Cogan M G, Liu F Y, Wong P C, Timmermans P B
Department of Medicine, University of California, San Francisco.
J Pharmacol Exp Ther. 1991 Nov;259(2):687-91.
The nonpeptide angiotensin II receptor antagonists, DuP 753 and PD123177, have been recently proposed to efficiently discriminate between two receptor subtypes. Because angiotensin II uses two signaling systems to control transport in the proximal tubule, the hypothesis was entertained that angiotensin-regulated proximal reabsorption might be transduced through two receptor subtypes and, therefore, have two components, sensitive to either DuP 753 or PD123177. Using in vivo microperfusion in the rat, a maximally effective dose of PD123177 (60 or 120 mg/kg, i.v.) had a powerful inhibitory effect on transport in the S1 proximal tubule, significantly (P less than .001) reducing bicarbonate absorption by 50% (360 +/- 4 to 179 +/- 8 peq/mm.min), chloride absorption by 38% (211 +/- 1 to 131 +/- 4 peq/mm.min) and sodium and water absorption by 32% (5.7 +/- 0.1 to 3.9 +/- 0.5 nl/mm.min). These results were only slightly different than previously reported effects on proximal solute and water absorption by DuP 753 (10 mg/kg). The two drugs demonstrated virtually no additivity in their transport inhibitory effects. Although downstream reabsorptive elements compensate for the powerful action of PD123177 in the earliest segment of the nephron, we also showed, using free-flow micropuncture and clearance techniques, that PD123177 induces a substantial diuresis, natriuresis and chloruresis, again similar in magnitude to DuP 753. These results suggest PD123177 has diuretic potency roughly equivalent to that of DuP 753, but do not lend support to the simple thesis that there are two separately acting receptor-signal transduction systems in the proximal tubule for angiotensin II.
非肽类血管紧张素II受体拮抗剂DuP 753和PD123177,最近被认为能有效区分两种受体亚型。由于血管紧张素II利用两种信号系统来控制近端小管的转运,因此有人提出这样的假说:血管紧张素调节的近端重吸收可能通过两种受体亚型进行转导,因此有两个成分,分别对DuP 753或PD123177敏感。利用大鼠体内微灌注技术,最大有效剂量的PD123177(60或120mg/kg,静脉注射)对S1近端小管的转运有强大的抑制作用,显著(P<0.001)降低了碳酸氢盐重吸收50%(从360±4降至179±8 peq/mm·min),氯化物重吸收38%(从211±1降至131±4 peq/mm·min),钠和水重吸收32%(从5.7±0.1降至3.9±0.5 nl/mm·min)。这些结果与先前报道的DuP 753(10mg/kg)对近端溶质和水重吸收的影响仅有轻微差异。这两种药物在转运抑制作用上几乎没有相加性。尽管下游重吸收元件可补偿PD123177在肾单位最早节段的强大作用,但我们也利用自由流微穿刺和清除技术表明,PD123177可引起大量利尿、利钠和利氯作用,其幅度再次与DuP 753相似。这些结果表明PD123's diuretic potency is roughly equivalent to that of DuP 753,但并不支持近端小管中存在两种分别起作用的血管紧张素II受体 - 信号转导系统这一简单论点。 77的利尿效力大致与DuP 753相当,但并不支持近端小管中存在两种分别起作用的血管紧张素II受体 - 信号转导系统这一简单论点。