Studies on the effect of long-term exposure to nitrogen dioxide on serum and liver proteins level and enzyme activity in guinea pigs.

M Drozdz, E Kucharz, K Ludyga, T Molska-Drozda
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Abstract

Forty male guinea pigs were exposed to nitrogen dioxide in a concentration of 2 mg/m3, 8 hours daily for a period of 180 days. Forty male animals were used as a control group. The following changes were found in intoxicated animals: the decrease of total protein and seromucoid concentration in blood serum and the decrease of total protein, perchloric acid-soluble proteins, protein-bound hexosamines and sialic acids content, in liver tissue. Electrophoretic examination of the serum proteins showed the increase of alpha 1- and beta 2-globulins and the decrease of albumin concentration. Changes in the level of glycoproteins fractions and protein-bound carbohydrates in blood serum were described also. Estimation of enzymes activity showed the decrease of alanine and aspartate transaminase activity in blood serum caused by the strong decrease of the cytoplasmic fraction of these enzymes. However the simultaneous increase of the mitochondrial fraction of transaminases activity was observed. The decrease of the activity of choline esterase was found also. Similar changes of enzymes activity were found in liver tissue. Histopathological studies were done for the further clearing the influenze of nitrogen dioxide on serum and liver proteins concentration and enzymes activity. It was found that after long-term exposure to nitrogen dioxide the destruction processes may be observed in the liver. The possible mechanism of the nitrogen dioxide-induced damage of protein metabolism is discussed.

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长期暴露于二氧化氮对豚鼠血清和肝脏蛋白水平及酶活性影响的研究。
40只雄性豚鼠暴露于浓度为2 mg/m3的二氧化氮中,每天8小时,持续180天。选取40只雄性动物作为对照组。中毒动物血清中总蛋白和血清黏液浓度降低,肝组织中总蛋白、高氯酸可溶性蛋白、蛋白结合己胺和唾液酸含量降低。血清蛋白电泳检查显示α 1-和β 2-球蛋白升高,白蛋白浓度降低。血清中糖蛋白组分和蛋白结合碳水化合物水平的变化也被描述。酶活性测定表明,血清中丙氨酸和天冬氨酸转氨酶活性下降是由于这些酶的细胞质部分明显减少所致。同时观察到线粒体转氨酶活性的增加。同时发现胆碱酯酶活性降低。肝组织中也发现了类似的酶活性变化。为进一步清除二氧化氮对血清和肝脏蛋白浓度和酶活性的影响,进行了组织病理学研究。研究发现,长期暴露于二氧化氮后,肝脏中可观察到这种破坏过程。讨论了二氧化氮诱导蛋白质代谢损伤的可能机制。
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