Huang Shuo-guo, Kong Bei-hua, Ma Yu-yan, Jiang Sen
Department of Obstetrics and Gynecology, Qilu Hospital of Shandong University, Jinan 250012, P. R. China.
Ai Zheng. 2002 Aug;21(8):863-7.
BACKGROUND & OBJECTIVE: The drug-resistance and metastasis in early stages of human malignant ovarian neoplasm have significant effect on chemotherapy of human ovarian carcinoma. The objective of this study was to explore the impact of arsenic trioxide(As2O3) on proliferation and metastasis of drug-resistant human epithelial ovarian carcinoma cell line 3AO/cDDP, in order to treat human ovarian carcinoma thoroughly.
The growing inhibiting rates of drug-resistant human ovarian carcinoma cell line 3AO/cDDP by various concentrations of As2O3 in different time course were studied by methyl thiazolyl tetrazolium (MTT) method; Apoptosis percentage, cell cycle phase distribution and expressions of Fas, N-myc, nm23H1 and MTA1 gene were estimated by flow cytometry (FCM); 3AO/cDDP cells apoptosis phenotype was observed by transmissional electron microscopy.
3AO/cDDP cell growing inhibiting rates by As2O3 were significantly different in dose-dependent and time-dependent manners(P < 0.05); Within a certain concentration range, 3AO/cDDP apoptosis inducing rates by As2O3 were dose- and time-dependent, and the most appropriate concentration was 3.0 mumol/L. Lower concentrations of As2O3 perturbed cell progressing through S/G2 phase, while higher concentrations selectively induced S phase cells apoptosis; As2O3 up-regulated Fas and nm23H1 gene expressions, but down-regulated N-myc and MTA1 gene expressions. Morphological observation indicated that As2O3 inducing 3AO/cDDP death characterized by apoptotic phenotype.
As2O3 could influence the capacity of growth and proliferation of drug-resistant human ovarian carcinoma cell line and its mechanism could be positively and negatively related with Fas, nm23H1 gene and N-Myc, MTA1 gene expressions.
人恶性卵巢肿瘤早期的耐药性及转移对人卵巢癌化疗有显著影响。本研究旨在探讨三氧化二砷(As2O3)对耐药人上皮性卵巢癌细胞系3AO/cDDP增殖和转移的影响,以期彻底治疗人卵巢癌。
采用甲基噻唑基四氮唑(MTT)法研究不同浓度As2O3在不同时间进程对耐药人卵巢癌细胞系3AO/cDDP的生长抑制率;通过流式细胞术(FCM)检测凋亡率、细胞周期分布及Fas、N-myc、nm23H1和MTA1基因的表达;用透射电子显微镜观察3AO/cDDP细胞凋亡表型。
As2O3对3AO/cDDP细胞的生长抑制率呈剂量和时间依赖性,差异有统计学意义(P < 0.05);在一定浓度范围内,As2O3诱导3AO/cDDP凋亡率呈剂量和时间依赖性,最适宜浓度为3.0 μmol/L。较低浓度的As2O3使细胞通过S/G2期受阻,而较高浓度则选择性诱导S期细胞凋亡;As2O3上调Fas和nm23H1基因表达,但下调N-myc和MTA1基因表达。形态学观察表明,As2O3诱导3AO/cDDP死亡具有凋亡表型特征。
As2O3可影响耐药人卵巢癌细胞系的生长增殖能力,其机制可能与Fas、nm23H1基因及N-Myc、MTA1基因表达的正负调控有关。