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大鼠对食物或饮用水中低浓度镉的吸收及组织分布情况。

Cadmium absorption and tissue distribution in rats provided low concentrations of cadmium in food or drinking water.

作者信息

Buhler D R, Wright D C, Smith K L, Tinsley I J

出版信息

J Toxicol Environ Health. 1981 Jul-Aug;8(1-2):185-97. doi: 10.1080/15287398109530062.

Abstract

Tissue Cd levels were determined 1, 2, 4, 8, and 12 wk after weanling rats were provided with food or water containing 1-1000 ng/g Cd as 109CdCl2. No differences in growth rate or organ weight were observed over the concentration range tested. Kidney accumulated the highest concentration of Cd, followed by liver with values one-third to one-fourth those found in the kidney. Liver, however, accounted for 35-55% of the total body burden, while kidney contained only 35-45%. Cd concentrations in the various tissues increased with time and the Cd concentration of the food or water. The percentage of the ingested dose absorbed in a given time was relatively constant over the tested Cd concentration range. However, for each metal concentration, the percent of Cd absorbed decreased with exposure time. Regression analysis established that female rats accumulated Cd at a higher rate and retained a greater percentage of the ingested Cd than did male rats and that tissue concentrations were higher in rats exposed to Cd in the water. The differences in tissue Cd levels are probably related to proportionally higher metal intake by females and to higher intake from water than food at equivalent concentrations. It is uncertain whether the greater retention of ingested Cd by females is due to more efficient absorption or a reduced rate of excretion of the metal.

摘要

给断奶大鼠提供含1 - 1000 ng/g Cd(以109CdCl2形式)的食物或水后1、2、4、8和12周,测定组织中的镉含量。在所测试的浓度范围内,未观察到生长速率或器官重量有差异。肾脏积累的镉浓度最高,其次是肝脏,其值为肾脏中镉浓度的三分之一到四分之一。然而,肝脏占全身镉负荷的35% - 55%,而肾脏仅含35% - 45%。各组织中的镉浓度随时间以及食物或水中的镉浓度增加而升高。在测试的镉浓度范围内,给定时间内摄入剂量的吸收百分比相对恒定。然而,对于每种金属浓度,镉的吸收百分比随暴露时间降低。回归分析表明,雌性大鼠积累镉的速率更高,摄入的镉保留的百分比比雄性大鼠更高,并且在水中接触镉的大鼠组织浓度更高。组织镉水平的差异可能与雌性大鼠成比例更高的金属摄入量以及在同等浓度下从水中摄入的量高于从食物中摄入的量有关。尚不确定雌性大鼠对摄入镉的更大保留是由于更有效的吸收还是金属排泄速率降低。

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