癌变·畸变·突变 ›› 2004, Vol. 16 ›› Issue (6): 321-323.doi: 10.3969/j.issn.1004-616x.2004.06.001

• 论著 •    下一篇

叶酸缺乏对BRCA1突变淋巴细胞株染色体损伤效应的影响

敖新宇, 梁子卿, 曹 能, 王晓燕, 何冬旭, 汪 旭   

  1. 云南师范大学生命科学学院, 云南 昆明 650092
  • 收稿日期:2004-02-28 修回日期:2004-04-12 出版日期:2004-11-30 发布日期:2004-11-30
  • 通讯作者: 汪 旭

The Effect of Folic Acid Deficiency on Chromosome Damage in Human BRCAL Mutation Lymphoblast Cell Line

AO Xin-yu, LIANG Zi-qing, CAO Neng, et al   

  1. The School of Life Sciences, Yunnan Normal University,Kunming 650092, China
  • Received:2004-02-28 Revised:2004-04-12 Online:2004-11-30 Published:2004-11-30
  • Contact: WANG Xu

摘要: 背景与目的:评价叶酸缺乏在BRCA1突变乳腺癌患者淋巴细胞株(GM13705)微核诱发效应,探询能将遗传物质损伤减少到最低程度的叶酸浓度。材料与方法: 在叶酸缺乏(6~240 nmol/L)条件下离体培养GM13705细胞株,利用细胞质分裂阻断微核技术(CBMN),分析双核细胞中的微核率。结果: 叶酸浓度在6 nmol/L 、60 nmol/L和120 nmol/L时,双核细胞微核率高于240 nmol/L及常规RPMI1640组,这3个测试组间未出现双核细胞微核率的显著差异; 240 nmol/L和常规RPMI1640组之间双核细胞微核率差异无统计学意义。结论: 在本试验条件下,240 nmol/L的叶酸是该细胞株防范遗传损伤的最低浓度,具有BRCA1突变的基因组对叶酸缺乏的胁迫作用敏感性似乎高于正常细胞。   

关键词: 叶酸, 细胞松弛素B阻断的微核分析(CBMN), 双核细胞, 微核

Abstract: BACKGROUND&AIM:The research evaluated the micronuclear induction effect by folic acid deficiency in human lymphoblast t(GM13705). The aim of the experiment was to find the optimized folic acid concentration of minimizing genomic damage in the employed cell line. MATERIAL AND METHODS:The experiment employed cytokinesis-block micronucleus assay(CBMN) to evaluate the frequencies of micronucleus induced by folic acid deficiency (6 ~240 nmol/L )in binucleated cell. RESULTS: The frequencies of micronucleated binucleated cell in 6, 60 and 120 nmol/L folic acid groups were significantly increased comparing with 240 nmol/L of folic acid and normal RPMI1640(P<0.05~0.001). But no significant differences were found among the three groups. There was no statistic significance was found between 240 nmol/L and normal RPMI1640 for their frequencies of micronucleated binucleated cell. CONCLUSION: 240 nmol/L of folic acid was able to minimize genetic damage of the tested cell line under the current experimental condition. The genome with BRCA1 mutation may be more sensitive to the stress of folic acid deficiency.

Key words: folic acid, CBMN, binucleated cell, micronucleus