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大鼠肾脏中内皮素 A 受体介导的对内皮素 -1 和大内皮素 -1 的反应。

ETA receptor-mediated responses to endothelin-1 and big endothelin-1 in the rat kidney.

作者信息

Pollock D M, Opgenorth T J

机构信息

Pharmaceutical Discovery, Abbott Laboratories, Abbott Park, IL 60064.

出版信息

Br J Pharmacol. 1994 Mar;111(3):729-32. doi: 10.1111/j.1476-5381.1994.tb14798.x.

Abstract
  1. Renal clearance experiments were conducted in anaesthetized Sprague-Dawley rats to determine the effect of the ETA receptor antagonist, BQ-123, on the renal haemodynamic response to endothelin-1 (ET-1) and its precursor, big endothelin-1 (big ET-1) at doses that produce an equivalent degree of renal vasoconstriction. 2. Infusion of either big ET-1 at 100 pmol kg-1 min-1 or ET-1 at 12 pmol kg-1 min-1 for 60 min produced almost identical decreases in renal blood flow (RBF) and glomerular filtration rate (GFR). Big ET-1 produced an increase in mean arterial pressure (MAP) that was significantly larger than the increase produced by ET-1. 3. Co-infusion with BQ-123 (0.1 mg kg-1 min-1) prevented the rise in MAP produced by big ET-1 and completely blocked the renal response. Similarly, BQ-123 inhibited both the increase in MAP and the decrease in RPF and GFR produced by ET-1. 4. Big ET-1 but not ET-1, produced a significant increase in water and sodium excretion. BQ-123 had no effect on the diuretic and natriuretic response to big ET-1 consistent with possible ETB-mediated inhibition of tubular reabsorption. 5. We have previously shown that at higher doses of ET-1, BQ-123 was unable to inhibit the renal vasoconstrictor response despite blockade of the pressor response. Taken together, these results indicate that ET-1 activates primarily ETA receptors at moderately low doses to produce renal vasoconstriction while higher doses also involve non-ETA receptors. 6. Since ET-l has a similar binding affinity for both ETA and ETB receptors, we suggest that there maybe a third type of ET-1 receptor in the rat kidney with lower affinity for ET-1 that is coupled to a vasoconstrictor mechanism.
摘要
  1. 在麻醉的Sprague-Dawley大鼠中进行肾清除实验,以确定内皮素A(ETA)受体拮抗剂BQ-123对肾血流动力学对内皮素-1(ET-1)及其前体大内皮素-1(big ET-1)的反应的影响,所用剂量能产生同等程度的肾血管收缩。2. 以100 pmol kg-1 min-1的剂量输注big ET-1或12 pmol kg-1 min-1的剂量输注ET-1 60分钟,会使肾血流量(RBF)和肾小球滤过率(GFR)产生几乎相同程度的下降。big ET-1使平均动脉压(MAP)升高,且显著大于ET-1引起的升高。3. 与BQ-123(0.1 mg kg-1 min-1)共同输注可防止big ET-1引起的MAP升高,并完全阻断肾反应。同样,BQ-123抑制了ET-1引起的MAP升高以及肾血浆流量(RPF)和GFR的下降。4. big ET-1而非ET-1使水和钠排泄显著增加。BQ-123对big ET-1的利尿和利钠反应无影响,这与可能由ETB介导的肾小管重吸收抑制作用一致。5. 我们之前已表明,在较高剂量的ET-1时,尽管BQ-123阻断了升压反应,但仍无法抑制肾血管收缩反应。综上所述,这些结果表明,在中等低剂量时,ET-1主要激活ETA受体以产生肾血管收缩,而较高剂量时还涉及非ETA受体。6. 由于ET-1对ETA和ETB受体具有相似的结合亲和力,我们推测大鼠肾脏中可能存在第三种类型的ET-1受体,其对ET-1的亲和力较低,且与血管收缩机制相关。

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