Menon R M, Barr W H
Department of Pharmaceutics, Virginia Commonwealth University, Richmond, VA 23298, USA.
Biopharm Drug Dispos. 2003 Oct;24(7):299-308. doi: 10.1002/bdd.366.
Ceftibuten uptake into Caco-2 cells and intestinal brush border membrane vesicles is mediated by the dipeptide transport system (PEPT1). The apical to basolateral transport characteristics of ceftibuten across Caco-2 cells and rat jejunum mounted on a modified Ussing chamber was examined. Mannitol was used as a paracellular marker along with trans-epithelial electrical resistance (TEER) for monitoring tight junction permeability. Transport across Caco-2 cells and rat jejunum mounted on a modified Ussing chamber was linear across the concentration range 0.25-10 mM. The net flux of mannitol and ceftibuten was higher across rat jejunum compared with Caco-2 cells. At a donor concentration of 0.25 mM, ceftibuten transport across Caco-2 cells was found to be pH dependent. Glycyl proline, a dipeptide, and 2,4- dinitrophenol, an energy poison, caused a reduction in the permeability of 0.25 mM ceftibuten across Caco-2 cells. Benzoic acid and adipic acid also inhibited transcellular transport of ceftibuten. At a donor concentration of 0.25 mM, passive paracellular transport accounts for about 60% and the active carrier mediated mechanism accounts for about 40% of ceftibuten transport across Caco-2 cells. None of the inhibitors however, had a significant effect on ceftibuten transport across rat jejunum mounted on a modified Ussing chamber at a donor concentration of 0.25 mM. In the concentration range 0.25-10 mM, ceftibuten is predominantly transported by paracellular mechanisms across rat jejunum and a mixture of active and passive transport across Caco-2 cells.
头孢布烯进入Caco-2细胞和肠刷状缘膜囊泡是由二肽转运系统(PEPT1)介导的。研究了头孢布烯在安装于改良型尤斯灌流室的Caco-2细胞和大鼠空肠上从顶端到基底外侧的转运特性。甘露醇作为细胞旁标记物,同时结合跨上皮电阻(TEER)来监测紧密连接的通透性。在0.25 - 10 mM的浓度范围内,头孢布烯在安装于改良型尤斯灌流室的Caco-2细胞和大鼠空肠上的转运呈线性。与Caco-2细胞相比,甘露醇和头孢布烯在大鼠空肠上的净通量更高。在供体浓度为0.25 mM时,发现头孢布烯在Caco-2细胞上的转运依赖于pH值。二肽甘氨酰脯氨酸和能量毒物2,4 - 二硝基苯酚可使0.25 mM头孢布烯在Caco-2细胞上的通透性降低。苯甲酸和己二酸也抑制头孢布烯的跨细胞转运。在供体浓度为0.25 mM时,被动细胞旁转运约占头孢布烯在Caco-2细胞上转运的60%,而主动载体介导机制约占40%。然而,在供体浓度为0.25 mM时,这些抑制剂对安装于改良型尤斯灌流室的大鼠空肠上的头孢布烯转运均无显著影响。在0.25 - 10 mM的浓度范围内,头孢布烯在大鼠空肠上主要通过细胞旁机制转运,而在Caco-2细胞上则通过主动和被动转运的混合机制转运。