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对体内摄入75硒的大鼠进行的代谢研究,该75硒被掺入鱼肌肉中。

Metabolic studies in rats of 75Se incorporated in vivo into fish muscle.

作者信息

Richold M, Robinson M F, Stewart R D

出版信息

Br J Nutr. 1977 Jul;38(1):19-29. doi: 10.1079/bjn19770057.

Abstract
  1. [75Se]selenite of [75Se]selenomethionine was injected in to the coelomic cavity of fish. After 2 d or 14 d the muscle portion of the fish was removed and homogenized. The long-term fate in rats of an oral dose of each labelled homogenate was compared with that of an oral dose of [75Ee]selenite or [75Se]selenomethionine mixed with unlabelled fish homogenate. 2. Urinary and faecal radioactivity were measured during the 1st week and whole-body radioactivity was determined for 10 weeks. Rats were killed at weekly intervals for 4 weeks for analysis of tissue distribution of 75Se. 3. Intestinal absorption of 75Se given as labelled fish homogenate was less complete than that of 75Se mixed with unlabelled homogenate, and the absorption of 75Se from the 14 d-labelled fish homogenate derived from [75Se]selenite was less complete than that of 75Se from the other labelled homogenates. 4. Urinary excretion of absorbed 75Se in the first 7 d was in the range 5--8% absorbed dose and was slightly greater in the rats given 75Se as selenite or derived from selenite than in those given 75Se as selenomethionine or derived from selenomethionine. Endogenous faecal excretion of absorbed Se was similar in all groups, as also were tissue distribution of retained 75Se and long-term whole-body turnover rate. 5. The results of these studies are compared with those of earlier studies of the metabolism in rats of [75Se]selenomethionine, [75Se]selenite, [75Se]selenocystine and 75Se incorporated in vivo into rabbit kidney. There were differences in the initial utilization of 75Se from these various sources but after the 1st week 75Se from all sources appeared to be metabolized similarly, suggesting that for rats dietary Se of all forms is ultimately incorporated into the same metabolic pool.
摘要
  1. 将[75Se]亚硒酸盐或[75Se]硒代蛋氨酸注入鱼的体腔。2天或14天后,取出鱼的肌肉部分并匀浆。将每种标记匀浆口服剂量在大鼠体内的长期归宿与口服[75Se]亚硒酸盐或[75Se]硒代蛋氨酸与未标记鱼匀浆混合后的口服剂量的长期归宿进行比较。2. 在第1周测量尿和粪便放射性,并在10周内测定全身放射性。每周处死大鼠,持续4周,以分析75Se的组织分布。3. 以标记鱼匀浆形式给予的75Se的肠道吸收不如与未标记匀浆混合的75Se完全,并且来自[75Se]亚硒酸盐的14天标记鱼匀浆中75Se的吸收不如其他标记匀浆中75Se的吸收完全。4. 吸收的75Se在前7天的尿排泄量为吸收剂量的5%-8%,以亚硒酸盐形式给予或源自亚硒酸盐的75Se的大鼠的尿排泄量略高于以硒代蛋氨酸形式给予或源自硒代蛋氨酸的75Se的大鼠。所有组中吸收的硒的内源性粪便排泄相似,保留的75Se的组织分布和长期全身周转率也相似。5. 将这些研究结果与早期关于[75Se]硒代蛋氨酸、[75Se]亚硒酸盐、[75Se]硒代胱氨酸以及体内掺入兔肾的75Se在大鼠体内代谢的研究结果进行比较。来自这些不同来源的75Se的初始利用存在差异,但在第1周后,所有来源的75Se的代谢方式似乎相似,这表明对于大鼠而言,所有形式的膳食硒最终都被纳入同一个代谢池。

相似文献

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Metabolic studies in rats of 75Se incorporated in vivo into fish muscle.
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