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首页> 外文期刊>Comparative clinical pathology >Metabolic and morphological disorientations in the liver and skeletal muscle of mice exposed to hexavalent chromium
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Metabolic and morphological disorientations in the liver and skeletal muscle of mice exposed to hexavalent chromium

机译:暴露于六价铬的小鼠肝脏和骨骼肌的代谢和形态念念

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摘要

Chromium exposure (10 mg/kg b.w/day for 30 days) produced hypoglycaemia in Swiss albino mice associated with increased glycogenolytic activity of hepatic and muscular tissue and suppressed glycolytic activity of the liver. Lactate dehydrogenase activity was decreased in hepatic tissue following exposure to chromium. Chromium significantly inhibited the activities of succinate dehydrogenase and NADH dehydrogenase in all the studied tissues. Moreover, suppressed malate dehydrogenase activity in chromium stressed muscle indicates less energy supply to that tissue, whereas its increased activity may aid substrates for gluconeogenesis in the liver. Chromium caused marked alteration in the liver and muscle protein contents and increased free amino acid nitrogen level. Proteolytic enzyme activities like trypsin, cathepsin and pronase were also significantly altered. Additionally, the transaminase enzyme activities were elevated in all the tissues after chromium exposure. A compensatory mechanism was initiated by inducing fatty acid synthase activity in hepatic tissue. The lipogenesis was enhanced in the liver which might involve the isocitrate dehydrogenase activity as well as overproduction of cholesterol and triglycerides. In response to these, the reverse transport of cholesterol from the blood to the liver was hampered due to less production of HDL cholesterol in chromium toxicity. Histopathological changes in the liver showed steatosis along with alteration in radiating pattern of hepatic cells in chromium treated mice. Additionally, skeletal muscle fibre degeneration was also evident. Over accumulation of chromium was noted in the studied tissues after chromium treatment at the present dose and duration. The study suggests potential threatening effect of hexavalent chromium on the liver and skeletal muscle metabolism.
机译:铬暴露(10mg / kg B.W / Day 30天)在瑞士白血菌小鼠中产生低血糖症,其与肝脏和肌肉组织的增加的糖溶解活性增加,并抑制肝脏的糖酵母活性。在接触铬后,肝组织中乳酸脱氢酶活性降低。铬显着抑制了所有研究组织中琥珀酸脱氢酶和NADH脱氢酶的活性。此外,抑制铬胁迫肌肉中的氏亚酸脱氢酶活性表明对该组织的能量供应较少,而其活性增加可能有助于肝脏中葡糖生成的底物。铬引起肝脏和肌肉蛋白质含量的改变,并增加游离氨基酸氮水平。胰蛋白酶,组织蛋白酶和扑灭等蛋白水解酶活性也显着改变。另外,在铬暴露后的所有组织中升高了转氨酶酶活性。通过在肝组织中诱导脂肪酸合成酶活性来引发补偿机制。在肝脏中增强了脂肪生成,这可能涉及异柠檬酸脱氢酶活性以及胆固醇和甘油三酯的过度生产。响应于这些,由于铬毒性较少生产HDL胆固醇的产量较少,胆固醇从血液中逆转胆固醇。肝脏中的组织病理学变化表现出脂肪变化以及铬处理小鼠中肝细胞的辐射模式的变化。另外,骨骼肌纤维变性也很明显。在本发明剂量和持续时间的铬处理后研究的组织中注意到铬的积累。该研究表明六价铬对肝脏和骨骼肌代谢的潜在威胁效果。

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