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新型头孢菌素抗生素头孢克肟经H⁺梯度依赖性和载体介导的转运,穿过大鼠小肠刷状缘膜囊泡。

H+ gradient-dependent and carrier-mediated transport of cefixime, a new cephalosporin antibiotic, across brush-border membrane vesicles from rat small intestine.

作者信息

Tsuji A, Terasaki T, Tamai I, Hirooka H

出版信息

J Pharmacol Exp Ther. 1987 May;241(2):594-601.

PMID:3572815
Abstract

The characteristics of the transport of cefixime, a new p.o. cephalosporin, antibiotic, were studied by using brush-border membrane vesicles from the rat small intestine. The initial rate of uptake of cefixime was not affected by the presence of an inward gradient of either Na+ or other monovalent cations. With an intravesicular pHi of 7.5, optimal cefixime uptake occurred at an extravesicular pHo of 5.0, with about 6-fold acceleration compared with that in the absence of an inward proton gradient (pHi = pHo = 7.5). A protonophore, carbonyl-cyanide-4-trifluoromethoxy-phenylhydrazone, abolished the stimulating effect of low pHo. In the presence of a sufficient inward proton gradient (pHi = 7.5, pHo = 5.0), cefixime uptake showed an overshoot phenomenon and apparent saturation kinetics expressed by the Michaelis-Menten equation with the maximum rate of 2.67 +/- 0.06 nmol/30 sec/mg of protein and a Michaelis constant of 0.83 +/- 0.04 mM. Cefixime uptake was inhibited competitively by glycyl-L-proline and stimulated by the countertransport effect of this dipeptide. The other peptides also inhibited cefixime uptake significantly. A valinomycin-induced inside-negative K+-diffusion potential had a dramatic reducing effect on the uptake of dianionic cefixime. All the data obtained in this study demonstrate that cefixime transport across the brush-border membrane vesicles is carrier-mediated, independent of Na+ and dependent on a H+ gradient via the peptide transport systems.

摘要

采用大鼠小肠刷状缘膜囊泡研究了新型口服头孢菌素抗生素头孢克肟的转运特性。头孢克肟的初始摄取速率不受Na⁺或其他单价阳离子内向梯度存在的影响。当囊泡内pH值为7.5时,在囊泡外pH值为5.0时头孢克肟摄取最佳,与不存在内向质子梯度(pHi = pHo = 7.5)时相比,加速约6倍。质子载体羰基氰化物-4-三氟甲氧基苯腙消除了低pHo的刺激作用。在存在足够的内向质子梯度(pHi = 7.5,pHo = 5.0)时,头孢克肟摄取表现出过冲现象和由米氏方程表示的明显饱和动力学,最大速率为2.67±0.06 nmol/30秒/毫克蛋白质,米氏常数为0.83±0.04 mM。头孢克肟摄取受到甘氨酰-L-脯氨酸的竞争性抑制,并受到该二肽反向转运作用的刺激。其他肽也显著抑制头孢克肟摄取。缬氨霉素诱导的内向负K⁺扩散电位对二价阴离子头孢克肟的摄取有显著降低作用。本研究获得的所有数据表明,头孢克肟跨刷状缘膜囊泡的转运是载体介导的,不依赖于Na⁺,并通过肽转运系统依赖于H⁺梯度。

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