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SDS,Cu^(2+)污染对蟾蜍蝌蚪的急性毒性及肝脏Na^+-K^+-AT-Pase活性的影响     被引量:5

Acute toxicity of SDS,Cu^(2+) pollution and its effect on Na^+-K^+-ATPase activity in the liver of Bufo gargarizans

文献类型:期刊文献

中文题名:SDS,Cu^(2+)污染对蟾蜍蝌蚪的急性毒性及肝脏Na^+-K^+-AT-Pase活性的影响

英文题名:Acute toxicity of SDS,Cu^(2+) pollution and its effect on Na^+-K^+-ATPase activity in the liver of Bufo gargarizans

作者:金叶飞[1];祝尧荣[1];韩丽[1]

机构:[1]绍兴文理学院生命科学学院

年份:2010

卷号:22

期号:1

起止页码:81

中文期刊名:浙江农业学报

外文期刊名:Acta Agriculturae Zhejiangensis

收录:CSTPCD、、北大核心2008、CSCD_E2011_2012、北大核心、CSCD

基金:绍兴市科技局计划项目(2008A34005)

语种:中文

中文关键词:铜;十二烷基硫酸钠;中华大蟾蜍蝌蚪;急性毒性;联合毒性;Na+-K+-ATP酶

外文关键词:copper; SDS; Bufo gargarizans; acute toxicity; joint toxicity; Na^+-K^+-ATPase

中文摘要:以中华大蟾蜍(Bufo gargarizans)蝌蚪为试验材料,采用联合指数相加法,研究了阴离子表面活性剂十二烷基硫酸钠(SDS)、重金属Cu2+对蟾蜍蝌蚪的急性毒性和联合毒性效应;并在急性毒性试验的基础上,研究了亚急性条件下SDS,Cu2+及其复合污染对蝌蚪肝脏Na+-K+-ATPase活性的影响。试验结果表明,SDS对蝌蚪的48,72,96h的半致死浓度(LC50)分别为27.38,26.45,25.57mg/L;Cu2+对蝌蚪的48,72,96h的半致死浓度(LC50)分别为0.475,0.323,0.285mg/L。SDS,Cu2+对蝌蚪的联合毒性作用48h内表现为毒性增强的协同效应,96h后表现为拮抗作用。蝌蚪在亚急性浓度的SDS,Cu2+条件下暴露4d后,SDS,Cu2+及复合污染均对蝌蚪肝脏的Na+-K+-ATPase活性产生明显影响,SDS,Cu2+复合污染在Na+-K+-ATPase水平上表现为一定的协同作用。

外文摘要:To investigate the effects of single or combined sodium dodecyl sulfate (SDS) and Cu^2+ pollution in Bufo gargarizans,the acute toxicity and joint toxicity tests of SDS,Cu^2+ and Na^+-K^+-ATPase activity in liver under the subacute toxicities of single or combined SDS and Cu^2+ were measured by using exposure experiment. The results showed that the LC50 of SDS for 48,72 and 96 h to Bufo gargarizans were 27.38,26.45 and 25.57 mg·L^-1,respectively,and the LC50 of Cu^2+ for 48,72 and 96 h were 0.475,0.323 and 0.285 mg·L^-1,respectively. The toxicity of Cu^2+ was higher than that of SDS. In addition,it also indicated that the joint toxicity of Cu^2+ and SDS was synergistic at 48 h but antagonistic at 96 h. The results also indicated that single or combined treatments with Cu^2+ and SDS could affect the Na^+-K^+-ATPase activity in liver of Bufo gargarizans,and the joint effect of the combined pollution on the Na^+-K^+-ATPase activity was synergistic.

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