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家畜从饲料中摄取镉及其在畜产品中的分布。

Cadmium uptake from feed and its distribution to food products of livestock.

作者信息

Sharma R P, Street J C, Verma M P, Shupe J L

出版信息

Environ Health Perspect. 1979 Feb;28:59-66. doi: 10.1289/ehp.792859.

Abstract

Distribution of cadmium (Cd) into the edible products of three species of food-producing animals was investigated during long-term dietary administration of supplemental cadmium chloride. Cows were exposed to 0.2 (control), 2.4, and 11.3 ppm Cd on whole ration basis for a period of three months followed by a three-month period on control ration. No accumulation of Cd occurred in milk, muscle, or bone at any of the time periods. A dose-related increase of Cd was observed in liver and kidney. The Cd concentration in these organs showed a gradual rise even when the animals were given control ration for three months after an initial three-month exposure to Cd; this observation suggests a mobilization and redistribution of this metal from other tissues. Dietary Cd levels in swine rations were 0.2, 2.4, and 10.1 ppm. The highest level of Cd produced a slightly reduced growth rate in swine. No accumulation of Cd was observed in muscle, bone, or brain. Liver and kidney showed a treatment and time-related increase in cadmium values at 6 and 12 weeks on experiment. During a three-month depletion phase after an initial three months of Cd administration, no further change in liver and kidney Cd levels was observed. White Leghorn chickens were treated by administering 0.3, 1.9, and 13.1 ppm Cd in their diets for up to 6 months. No accumulation of Cd occurred in eggs or bones. A slight increase of Cd level was observed in chicken muscle after six months of exposure. Liver and kidney had the highest levels of Cd, which showed a dose and time-related increase in these organs. No depletion of liver and kidney Cd was seen during seven weeks following a six-week treatment period. In all three species, the kidney Cd levels were severalfold higher than those of liver at all dietary levels. In swine, the renal cortex and medulla had similar Cd concentration in control animals but in all animals exposed to supplemental Cd, a dramatic rise in Cd levels in renal cortex was observed. Medullary Cd did not show a proportional time and dose-related increase in Cd levels, although the levels showed some increase. In kidney and liver of all three species the Cd levels showed a positive correlation with the amount of Cd-binding protein in these tissues. Induced levels of this metal-binding protein may explain accumulation and persistence of Cd-residues in these organs. In all three species, the concentrations of renal Cd-binding protein increased at a rate greater than those in liver. Although the food-producing animals may act as an effective filter of Cd in the case of an environmental increase of this metal, consumption of visceral organs from such animals may pose a hazard. This is particularly critical since the daily intake of Cd in human diet is already estimated to exceed the tolerance limits suggested by WHO/FAO.

摘要

在长期通过饮食给予补充氯化镉的过程中,研究了镉(Cd)在三种产食用动物的可食用产品中的分布情况。奶牛在全日粮基础上分别暴露于0.2(对照)、2.4和11.3 ppm的镉中,为期三个月,随后再给予对照日粮三个月。在任何时间段,牛奶、肌肉或骨骼中均未出现镉的蓄积。在肝脏和肾脏中观察到镉与剂量相关的增加。即使在最初三个月接触镉后再给予动物三个月对照日粮,这些器官中的镉浓度仍呈逐渐上升趋势;这一观察结果表明这种金属从其他组织中动员和重新分布。猪日粮中的膳食镉水平分别为0.2、2.4和10.1 ppm。最高水平的镉使猪的生长速度略有降低。在肌肉、骨骼或大脑中未观察到镉的蓄积。在实验的第6周和第12周,肝脏和肾脏中的镉值呈现出与处理和时间相关的增加。在最初给予镉三个月后的三个月耗尽期内,肝脏和肾脏中的镉水平未观察到进一步变化。白来航鸡在其日粮中分别给予0.3、1.9和13.1 ppm的镉,为期6个月。鸡蛋或骨骼中未出现镉的蓄积。暴露6个月后,鸡肉中的镉水平略有增加。肝脏和肾脏中的镉含量最高,且在这些器官中呈现出与剂量和时间相关的增加。在为期6周的处理期后的7周内,未观察到肝脏和肾脏中镉的减少。在所有三种动物中,在所有膳食水平下,肾脏中的镉水平均比肝脏中的高出几倍。在猪中,对照动物的肾皮质和髓质中的镉浓度相似,但在所有暴露于补充镉的动物中,观察到肾皮质中的镉水平急剧上升。髓质中的镉水平虽然有所增加,但未呈现出与时间和剂量成比例的增加。在所有三种动物的肾脏和肝脏中,镉水平与这些组织中镉结合蛋白的量呈正相关。这种金属结合蛋白的诱导水平可能解释了镉残留物在这些器官中的蓄积和持久性。在所有三种动物中,肾脏中镉结合蛋白的浓度增加速度大于肝脏。尽管在环境中这种金属增加的情况下,产食用动物可能起到镉的有效过滤器的作用,但食用此类动物的内脏器官可能会带来危害。鉴于据估计人类饮食中镉的每日摄入量已经超过了世界卫生组织/联合国粮农组织建议

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