Chatton J Y, Roch-Ramel F
Institut de Pharmacologie, Lausanne, Switzerland.
J Pharmacol Exp Ther. 1991 Mar;256(3):1112-8.
The role of nonionic diffusion in the transport of salicylic acid across rabbit proximal S2 and S3 segments was investigated using the in vitro isolated perfused tubule technique. The [14C] salicylic acid apparent reabsorptive permeability (P'I-b, 10(-5) cm/s) was measured at 19 degrees C with luminal solutions kept at different pH and bath maintained at pH 7.4. In S2 tubules, P'I-b was 25.0 +/- 3.5 when luminal pH was 6.0; P'I-b decreased to 8.1 +/- 1.4 and to 4.4 +/- 1.2 at a luminal pH of 6.5 and 7.0, respectively. In S3 tubules, P'I-b was 17.6 +/- 2.4, 5.3 +/- 1.1 and 3.4 +/- 1.1 at a luminal pH of 6.0, 6.5 and 7.0, respectively. There was a close correlation between P'I-b and the calculated proportion of nonionized salicylic acid present at each pH, indicating that only the nonionized molecule could diffuse in our conditions. We calculated the apparent permeability of nonionic salicylic acid and found 0.248 +/- 0.032 cm/s for S2 and 0.176 +/- 0.022 cm/s for S3 tubules. These calculated permeabilities were independent of pH.
采用体外分离灌注肾小管技术,研究了非离子扩散在水杨酸跨越兔近端S2和S3节段转运中的作用。在19℃下,将管腔溶液保持在不同pH值,浴液维持在pH 7.4,测量[14C]水杨酸的表观重吸收渗透率(P'I-b,10(-5) cm/s)。在S2肾小管中,管腔pH值为6.0时,P'I-b为25.0±3.5;管腔pH值为6.5和7.0时,P'I-b分别降至8.1±1.4和4.4±1.2。在S3肾小管中,管腔pH值为6.0、6.5和7.0时,P'I-b分别为17.6±2.4、5.3±1.1和3.4±1.1。P'I-b与每个pH值下计算出的非离子化水杨酸比例密切相关,表明在我们的实验条件下只有非离子化分子能够扩散。我们计算了非离子化水杨酸的表观渗透率,发现S2肾小管为0.248±0.032 cm/s,S3肾小管为0.176±0.022 cm/s。这些计算出的渗透率与pH值无关。