2 Gy, 4 Gy, 6 Gy irradiation was lower in 125^I-CLDR group compare with SDR and FDR group. After 4 Gy irradiation, 125^I-CLDR induced the most significant Hep2 cells arrest effect of G2/M among the three groups. And the highest cell apoptosis proportion was seen in 125^I-CLDR group either. The expression levels of γ-H2AX, CyclinB1, Caspase3, NF- κB, P21 and Cdk1 increased among three treatment groups. While p-Cdc25c expressed the least in 125^I-CLDR group. Conclu-sion In the context of this study, 125^I-CLDR obviously reduces cellular DNA repair capacity, induces cell apoptosis and G2/M arrest, and inhibits cell reproliferation.
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