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毒死蜱对非洲爪蟾两个发育阶段的生化影响。

Biochemical effects of chlorpyrifos on two developmental stages of Xenopus laevis.

作者信息

Richards Sean M, Kendall Ron J

机构信息

The Institute of Environmental and Human Health, Department of Environmental Toxicology, Texas Tech University, Lubbock 79409-1163, USA.

出版信息

Environ Toxicol Chem. 2002 Sep;21(9):1826-35.

Abstract

Abstract-The effects of a 96-h static exposure to chlorpyrifos were examined in two developmental stages of larval Xenopus laevis (premetamorph and metamorph). Measures of effect included mortality, deformity, cholinesterase (ChE) activity, and DNA and protein concentration. All parameters indicated that metamorphs were more sensitive than were premetamorphs. For larvae exposed as premetamorphs, the median lethal concentration and median effective concentration were 14.6 mg/L and 1.71 mg/L; for those exposed as metamorphs, values were 0.56 mg/L and 0.24 mg/L, respectively. Cholinesterase activity was the most sensitive biochemical parameter. Exposure to chlorpyrifos at 0.01 mg/L caused significant decreases in the ChE activity of metamorphs; 0.1 mg/L significantly decreased premetamorph ChE activity. Metamorph DNA was significantly decreased at 0.1 mg/L; premetamorph DNA was not reduced until exposure to 1.0 mg/L. Whole-body protein was the least sensitive biochemical measure of effect. Premetamorphs did not experience a reduction in protein concentrations. Metamorph protein concentration was significantly decreased at 1.0 mg/L. Based on current surface water data, the most sensitive effect would not have a high probability (< or = 4.2%) of occurring in the environment.

摘要

摘要——研究了毒死蜱对非洲爪蟾幼体两个发育阶段(前变态期和变态期)进行96小时静态暴露的影响。效应指标包括死亡率、畸形率、胆碱酯酶(ChE)活性以及DNA和蛋白质浓度。所有参数均表明,变态期幼体比前变态期幼体更敏感。对于前变态期暴露的幼体,半数致死浓度和半数有效浓度分别为14.6毫克/升和1.71毫克/升;对于变态期暴露的幼体,相应值分别为0.56毫克/升和0.24毫克/升。胆碱酯酶活性是最敏感的生化参数。暴露于0.01毫克/升的毒死蜱会导致变态期幼体的ChE活性显著下降;0.1毫克/升会显著降低前变态期幼体ChE活性。变态期幼体在0.1毫克/升时DNA显著下降;前变态期幼体直到暴露于1.0毫克/升时DNA才会降低。全身蛋白质是最不敏感的生化效应指标。前变态期幼体的蛋白质浓度没有降低。变态期幼体在1.0毫克/升时蛋白质浓度显著下降。根据当前地表水数据,最敏感的效应在环境中发生的概率不高(≤4.2%)。

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