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全身缺氧时大鼠骨骼肌中的腺苷受体亚型与血管舒张:A1受体的作用

Adenosine receptor subtypes and vasodilatation in rat skeletal muscle during systemic hypoxia: a role for A1 receptors.

作者信息

Bryan P T, Marshall J M

机构信息

Department of Physiology, The Medical School, Birmingham B15 2TT,, UK.

出版信息

J Physiol. 1999 Jan 1;514 ( Pt 1)(Pt 1):151-62. doi: 10.1111/j.1469-7793.1999.151af.x.

Abstract
  1. In anaesthetized rats we tested responses evoked by systemic hypoxia (breathing 8% O2 for 5 min) and adenosine (i.a. infusion for 5 min) before and after administration of a selective adenosine A1 receptor antagonist DPCPX (8-cyclopentyl-1,3-dipropylxanthine), or a selective adenosine A2A receptor antagonist ZM 241385. Arterial blood pressure, (ABP), heart rate (HR), femoral blood flow (FBF) and femoral vascular conductance (FVC: FBF/ABP) were recorded together with the K+ concentration in arterial blood ([K+]a) and in venous blood of hindlimb muscle ([K+]v) before and at the 5th minute of hypoxia or agonist infusion. 2. In 12 rats, DPCPX reversed the fall in ABP and HR and the increase in FVC evoked by the selective A1 agonist CCPA (2-chloro-N6-cyclopentyladenosine; i.a. infusion for 5 min). DPCPX also reduced both the increase in FVC induced by hypoxia and that induced by adenosine; the control responses to these stimuli were comparable in magnitude and both were reduced by approximately 50%. 3. In 11 rats, ZM 241385 reversed the fall in ABP and increase in FVC evoked by the selective A2A agonist CGS 21680 (2-p-(2-carboxyethyl)-phenethylamino-5'-N-ethylcarboxamidoadeno sin e hydrochloride; i.a. infusion for 5 min). ZM 241385 also reduced the increase in FVC induced by adenosine by approximately 50 %, but had no effect on the increase in FVC induced by hypoxia. 4. In these same studies, before administration of DPCPX, or ZM 241385, hypoxia had no effect on the venous-arterial difference for K+ ([K+]v-a), whereas after administration of either antagonist, hypoxia significantly reduced [K+]v-a suggesting an increase in hypoxia-induced K+ uptake, or a reduction in K+ efflux. 5. These results indicate that both A1 and A2A receptors are present in hindlimb muscle and can mediate vasodilatation and that A1 and A2A receptors contribute equally to dilatation induced by infused adenosine. However, they suggest that endogenous adenosine released during systemic hypoxia induces dilatation only by acting on A1 receptors. Given previous evidence that adenosine can stimulate receptors on skeletal muscle fibres that are coupled to ATP-sensitive K+ (KATP) channels so promoting K+ efflux, our results allow the proposal that KATP channels may be coupled to both A1 and to A2A receptors and may be stimulated to open by adenosine released during hypoxia, but indicate that, during systemic hypoxia, K+ efflux caused by either receptor subtype makes a very minor contribution to the muscle vasodilatation.
摘要
  1. 在麻醉大鼠中,我们在给予选择性腺苷A1受体拮抗剂DPCPX(8-环戊基-1,3-二丙基黄嘌呤)或选择性腺苷A2A受体拮抗剂ZM 241385之前和之后,测试了全身缺氧(呼吸8%氧气5分钟)和腺苷(腹腔内注射5分钟)诱发的反应。记录动脉血压(ABP)、心率(HR)、股血流量(FBF)和股血管传导率(FVC:FBF/ABP),以及缺氧或激动剂注射前和第5分钟时动脉血中K+浓度([K+]a)和后肢肌肉静脉血中K+浓度([K+]v)。2. 在12只大鼠中,DPCPX逆转了选择性A1激动剂CCPA(2-氯-N6-环戊基腺苷;腹腔内注射5分钟)诱发的ABP和HR下降以及FVC增加。DPCPX还降低了缺氧和腺苷诱导的FVC增加;对这些刺激的对照反应在幅度上相当,且两者均降低了约50%。3. 在11只大鼠中,ZM 241385逆转了选择性A2A激动剂CGS 21680(2-对-(2-羧乙基)-苯乙氨基-5'-N-乙基羧酰胺腺苷盐酸盐;腹腔内注射5分钟)诱发的ABP下降和FVC增加。ZM 241385还使腺苷诱导的FVC增加降低了约50%,但对缺氧诱导的FVC增加没有影响。4. 在这些相同的研究中,在给予DPCPX或ZM 241385之前,缺氧对K+的静脉-动脉差值([K+]v-a)没有影响,而在给予任何一种拮抗剂后,缺氧显著降低了[K+]v-a,表明缺氧诱导的K+摄取增加或K+外流减少。5. 这些结果表明,A1和A2A受体均存在于后肢肌肉中,且可介导血管舒张,并且A1和A2A受体对注入腺苷诱导的舒张作用贡献相同。然而,它们表明全身缺氧期间释放的内源性腺苷仅通过作用于A1受体诱导血管舒张。鉴于先前的证据表明腺苷可刺激与ATP敏感性K+(KATP)通道偶联的骨骼肌纤维上的受体,从而促进K+外流,我们的结果提出KATP通道可能与A1和A2A受体均偶联,并且可能被缺氧期间释放的腺苷刺激开放,但表明在全身缺氧期间,由任一受体亚型引起的K+外流对肌肉血管舒张的贡献非常小。

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