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钠和pH依赖性载体介导的抗生素磷霉素在大鼠小肠刷状缘膜中的转运。

Sodium and pH dependent carrier-mediated transport of antibiotic, fosfomycin, in the rat intestinal brush-border membrane.

作者信息

Ishizawa T, Tsuji A, Tamai I, Terasaki T, Hosoi K, Fukatsu S

机构信息

Faculty of Pharmaceutical Sciences, Kanazawa University, Japan.

出版信息

J Pharmacobiodyn. 1990 May;13(5):292-300. doi: 10.1248/bpb1978.13.292.

Abstract

The mechanism of intestinal absorption of an antimicrobial agent, fosfomycin (FOM), was investigated in rats using small intestinal brush-border membrane vesicles (BBMV). The uptake of [3H]FOM by BBMV was osmolarity- and temperature-sensitive and showed apparently saturable uptake kinetics consistent with the Michaelis-Menten equation, having Kt = 15.3 mM and Jmax = 7.78 nmol/30 s/mg protein at 37 degrees C. An overshoot uptake of FOM was observed in the presence of an inwardly direct Na+ gradient. The replacement of extravesicular Na+ with choline or mannitol significantly reduced the uptake. An addition of a protonophore, FCCP, significantly decreased the initial uptake of FOM in the absence of Na+ gradient but in the presence of a H+ gradient (pHin = 7.5, pHout = 6.0), whereas in the absence of a H+ gradient no significant difference was observed between the uptakes at an acidic pH (pHin = pHout = 6.0) and a neutral pH (pHin = pHout = 7.5). An inside negative potassium diffusion potential induced by valinomycin enhanced significantly the uptake of FOM. The uptake of FOM in the presence of both Na(+)- and H(+)-gradients was significantly inhibited by phosphate, arsenate and phosphonoformic acid (PFA), which are specific inhibitors of phosphate transport, but not by D-glucose. Based on these results, it is concluded that FOM transport in the small intestine is partially shared with the Na(+)-phosphate cotransport system and in part occurs via a H(+)-gradient dependent carrier-mediated system.

摘要

使用小肠刷状缘膜囊泡(BBMV)在大鼠中研究了抗菌剂磷霉素(FOM)的肠道吸收机制。BBMV对[3H]FOM的摄取对渗透压和温度敏感,并表现出明显的饱和摄取动力学,符合米氏方程,在37℃时Kt = 15.3 mM,Jmax = 7.78 nmol/30 s/mg蛋白质。在存在内向直接Na+梯度的情况下观察到FOM的过冲摄取。用胆碱或甘露醇替代囊泡外的Na+显著降低了摄取。添加质子载体FCCP在不存在Na+梯度但存在H+梯度(pHin = 7.5,pHout = 6.0)时显著降低了FOM的初始摄取,而在不存在H+梯度的情况下,在酸性pH(pHin = pHout = 6.0)和中性pH(pHin = pHout = 7.5)下摄取之间未观察到显著差异。缬氨霉素诱导的内向负钾扩散电位显著增强了FOM的摄取。在同时存在Na(+)-和H(+)-梯度的情况下,FOM的摄取受到磷酸盐、砷酸盐和膦甲酸(PFA)的显著抑制,它们是磷酸盐转运的特异性抑制剂,但不受D-葡萄糖的抑制。基于这些结果,得出结论:小肠中FOM的转运部分与Na(+)-磷酸盐共转运系统共享,部分通过H(+)-梯度依赖性载体介导系统发生。

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