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醋酸甲羟孕酮对卵巢癌CoCl/cDDP细胞增殖和耐药逆转的影响
引用本文:仲建新,曹新平,王迪,丁润生,姜胜华,张弘,江枫,姚微,王华,史锦云. 醋酸甲羟孕酮对卵巢癌CoCl/cDDP细胞增殖和耐药逆转的影响[J]. 南通医学院学报, 2006, 26(6): 441-442
作者姓名:仲建新  曹新平  王迪  丁润生  姜胜华  张弘  江枫  姚微  王华  史锦云
作者单位:南通大学附属医院妇产科,南通,226001
摘    要:目的探讨醋酸甲羟孕酮(MPA)对人卵巢卵巢癌耐药细胞株CoCl/cDDP细胞增殖和耐药逆转作用影响及机理.方法采用四甲基偶氮唑蓝法检测不同浓度MPA对CoCl/cDDP不同作用时间的细胞生长抑制率,以及MPA与顺铂(DDP)合用与单独应用时生长抑制率;采用流式细胞技术行细胞周期时相及凋亡分析.结果MPA明显抑制CoCl/cDDP细胞的增殖,抑制作用呈时间-剂量依赖性(P<0.01);MPA与DDP合用对CoCl/cDDP细胞的增殖抑制作用较单独应用时明显增强,且合用后G0/G1期、G2/M期细胞增加,而S期细胞减少凋亡率增高(P<0.01).结论MPA能明显抑制CoCl/cDDP细胞的生长,并能逆转细胞对顺铂的耐药性.

关 键 词:卵巢癌  醋酸甲羟孕酮  耐药  细胞周期  凋亡
文章编号:1000-2057(2006)06-0441-03
修稿时间:2006-09-18

Study of the inhibitory growth and reversing effect DDP resistance of medroxyprogesterone acetate on the ovarian cancer cell line CoC1/cDDP
ZHONG Jianxin,CAO Xinpin,WANG Di,et al. Study of the inhibitory growth and reversing effect DDP resistance of medroxyprogesterone acetate on the ovarian cancer cell line CoC1/cDDP[J]. ACTA Academiae Medicinae Nantong, 2006, 26(6): 441-442
Authors:ZHONG Jianxin  CAO Xinpin  WANG Di  et al
Abstract:Objective:To study the effect of medroxyprogesterone acetate (MPA) on the inhibitory growth and reversing DDP resistance in drug resistant epithelial ovarian carcinoma cell line in vitro.Methods:CoC1/cDDP cell,treated by different concentrations of MPA in different time course, were examined for the growing inhibiting rates with methyl thiazolyl tetrazolium(MTT);treated by MPA?DDP and MPA+DDP were estimated for the growing inhibiting rates by MTT;apoptosis percentage and cell cycle phase distribution were studied by flow cytometry(FCM).Results:CoC1/cDDP cell growing inhibiting rates by MPA were significantly different in dose-dependent and time-dependent manners(P<0.01).The inhibition effect of MPA combined with DDP was more obvious than either one used separately;the number of cells in G0/G1?G2/M phase was elevated,the number of cells in S phase was obviously decreased(P<0.01),the apoptotic rate rose after treatment by MPA combined with DDP?Conclusion:MPA can inhibit the growth of CoC1/cDDP cells and can reverse the tolerance of CoC1/cDDP cell lines to cisplatin.
Keywords:CoCl/CDDp
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