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腺苷类似物对兔耳中左旋克罗卡林血管舒张的调节作用:对缺氧增强作用的一种解释。

Modulation of vasodilatation to levcromakalim by adenosine analogues in the rabbit ear: an explanation for hypoxic augmentation.

作者信息

Randall M D, Ujiie H, Griffith T M

机构信息

Department of Diagnostic Radiology, University of Wales College of Medicine, Heath Park, Cardiff.

出版信息

Br J Pharmacol. 1994 May;112(1):49-54. doi: 10.1111/j.1476-5381.1994.tb13027.x.

Abstract
  1. We have used a rabbit isolated ear, buffered-perfused preparation to investigate the effects of adenosine analogues on the vasodilatation to the potassium channel opener, levcromakalim (the active (-)-enantiomer of cromakalim). We have examined the effects of 8-cyclopentyl-1,3-dipropylxanthine (DPCPX), a selective adenosine A1 antagonist, on vasodilatation to levcromakalim under hypoxic conditions and also following inhibition of nitric oxide synthesis. 2. Levcromakalim relaxed preconstricted preparations with an EC50 = 369 +/- 48 nM and maximum relaxation of tone (Rmax) = 81.0 +/- 3.2%. In the presence of 1 microM N6-cyclohexyladenosine (CHA) a selective adenosine A1 agonist, there was a significant (P < 0.01) leftward shift in the concentration-response curve with an EC50 = 194 +/- 54 nM and Rmax = 93.2 +/- 2.0%. Conversely, the presence of CHA did not influence vasodilatation to either pinacidil or sodium nitroprusside. 3. Hypoxia also significantly (P < 0.001) increased the vasodilator potency of levcromakalim (EC50 = 134 +/- 22 nM), and this enhancement was completely reversed (EC50 = 380 +/- 107 nM, P < 0.01) by pretreatment of the preparations with 5 microM DPCPX, a selective A1 adenosine antagonist. However, under normoxic conditions DPCPX did not influence vasodilatation to levcromakalim. 4. Inhibition of nitric oxide synthesis with 100 microM NG-nitro-L-arginine methyl ester (L-NAME) caused a significant (P < 0.001) leftward shift in the concentration-response curve to levcromakalim (EC50 = 73.0 +/- 7.6 nM). Pretreatment of preparations with DPCPX partially reversed the increase in potency found in the absence of nitric oxide synthesis (EC50 = 153 +/- 18 nM, P < 0.001). 5. We have shown that an adenosine Al agonist may increase the potency of levcromakalim indicating that adenosine receptor activation may augment the vasodilator activity of levcromakalim. That responses to levcromakalim but not those to pinacidil were affected by CHA points to further differences in the pharmacology of these potassium channel openers. The reversal by the adenosine Al antagonist of the hypoxic-potentiation of vasodilatation to levcromakalim, and also augmentation following inhibition of nitric oxide synthesis, suggests that under these conditions there is an endogenous release of adenosine which may enhance responses to levcromakalim. The findings of this study suggest that levcromakalim may selectively dilate vessels where there is elevated adenosine release.
摘要
  1. 我们使用兔离体耳,经缓冲液灌注的制备方法来研究腺苷类似物对钾通道开放剂左西孟旦(克罗卡林的活性(-)-对映体)所致血管舒张的影响。我们研究了8-环戊基-1,3-二丙基黄嘌呤(DPCPX),一种选择性腺苷A1拮抗剂,在缺氧条件下以及一氧化氮合成受抑制后对左西孟旦所致血管舒张的影响。2. 左西孟旦使预收缩的制备物舒张,其半数有效浓度(EC50)= 369±48 nM,最大舒张张力(Rmax)= 81.0±3.2%。在存在1 μM N6-环己基腺苷(CHA),一种选择性腺苷A1激动剂的情况下,浓度-反应曲线显著左移(P < 0.01),EC50 = 194±54 nM,Rmax = 93.2±2.0%。相反,CHA的存在不影响对吡那地尔或硝普钠的血管舒张作用。3. 缺氧也显著(P < 0.001)增加左西孟旦的血管舒张效力(EC50 = 134±22 nM),并且这种增强作用在制备物用5 μM DPCPX(一种选择性A1腺苷拮抗剂)预处理后完全逆转(EC50 = 380±107 nM,P < 0.01)。然而,在常氧条件下DPCPX不影响对左西孟旦的血管舒张作用。4. 用100 μM NG-硝基-L-精氨酸甲酯(L-NAME)抑制一氧化氮合成导致左西孟旦浓度-反应曲线显著左移(P < 0.001)(EC50 = 73.0±7.6 nM)。用DPCPX预处理制备物部分逆转了在不存在一氧化氮合成时所发现的效力增加(EC50 = 153±18 nM,P < 0.001)。5. 我们已表明腺苷A1激动剂可能增加左西孟旦的效力,表明腺苷受体激活可能增强左西孟旦的血管舒张活性。CHA影响对左西孟旦的反应但不影响对吡那地尔的反应,这表明这些钾通道开放剂在药理学上存在进一步差异。腺苷A1拮抗剂逆转左西孟旦血管舒张的缺氧增强作用以及一氧化氮合成受抑制后的增强作用,提示在这些条件下有内源性腺苷释放,其可能增强对左西孟旦的反应。本研究结果提示左西孟旦可能选择性地扩张腺苷释放增加的血管。

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