Hosoya K, Kompella U B, Kim K J, Lee V H
Department of Pharmaceutical Sciences, School of Pharmacy, University of Southern California, Los Angeles 90033, USA.
Curr Eye Res. 1996 Apr;15(4):447-51. doi: 10.3109/02713689608995836.
The objective of this study was to determine whether Na(+)-glucose cotransport contributed to the residual short-circuit current (Isc) in the pigmented rabbit conjunctiva not accounted for by Cl- secretion. The Isc of the pigmented rabbit conjunctiva was measured following exposure of its mucosal or serosal side to varying concentrations of D-glucose or phloridzin in a glutathione-bicarbonated Ringer's solution (GBR). Addition of D-glucose to the mucosal side of the conjunctiva bathed in glucose-free GBR elevated Isc up to 26 +/- 6% in a dose-dependent manner (K0.5 = 1.2 mM), while mucosal (but not serosal) addition of phloridzin reduced the Isc (IC50 = 0.05 mM) of the conjunctiva bathed in regular GBR. In a mucosal Na(+)-free medium, neither 20 mM D-glucose nor 0.5 mM phloridzin was effective. In a mucosal glucose-containing medium, deletion of Na+ reduced Isc up to 27 +/- 4%. It was, however, restored to its initial value upon the addition of 17.5-141 mM Na+ to a medium containing 5 mM D-glucose. Hill plot analysis of Isc elevation at 141 mM Na+ in the presence of varying D-glucose concentrations in the mucosal bathing fluid yielded a Hill coefficient of 0.86. There is, therefore, evidence for the apical localization of phloridzin-sensitive Na(+)-coupled D-glucose transport that exhibits apparent 1:1 stoichiometry, being responsible for the maximal 26% increase in the Isc.
本研究的目的是确定在色素沉着兔结膜中,钠-葡萄糖协同转运是否对未被氯离子分泌所解释的残余短路电流(Isc)有贡献。在谷胱甘肽-碳酸氢盐林格氏液(GBR)中,将色素沉着兔结膜的黏膜侧或浆膜侧暴露于不同浓度的D-葡萄糖或根皮苷后,测量其Isc。在无葡萄糖的GBR中,向结膜黏膜侧添加D-葡萄糖,可使Isc以剂量依赖方式升高至26±6%(半最大效应浓度K0.5 = 1.2 mM),而在常规GBR中,向结膜黏膜侧(而非浆膜侧)添加根皮苷可降低Isc(半数抑制浓度IC50 = 0.05 mM)。在黏膜无钠培养基中,20 mM D-葡萄糖和0.5 mM根皮苷均无效。在含葡萄糖的黏膜培养基中,去除钠离子可使Isc降低达27±4%。然而,在含5 mM D-葡萄糖的培养基中添加17.5 - 141 mM钠离子后,Isc恢复至初始值。对黏膜浴液中存在不同D-葡萄糖浓度时,141 mM钠离子条件下Isc升高进行希尔曲线分析,得到的希尔系数为0.86。因此,有证据表明存在对根皮苷敏感的钠偶联D-葡萄糖转运体的顶端定位,其化学计量比约为1:1,负责使Isc最大增加26%。