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尿苷三磷酸(UTP)通过尿苷三磷酸偏好性P2Y受体在离体灌注的犬心外膜冠状动脉中诱导血管反应。

UTP induces vascular responses in the isolated and perfused canine epicardial coronary artery via UTP-preferring P2Y receptors.

作者信息

Matsumoto T, Nakane T, Chiba S

机构信息

Department of Pharmacology, Shinshu University School of Medicine, Matsumoto, Japan.

出版信息

Br J Pharmacol. 1997 Dec;122(8):1625-32. doi: 10.1038/sj.bjp.0701559.

Abstract
  1. Vasoconstrictor responses of the isolated and perfused canine epicardial coronary artery to uridine 5'-triphosphate (UTP) were analysed pharmacologically. 2. At basal perfusion pressure, UTP induced vasoconstriction in a dose-related manner and the vasoconstriction was sometimes followed by a slight vasodilatation at large doses (more than 10 nmol). The rank order of potency for vasoconstriction was UTP = UDP > ATP > TTP > or = ITP >> UMP. At raised perfusion pressure by 20 mM KCl, the vasoconstriction was not changed and a small vasodilatation was induced at large doses. The rank order of potency for vasodilatation was induced at large doses. The rank order of potency for vasodilatation was ATP >> ITP > or = UDP > UTP > or = TTP. The maximal vasodilator response to UTP was much less than that to ATP. UMP did not induce vasodilatation. 3. The P2X receptor agonist and desensitizing agent alpha, beta-methylene ATP (1 microM) and the P2 receptor antagonist suramin (100 microM) inhibited the vasoconstrictor responses to ATP but not those to UTP and UDP. The P2 receptor antagonist reactive blue 2 (30 microM) did not inhibit the vascular responses to UTP. 4. UTP (200 microM) desensitized the vasoconstrictor responses to UTP, but not either the vasodilator responses to UTP or the vasoconstrictor responses to ATP and UDP. UDP (200 microM) did not desensitize the vascular responses to UTP. 5. Preincubating the UDP stock solution and arterial preparation with hexokinase (10 and 1 uml-1, respectively) did not change the vasoconstrictor responses to UDP. 6. The Ca channel blocker diltiazem (1 microM) inhibited the vasoconstrictor responses to UTP but not those to ATP and UDP. Incubation in a Ca(2+)-free solution containing 1 mM EGTA inhibited the vascular responses to ATP, UTP and UDP. 7. Removal of the endothelium by an intraluminal injection of saponin (1 mg) inhibited the vasodilator responses to UTP. Indomethacin, a cyclo-oxygenase inhibitor (1 microM), inhibited the vasodilator responses to UTP, but NG-nitro-L-arginine, a nitric oxide synthase inhibitor (300 microM), did not have an inhibitory effect. 8. The results suggest that (1) UTP induces vasoconstriction via UTP-preferring P2Y receptors on the smooth muscle and vasodilatation via receptors different from those mediating the vasoconstriction induced by UTP and mediating the vasodilatation by ATP on the endothelium, through mainly the release of prostacyclin in the canine epicardial coronary artery; (2) UDP induces vasoconstriction via UDP-preferring P2Y receptors; and (3) L-type Ca ion channels are involved in the vasoconstriction induced by UTP, but not in that induced by UDP.
摘要
  1. 对分离并灌注的犬心外膜冠状动脉对尿苷5'-三磷酸(UTP)的血管收缩反应进行了药理学分析。2. 在基础灌注压力下,UTP以剂量相关的方式诱导血管收缩,大剂量(超过10 nmol)时,血管收缩有时会伴有轻微的血管舒张。血管收缩效力的顺序为UTP = UDP > ATP > TTP ≥ ITP >> UMP。在20 mM KCl使灌注压力升高时,血管收缩未改变,大剂量时诱导出小幅度血管舒张。血管舒张效力的顺序在大剂量时诱导产生。血管舒张效力的顺序为ATP >> ITP ≥ UDP > UTP ≥ TTP。UTP的最大血管舒张反应远小于ATP的。UMP未诱导血管舒张。3. P2X受体激动剂和脱敏剂α,β-亚甲基ATP(1 μM)以及P2受体拮抗剂苏拉明(100 μM)抑制对ATP的血管收缩反应,但不抑制对UTP和UDP的。P2受体拮抗剂活性蓝2(30 μM)不抑制对UTP的血管反应。4. UTP(200 μM)使对UTP的血管收缩反应脱敏,但不使对UTP的血管舒张反应或对ATP和UDP的血管收缩反应脱敏。UDP(200 μM)未使对UTP的血管反应脱敏。5. 分别用己糖激酶(10和1 U/ml)预孵育UDP储备溶液和动脉制剂,未改变对UDP的血管收缩反应。6. 钙通道阻滞剂地尔硫䓬(1 μM)抑制对UTP的血管收缩反应,但不抑制对ATP和UDP的。在含1 mM EGTA的无钙溶液中孵育抑制对ATP、UTP和UDP的血管反应。7. 通过腔内注射皂角苷(1 mg)去除内皮抑制对UTP的血管舒张反应。环氧化酶抑制剂吲哚美辛(1 μM)抑制对UTP的血管舒张反应,但一氧化氮合酶抑制剂NG-硝基-L-精氨酸(300 μM)无抑制作用。8. 结果表明:(1)在犬心外膜冠状动脉中,UTP通过平滑肌上偏好UTP的P2Y受体诱导血管收缩,并通过与介导UTP诱导的血管收缩以及ATP诱导的内皮血管舒张的受体不同的受体诱导血管舒张,主要通过前列环素的释放;(2)UDP通过偏好UDP的P2Y受体诱导血管收缩;(3)L型钙离子通道参与UTP诱导的血管收缩,但不参与UDP诱导的血管收缩。

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