实验动物接触镉后肝脏和肾脏功能状态的亚实验评估

D. A. Smolyankin, G. V. Timasheva, N. Khusnutdinova, S. S. Baygildin, E. F. Repina, A. Fazlyeva, M. Ziatdinova, Y. Valova
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引用次数: 0

摘要

本文报道了口服氯化镉2个月后大鼠血清代谢变化的研究结果。血清肝酶升高是镉中毒肝细胞损伤的主要指标。结果表明,3个实验组大鼠灌胃CdCl2后,天冬氨酸转氨酶、丙氨酸转氨酶和乳酸脱氢酶活性水平均较对照组显著升高;生化参数的平均增幅分别为31.8%、12.9%和21.9%。实验动物血清中碱性磷酸酶活性的降低,取决于污染物剂量的增加,这是重金属对胆管上皮损伤程度的结果。由于肾小球滤过受损,肾脏剖面生化参数尿酸和尿素水平升高。与阴性对照组(112,5±4,0 μmol/L)相比,实验组大鼠UA浓度下降22.3%,降至87,4±11,6 μmol/L,表明重金属引起泌尿系统的一般病理变化。肝脏和肾脏损伤的主要生化标志物指标的显示偏差作为一个可靠的论据,表征镉是一个明显的肝和肾毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ASSESSMENT OF THE FUNCTIONAL STATE OF THE LIVER AND KIDNEYS OF LABORATORY ANIMALS AFTER EXPOSURE TO CADMIUM IN A SUB-EXPERIMENT
The paper presents the results of studies of metabolic changes in the blood serum of rats on the background of oral administration of cadmium chloride for 2 months. Elevated serum hepatic enzymes are the main indicator of damage to hepatocytes caused by cadmium poisoning. It was shown that in three experimental groups of rats, which were intragastrically injected with CdCl2, the level of activity of aspartate aminotransferase, alanine aminotransferase and lactate dehydrogenase was significantly increased compared to the control; on average, the increase in biochemical parameters was 31.8%, 12.9% and 21.9%, respectively. A decrease in the alkaline phosphatase activity in the blood serum of experimental animals, depending on the increase in the dose of the pollutant, is a consequence of the degree of heavy metal damage to the epithelium of the bile ducts. High levels of biochemical parameters of the renal profile, uric acid (UA) and urea, due to impaired glomerular filtration are shown. The noted decrease in the concentration of UA (by 22,3 %) in the 1st experimental group of rats to the level of 87,4±11,6 μmol/L, relative to the negative control (112,5±4,0 μmol/L), indicates a general pathology of the urinary systems induced by heavy metal. The revealed deviations in the indicators of the main biochemical markers of liver and kidney damage serve as a reliable argument characterizing cadmium as a pronounced hepato- and nephrotoxicant.
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