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用铜盐处理的费希尔大鼠以及铜代谢天生异常的长-伊文斯肉桂色大鼠(LEC大鼠)中铜的胆汁排泄情况。

Biliary excretion of copper in Fischer rats treated with copper salt and in Long-Evans cinnamon (LEC) rats with an inherently abnormal copper metabolism.

作者信息

Sugawara N, Li D, Katakura M, Sugawara C

机构信息

Department of Public Health, School of Medicine, Sapporo Medical University, Japan.

出版信息

Biol Trace Elem Res. 1994 Oct-Nov;46(1-2):125-34. doi: 10.1007/BF02790073.

Abstract

Increased biliary Cu excretion was found in Fischer rats injected with Cu. The biliary Cu was located at the void (large-molecule region) and total (small-molecule region) volume of a Sephadex G-75 column. The most Cu was found in the total volume. The two Cu peaks comigrated with absorbance at 280 nm. Although the bile from Cu-untreated Fischer rats did not show Cu absorbance in the total volume, absorbance at 280 nm was also found in this region. Even though Long-Evans Cinnamon (LEC) rats deposited a gross amount of Cu (194.0 +/- 27.8 micrograms/g liver) in the liver, they conversely showed reduced Cu excretion into the bile. LEC bile did not show Cu absorbance but rather absorbance at 280 nm in the total volume. Therefore, it seems unlikely that the small molecules found in the Sephadex G-75 regulate biliary Cu excretion in Cu-loaded rats, although the molecules bind to Cu. When the bile from Cu-untreated Fischer and LEC rats was incubated with CuCl2 solution, the most Cu was recovered in the total volume of this column. Our results suggest that reduced biliary Cu excretion in LEC rats is not related to the small molecules, and that Cu cannot be excreted in the form of macromolecules in rats to decrease Cu from the Cu-loaded liver.

摘要

在注射了铜的Fischer大鼠中发现胆汁铜排泄增加。胆汁铜位于Sephadex G - 75柱的空体积(大分子区域)和总体积(小分子区域)。在总体积中发现的铜最多。两个铜峰在280 nm处与吸光度共迁移。尽管未用铜处理的Fischer大鼠的胆汁在总体积中未显示出铜吸光度,但在该区域也发现了280 nm处的吸光度。尽管Long - Evans Cinnamon(LEC)大鼠在肝脏中沉积了大量的铜(194.0±27.8微克/克肝脏),但它们相反地表现出胆汁中铜排泄减少。LEC大鼠的胆汁在总体积中未显示出铜吸光度,而是显示出280 nm处的吸光度。因此,尽管这些分子与铜结合,但Sephadex G - 75中发现的小分子似乎不太可能调节铜负荷大鼠的胆汁铜排泄。当未用铜处理的Fischer大鼠和LEC大鼠的胆汁与氯化铜溶液孵育时,在该柱的总体积中回收的铜最多。我们的结果表明,LEC大鼠胆汁铜排泄减少与小分子无关,并且铜不能以大分子形式在大鼠中排泄以降低铜负荷肝脏中的铜含量。

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