首页> 外文期刊>Environmental Toxicology and Chemistry >THE EFFECT OF FOOD RATIONS ON TISSUE-SPECIFIC COPPER ACCUMULATION PATTERNS OF SUBLETHAL WATERBORNE EXPOSURE IN CYPRINUS CARPIO
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THE EFFECT OF FOOD RATIONS ON TISSUE-SPECIFIC COPPER ACCUMULATION PATTERNS OF SUBLETHAL WATERBORNE EXPOSURE IN CYPRINUS CARPIO

机译:食物摄入量对鲤鱼次生水接触组织特定铜累积形态的影响

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Common carp (Cyprinus carpio) were fed to two different food rations, 0.5% body weight (low ration [LR]) and 5% body weight (high ration [HR]), and were exposed to sublethal (1 μM) copper levels for 28 d in softened Antwerp (Belgium) city tap water (Ca2+, 79.3 mg/L; Mg2+, 7.4 mg/L; Na+, 27.8 mg/L; pH 7.5–8.0). Copper accumulations in the liver, gills, kidney, anterior intestine, posterior intestine, and muscle were determined. Copper accumulation in the gills, liver, and kidney of LR fish was significantly higher than in HR fish. The only time copper uptake in HR fish was significantly higher than in LR fish was in the posterior intestine after two weeks of exposure. No difference was found between the two rations in the anterior intestine. Copper accumulation in the liver of both feeding treatments occurred in a time-dependent manner and did not reach steady state in any treatment. On the contrary, copper concentration in the gills reached a steady state for both HR and LR fish within the first week of exposure. No copper accumulation was found in muscle tissues of either treatment. Copper concentration dropped to control levels in all tissues, except liver tissue, two weeks after the exposure ended. Our studies indicated that copper uptake was influenced by the food ration in carp. The difference in copper accumulation probably is related to the amount of dietary NaCl and different rates of metallothionein synthesis. Low food availability provides less Na+ influx and leads to increased brachial uptake of Na+ and copper. In addition, it has been shown that starved animals show increased levels of metallothionein, possibly causing higher copper accumulation.
机译:将鲤鱼(Cyprinus carpio)喂食两种不同的食物配比,分别为0.5%体重(低比例[LR])和5%体重(高比例[HR]),并暴露于致死水平(1μM)的铜下,在安特卫普(比利时)城市自来水中(Ca2 +,79.3 mg / L; Mg2 +,7.4 mg / L; Na +,27.8 mg / L; pH 7.5-8.0)中放置28天。确定了肝脏,腮,肾脏,前肠,后肠和肌肉中的铜积累。 LR鱼的腮,肝和肾中的铜积累明显高于HR鱼。暴露两周后,HR鱼中的铜摄入量唯一一次高于LR鱼中的后肠摄入量。在前肠的两种口粮之间没有发现差异。两种喂养方法在肝脏中的铜积累均呈时间依赖性,在任何处理中均未达到稳态。相反,在暴露的第一周内,HR和LR鱼的the中铜浓度均达到稳定状态。在任一处理的肌肉组织中均未发现铜积累。暴露结束后两周,除肝脏组织外,所有组织的铜浓度均降至控制水平。我们的研究表明,铜的摄入量受鲤鱼摄食率的影响。铜积累的差异可能与饮食中NaCl的量和金属硫蛋白的合成速率不同有关。食物供应不足会导致Na +流入量减少,并导致臂间对Na +和铜的吸收增加。另外,已经表明饥饿的动物显示出金属硫蛋白水平升高,可能引起较高的铜积累。

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