Guggino S E, Aronson P S
J Clin Invest. 1985 Aug;76(2):543-7. doi: 10.1172/JCI112004.
The effects of pyrazinoate and nicotinate on urate transport in microvillus membrane vesicles isolated from canine renal cortex were evaluated. An outwardly directed gradient of pyrazinoate stimulated uphill urate accumulation, suggesting urate-pyrazinoate exchange. An inside-alkaline pH gradient stimulated uphill pyrazinoate accumulation, which suggested pyrazinoate-OH- exchange. Pyrazinoate-OH- exchange and urate-OH- exchange were similarly sensitive to inhibitors, implying that both processes occur via the same transport system. In addition, an inward Na+ gradient stimulated uphill pyrazinoate accumulation, suggesting Na+-pyrazinoate cotransport. Inhibitor studies demonstrated that Na+-pyrazinoate cotransport takes place via the same pathway that mediates Na+-lactate cotransport in these membrane vesicles. Previously we found that urate does not share this Na+-dependent cotransport pathway. Nicotinate inhibited transport of pyrazinoate by the anion exchange pathway and the Na+ cotransport pathway, suggesting that it is a substrate for both transport systems. Finally, in the presence of an inward Na+ gradient, low doses of pyrazinoate or nicotinate stimulated urate uptake, and higher doses of pyrazinoate or nicotinate inhibited urate accumulation, thereby mimicking in vitro the paradoxical effects of drugs on renal urate excretion that have been observed in vivo. These findings indicate that the paradoxical effect of uricosuric drugs at low doses to cause urate retention may result at least in part from stimulation of urate reabsorption across the luminal membrane of the proximal tubular cell.
评估了吡嗪酸盐和烟酸盐对从犬肾皮质分离的微绒毛膜囊泡中尿酸转运的影响。吡嗪酸盐向外的浓度梯度刺激尿酸的上坡积累,表明存在尿酸-吡嗪酸盐交换。膜内碱性pH梯度刺激吡嗪酸盐的上坡积累,这表明存在吡嗪酸盐-OH-交换。吡嗪酸盐-OH-交换和尿酸-OH-交换对抑制剂同样敏感,这意味着这两个过程通过相同的转运系统发生。此外,内向的Na+梯度刺激吡嗪酸盐的上坡积累,表明存在Na+-吡嗪酸盐共转运。抑制剂研究表明,Na+-吡嗪酸盐共转运通过与这些膜囊泡中介导Na+-乳酸共转运相同的途径发生。之前我们发现尿酸不共享这种Na+依赖性共转运途径。烟酸盐通过阴离子交换途径和Na+共转运途径抑制吡嗪酸盐的转运,这表明它是这两种转运系统的底物。最后,在存在内向Na+梯度的情况下,低剂量的吡嗪酸盐或烟酸盐刺激尿酸摄取,而高剂量的吡嗪酸盐或烟酸盐抑制尿酸积累,从而在体外模拟了在体内观察到的药物对肾尿酸排泄的矛盾效应。这些发现表明,促尿酸排泄药物低剂量时导致尿酸潴留的矛盾效应可能至少部分是由于刺激了近端肾小管细胞管腔膜对尿酸的重吸收。