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应用单细胞凝胶电泳研究甲醛的发育毒性(简报)
引用本文:王博,刘丹丹.应用单细胞凝胶电泳研究甲醛的发育毒性(简报)[J].分子细胞生物学报,2006,39(5):462-466.
作者姓名:王博  刘丹丹
作者单位:华中师范大学生命科学学院环境科学实验室,华中师范大学生命科学学院环境科学实验室 武汉 430079,武汉 430079
基金项目:国家自然基金面上项目(No.30570799)。
摘    要:甲醛(HCHO)属于高挥发性极易溶于水的小分子醛类化合物,是人们日常生活中经常接触的一种空气污染物。甲醛可以引起各种相关疾病,2004年已被世界卫生组织提升为AI类化合物——人类致

关 键 词:甲醛  发育毒性  母体毒性  单细胞凝胶电泳
收稿时间:2006-01-18
修稿时间:2006-07-05

DETECTION OF FORMALDEHYDE INDUCED DEVELOPMENTAL TOXICITY ASSESSED WITH SINGLE CELL GEL ELECTROPHORESIS
WANG Bo,LIU Dan Dan.DETECTION OF FORMALDEHYDE INDUCED DEVELOPMENTAL TOXICITY ASSESSED WITH SINGLE CELL GEL ELECTROPHORESIS[J].Journal of Molecular Cell Biology,2006,39(5):462-466.
Authors:WANG Bo  LIU Dan Dan
Institution:College of Life Sciences,Central China Normal University, Wuhan 430079
Abstract:To understand the developmental toxicity and the maternal toxicity of formaldehyde (FA),pregnant mice were injected celiac with FA,from the 6th day to the 19th day after the pregnancy. After the birth of fetal mice, the single cell gel electrophoresis (SCGE) was applied to test the DNA damage in liver cells of the maternal mice and of the fetal mice. The experimental results obtained from fetal mice indicate that FA does not induce DNA damage at the low concentration (0.2 mg/kg,P>0.05),while it could induce DNA breakage at higher concentration as 1.0 mg/kg (P< 0.01). Moreover, DPC(DNA-protein crosslinks) was also initiated at the concentration as 2.0 mg/kg (P>0.05). When the concentration was up to 20.0mg/kg, almost all of the DNA is completely joined to form DPC (P>0.05).The experimental results of pregnant mice indicate that DNA breakage could initiate at relatively low concentration (0.2 mg/kg). Meanwhile, the damage effect was obviously enhanced with the increasing of concentrations (1.0 mg/kg, P<0.01; 2.0 mg/kg, P<0.01; 20.0 mg/kg, P<0.01). No significant increase in DPC formation was observed in pregnant mice,indicating that of all the concentrations of FA tested in the experiment,the DNA damage mainly attributes to DNA breakage. These results suggested that FA has both the maternal toxicity and the developmental toxicity.
Keywords:Formaldehyde  Developmental toxicity  Maternal toxicity  Single cell gel electrophoresis  
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