Edelson J, Douglas J F, Ludwig B J, Schuster E B, Shahinian S
J Pharm Sci. 1975 Aug;64(8):1316-21. doi: 10.1002/jps.2600640812.
The absorption and metabolic fate of 7-chloro-3,3a-dihydro-2-methyl-2H,9H-isoxazolo-(3,2-b)(1,3)-benzoxazin-9-one (I) was studied in rats, dogs, and humans. Orally administered I was readily absorbed by all species. In the rat, orally administered I was converted to its metabolite, 5-chlorosalicylic acid, by the intestinal wall. The half-lives of blood radioactivity, after the oral administration of I-9-14C, were about 18 and 12 hr in the rat and beagle hound, respectively. In human subjects, no intact I was detected in the bloodstream; however, the clearance of the metabolite, 5-chlorosalicylic acid, had a half-life of about 33 hr. Cleavage of the oxazine ring of I generated 5-chlorosalicylic acid, which was excreted both in the free form and conjugated with glycine and glucuronic acid. The isoxazole moiety was converted to beta-hydroxybutyric acid and its metabolites carbon dioxide and fumaric, citric, alpha-ketoglutaric, succinic, and malic acids. Binding of I to plasma proteins was extensive but was less than that of 5-chlorosalicylic acid.
研究了7-氯-3,3a-二氢-2-甲基-2H,9H-异恶唑并-(3,2-b)(1,3)-苯并恶嗪-9-酮(I)在大鼠、犬和人类体内的吸收及代谢情况。所有物种口服I后均能迅速吸收。在大鼠中,口服I后被肠壁转化为其代谢产物5-氯水杨酸。口服I-9-14C后,大鼠和比格犬血液放射性的半衰期分别约为18小时和12小时。在人类受试者中,血液中未检测到完整的I;然而,代谢产物5-氯水杨酸的清除半衰期约为33小时。I的恶嗪环裂解生成5-氯水杨酸,它以游离形式以及与甘氨酸和葡萄糖醛酸结合的形式排泄。异恶唑部分转化为β-羟基丁酸及其代谢产物二氧化碳以及富马酸、柠檬酸、α-酮戊二酸、琥珀酸和苹果酸。I与血浆蛋白的结合广泛,但低于5-氯水杨酸。