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头孢羟氨苄衍生物在大鼠肠刷状缘膜囊泡中的摄取。

Uptake of cefadroxil derivatives in rat intestinal brush-border membrane vesicles.

作者信息

Wang H P, Bair C H, Huang J D

机构信息

School of Pharmacy, College of Medicine, National Taiwan University, Taipei, Republic of China.

出版信息

J Pharm Pharmacol. 1992 Dec;44(12):1027-9.

PMID:1361551
Abstract

Uptake of cefadroxil and its two acetyl-derivatives, N-acetyl- and O-acetyl-cefadroxil, into the brush-border membrane vesicles (BBMV) was measured at [pH]o = 5.5, 7.4 and [pH]i = 7.4. Both acetyl-derivatives showed a significantly slower uptake than cefadroxil at [pH]o = 5.5 and 7.4. Cefadroxil and the two derivatives showed a higher uptake rate in the presence of an inward H+ gradient ([pH]o = 5.5, [pH]i = 7.4). At [pH]o = 5.5, uptake of cefadroxil into BBMV was inhibited by N-acetyl-, O-acetyl-, N-BOC-, and N-BOC-O-acetyl-cefadroxil, but not by cephalothin and cefuroxime. At [pH]o = 7.4, no inhibition of cefadroxil uptake was evident for any inhibitors. There were two different transporters responsible for the uptake of cefadroxil at pH 5.5 and 7.4. One is the H(+)-coupled dipeptide transport system, and the other is the neutral pH-preferring system. The alpha-amino group may be essential for the transport of cefadroxil by both transport systems. Although the phenolic group in the side chain is not an essential functional group of beta-lactam antibiotics, an additional derivation on the phenolic group of cefadroxil also inhibited both the H(+)-coupled dipeptide transport system and the neutral pH-preferring transport system.

摘要

在细胞外pH值([pH]o)为5.5、7.4以及细胞内pH值([pH]i)为7.4的条件下,测定了头孢羟氨苄及其两种乙酰化衍生物N - 乙酰头孢羟氨苄和O - 乙酰头孢羟氨苄进入刷状缘膜囊泡(BBMV)的摄取情况。在[pH]o = 5.5和7.4时,两种乙酰化衍生物的摄取速度均明显慢于头孢羟氨苄。在存在内向H⁺梯度([pH]o = 5.5,[pH]i = 7.4)的情况下,头孢羟氨苄和这两种衍生物的摄取速率更高。在[pH]o = 5.5时,N - 乙酰头孢羟氨苄、O - 乙酰头孢羟氨苄、N - BOC - 头孢羟氨苄和N - BOC - O - 乙酰头孢羟氨苄可抑制头孢羟氨苄进入BBMV,但头孢噻吩和头孢呋辛则无此作用。在[pH]o = 7.4时,任何抑制剂均未明显抑制头孢羟氨苄的摄取。在pH值为5.5和7.4时,有两种不同的转运体负责头孢羟氨苄的摄取。一种是H⁺偶联二肽转运系统,另一种是偏好中性pH值的系统。α - 氨基对于这两种转运系统转运头孢羟氨苄可能至关重要。虽然侧链中的酚羟基不是β - 内酰胺类抗生素的必需官能团,但头孢羟氨苄酚羟基上的额外衍生化也抑制了H⁺偶联二肽转运系统和偏好中性pH值的转运系统。

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