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首页> 外文期刊>Journal of applied toxicology >Exposure of Rana ridibunda to lead II. Impact of lead on various parameters of liver metabolism of the frog Rana ridibunda.
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Exposure of Rana ridibunda to lead II. Impact of lead on various parameters of liver metabolism of the frog Rana ridibunda.

机译:Rana ridibunda暴露于铅II。铅对青蛙蛙蛙肝脏代谢各个参数的影响。

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摘要

There are no data at present on the impact of lead (Pb) on amphibian metabolism, although declines of amphibian populations due to man-made changes in the environment have been recorded in recent years. We studied the impact of Pb on the liver metabolism of the frog Rana ridibunda by measuring the hepatic levels of glycogen, lactate, total fat, protein and glucose. Liver is one of the primary target organs of Pb bioaccumulation. Frogs were exposed for 4, 10 and 30 days to 14 mg l(-1) of Pb (in the form of Pb(NO(3))(2) dissolved in water) and compared with matched controls. The level of glycogen in the liver increased until day 30. The increase of the metabolite was time-dependent because there was a positive correlation (r = 0.994, P = 0.006) between glycogen concentration and the days of Pb exposure. Lactate concentration declined continuously up to day 30. Liver fat content decreased from day 10 to day 30. Protein concentration declined continuously until day 30. Glucose concentration increased up to day 30. Glycogen concentration was correlated negatively with liver fat content (r = -0.474, P = 0.005), liver protein content (r = -0.562, P = 0.0004) and lactate concentration (r = -0.472, P = 0.005), whereas it was correlated positively with the Pb burden of the liver (r = 0.578, P = 0.0005). The frog appeared to face a metabolic stress over the 30 days of Pb exposure, without being able to control it. We concluded that the increase of liver glycogen concentration was due to gluconeogenesis via lactate and lipolysis. Further experimentation on key gluconeogenic and lipolytic enzymes over the 30 days of Pb exposure would elucidate the mechanisms that may lead to such phenomena. Copyright 2001 John Wiley & Sons, Ltd.
机译:尽管近年来已记录到铅(Pb)对两栖动物代谢的影响,但由于人为环境变化导致两栖动物种群减少,但目前尚无数据。我们通过测量肝中糖原,乳酸盐,总脂肪,蛋白质和葡萄糖的水平,研究了铅对青蛙蛙蛙肝脏代谢的影响。肝脏是铅生物蓄积的主要靶器官之一。将青蛙暴露于14 mg l(-1)的Pb(以溶于水中的Pb(NO(3))(2)形式)暴露4天,10天和30天,并与匹配的对照组进行比较。肝脏中的糖原水平一直持续到第30天。代谢物的增加是时间依赖性的,因为糖原浓度与Pb暴露天数呈正相关(r = 0.994,P = 0.006)。直到第30天,乳酸浓度持续下降。从第10天到第30天,肝脏脂肪含量下降。直到第30天,蛋白质浓度不断下降。直到第30天,葡萄糖浓度增加。糖原浓度与肝脂肪含量呈负相关(r = -0.474) ,P = 0.005),肝蛋白含量(r = -0.562,P = 0.0004)和乳酸浓度(r = -0.472,P = 0.005),而与肝脏的Pb负相关(r = 0.578, P = 0.0005)。青蛙在暴露于铅的30天中似乎要面对新陈代谢的压力,无法控制它。我们得出的结论是,肝糖原浓度的增加是由于通过乳酸和脂解作用引起的糖异生。在铅暴露的30天中,对关键的糖原异生性和脂肪分解酶的进一步实验将阐明可能导致这种现象的机制。版权所有2001 John Wiley&Sons,Ltd.

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