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锯缘青蟹(Scylla serrata)特定组织中氧化代谢对镉毒性的响应变化。

Changes in oxidative metabolism in selected tissues of the crab (Scylla serrata) in response to cadmium toxicity.

作者信息

Reddy P S, Bhagyalakshmi A

机构信息

School of Life Sciences, Pondicherry University, India.

出版信息

Ecotoxicol Environ Saf. 1994 Dec;29(3):255-64. doi: 10.1016/0147-6513(94)90002-7.

Abstract

Changes in oxidative metabolism were studied in hepatopancreas, muscle, and hemolymph of the edible crab Scylla serrata, exposed to a sublethal concentration (2.5 ppm) of cadmium chloride. A significant decrease in glycogen, total carbohydrates, and pyruvate and an increase in lactate levels in hepatopancreas and muscle were observed. Hemolymph sugar levels were increased in experimental crabs. An increase in phosphorylase suggested increased glycogenolysis during cadmium toxicity. The decrease in lactate dehydrogenase activity and the increase in lactate content indicated reduced mobilization of pyruvate into the citric acid cycle. Krebs cycle enzymes such as succinate dehydrogenase and malate dehydrogenase were found to be decreased, suggesting impairment of mitochondrial oxidative metabolism as a consequence of cadmium toxicity. Glucose-6-phosphate dehydrogenase activity was increased, suggesting enhanced oxidation of glucose by the HMP pathway. Cytochrome-c oxidase and Mg2+ ATPase activity levels decreased, indicating impaired energy synthesis during cadmium stress. Acid and alkaline phosphatase activities increased, suggesting enhanced breakdown of phosphates to release energy in view of impaired ATPase system during cadmium exposure. A significant decrease in protein and free amino acid and an increase in ammonia, urea, and glutamine levels were observed in the tissues during exposure. An increase in protease, alanine aminotransaminase, and aspartate aminotransaminase suggested increased proteolysis and transamination of amino acids. The increase in glutamate dehydrogenase, AMP deaminase, and adenosine deaminase indicated increased ammonia production. The increased arginase and glutamine synthetase suggested the detoxification or mobilization of ammonia toward the production of urea and glutamine. These results suggest that cadmium affects oxidative metabolism and induces hyperammonemia, and crabs switch over their metabolic profiles toward compensatory mechanisms for the survivability in cadmium-polluted habitats.

摘要

研究了食用蟹锯缘青蟹暴露于氯化镉亚致死浓度(2.5 ppm)时,其肝胰腺、肌肉和血淋巴中的氧化代谢变化。观察到肝胰腺和肌肉中的糖原、总碳水化合物、丙酮酸显著减少,乳酸水平增加。实验蟹的血淋巴糖水平升高。磷酸化酶增加表明镉毒性期间糖原分解增加。乳酸脱氢酶活性降低和乳酸含量增加表明丙酮酸进入柠檬酸循环的动员减少。发现琥珀酸脱氢酶和苹果酸脱氢酶等三羧酸循环酶减少,表明镉毒性导致线粒体氧化代谢受损。葡萄糖-6-磷酸脱氢酶活性增加,表明磷酸戊糖途径增强了葡萄糖的氧化。细胞色素c氧化酶和Mg2+ATP酶活性水平降低,表明镉胁迫期间能量合成受损。酸性和碱性磷酸酶活性增加,表明鉴于镉暴露期间ATP酶系统受损,磷酸盐分解增强以释放能量。暴露期间组织中蛋白质和游离氨基酸显著减少,氨、尿素和谷氨酰胺水平增加。蛋白酶、丙氨酸转氨酶和天冬氨酸转氨酶增加表明氨基酸的蛋白水解和转氨作用增加。谷氨酸脱氢酶、AMP脱氨酶和腺苷脱氨酶增加表明氨生成增加。精氨酸酶和谷氨酰胺合成酶增加表明氨向尿素和谷氨酰胺生成的解毒或动员。这些结果表明,镉会影响氧化代谢并诱导高氨血症,蟹类会改变其代谢模式以形成补偿机制,从而在镉污染的栖息地中生存。

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