β - n -草酰- l- α、β -二氨基丙酸在实验动物体内的代谢。

P Jyothi, M P Rudra, S L Rao
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引用次数: 13

摘要

对1,2,3 (14)C-ODAP和4,5 (14)C-ODAP在小鼠、大鼠和雏鸡体内的代谢进行了比较研究。黑、白小鼠口服1,2,3 (14)C-ODAP后,8 h内过期CO2中出现了近16%的放射性,大鼠中仅出现3%,雏鸡中不到2%。给药4,5 (14)C-ODAP的小鼠呼气中未出现14CO2。给予1,2,3 (14)C-ODAP的动物尿样的电泳显示,除了ODAP外,还存在一种放射性代谢物(代谢物-1)。在大鼠和小鼠的尿液中,给予4,5 (14)C-ODAP表明存在代谢物-1和14c -草酸盐,但在小鸡中,不存在14c -草酸盐,只检测到代谢物-1。结果表明,在小鼠体内,ODAP可以在一定程度上被氧化(在大鼠体内的氧化程度较小),导致CO2和草酸盐的形成,而在人类体内,类似的途径可能更突出,导致ODAP几乎完全氧化。
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In vivo metabolism of beta-N-oxalyl-L-alpha,beta-diaminopropionic acid: the Lathyrus sativus neurotoxin in experimental animals.

A comparative study of the metabolism of 1,2,3 (14)C-ODAP and 4,5 (14)C-ODAP in mice, rats and chicks has been carried out. Following oral administration of 1,2,3 (14)C-ODAP to either black or white mice, nearly 16% of the radioactivity appeared in the expired CO2 within 8 h, while in the rat only 3% of it appeared and in chicks it was less than 2%. No 14CO2 appeared in the expired air in mice given 4,5 (14)C-ODAP. Electrophoregrams of the spot urine samples from the animals given 1,2,3 (14)C-ODAP showed the presence of one radioactive metabolite (metabolite-1) in addition to ODAP. While the urine from rats and mice given 4,5 (14)C-ODAP indicated the presence of metabolite-1 as well as 14C-oxalate, in chicks, however, no 14C-oxalate was present and only metabolite-1 could be detected. The results indicate that ODAP can to some extent undergo oxidation in vivo in mice (and to a lesser extent in rats) leading to the formation of CO2 and oxalate and a similar pathway might be more prominent in humans leading to a near complete oxidation of ODAP.

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