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头孢氨苄的立体特异性吸收与降解

Stereospecific absorption and degradation of cephalexin.

作者信息

Tamai I, Ling H Y, Timbul S M, Nishikido J, Tsuji A

机构信息

Faculty of Pharmaceutical Sciences, Kanazawa University, Japan.

出版信息

J Pharm Pharmacol. 1988 May;40(5):320-4. doi: 10.1111/j.2042-7158.1988.tb05259.x.

Abstract

Stereospecific absorption and degradation of two stereoisomers about the alpha-amino group at the 7-position of cephalexin (CEX) have been investigated in the rat intestine. The L-isomer (L-CEX) was not found to be present either in serum or urine after oral administration, but the D-isomer (D-CEX) was well absorbed. In contrast to the saturable uptake of D-CEX (Kt = 10.54 +/- 1.73 mM, pH = 6.0) by the in-vitro everted intestinal sac, no appreciable uptake of L-CEX was observed. However, L-CEX competitively inhibited the uptake of D-CEX by the in-vitro everted intestine and the inhibitory constant (Ki) of L-CEX was determined to be 0.67 +/- 0.09 mM. L-CEX was rapidly degraded in-vitro in the intestinal tissue homogenate, serum and urine, while there was no appreciable degradation of D-CEX. Analysis of the major metabolite of L-CEX by high-performance liquid chromatography identified it as 7-aminodeacetoxycephalosporanic acid (7-ADCA). Furthermore, 7-ADCA was detected in serum after oral administration of L-CEX, indicating significant absorption of L-CEX as well as D-CEX. The results obtained suggest that both L- and D-CEX can be absorbed through the intestinal brush-border membrane via the same mechanism, most likely through the dipeptide transport system, and that the affinity of L-CEX to the carrier system is higher than that of D-CEX.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在大鼠肠道中,研究了头孢氨苄(CEX)7位α-氨基处两种立体异构体的立体特异性吸收和降解情况。口服给药后,血清和尿液中均未发现L-异构体(L-CEX),但D-异构体(D-CEX)吸收良好。与体外外翻肠囊对D-CEX的饱和摄取(Kt = 10.54 +/- 1.73 mM,pH = 6.0)相反,未观察到L-CEX有明显摄取。然而,L-CEX竞争性抑制体外外翻肠对D-CEX的摄取,L-CEX的抑制常数(Ki)测定为0.67 +/- 0.09 mM。L-CEX在肠道组织匀浆、血清和尿液中体外迅速降解,而D-CEX没有明显降解。通过高效液相色谱分析L-CEX的主要代谢产物,确定其为7-氨基去乙酰氧基头孢烷酸(7-ADCA)。此外,口服L-CEX后在血清中检测到7-ADCA,表明L-CEX和D-CEX均有显著吸收。所得结果表明,L-CEX和D-CEX均可通过相同机制,很可能通过二肽转运系统,穿过肠道刷状缘膜吸收,且L-CEX对载体系统的亲和力高于D-CEX。(摘要截短于250字)

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