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介导大鼠空肠蠕动抑制的腺苷受体的功能特性

Functional characterization of the adenosine receptor mediating inhibition of peristalsis in the rat jejunum.

作者信息

Hancock D L, Coupar I M

机构信息

Department of Pharmaceutical Biology and Pharmacology, Victorian College of Pharmacy, Monash University, Parkville, Victoria, Australia.

出版信息

Br J Pharmacol. 1995 Jul;115(5):739-44. doi: 10.1111/j.1476-5381.1995.tb14995.x.

Abstract
  1. The non-selective adenosine agonist, 5'-N-ethylcarboxamidoadenosine (NECA), is a potent inhibitor of morphine withdrawal diarrhoea in rats. More recently we found that NECA exerts its antidiarrhoeal effect by inhibiting secretion in both the jejunum and ileum and also by inhibiting peristalsis in the ileum. The specific aim of this study was to characterize the receptor in the rat jejunum mediating inhibition of peristalsis via functional studies using a range of metabolically stable adenosine analogues based on the pharmacological criteria of relative agonist and antagonist potencies. 2. Peristalsis in the rat isolated jejunum was achieved by raising the pressure to between 7-11 cmH2O for 3 min followed by a 3 min rest period (pressure at zero). The mean rate of peristalsis during inflation was 7.3 +/- 0.1 peristaltic waves per 3 min and this rate remained consistent for up to 30 min, in 5 separate tissues. The inhibitory effects of the adenosine analogues were quantified by expressing their effects as a % reduction in the mean number of peristaltic contractions derived from the control tissues. 3. The rank order of agonist potency to reduce the rate of peristalsis was: N6-cyclopentyladenosine (CPA) > NECA > R(-)-N6-(2-phenylisopropyl)adenosine (R-PIA) > chloroadenosine (2-CADO) > S-PIA > 2-phenylaminoadenosine (CV-1808). This order complies well with the rank order of agonist potency that represents the activation of the A1 receptor subtype (CPA > R-PIA = CHA = > NECA > 2-CADO > S-PIA > CV-1808). 4. The selective A1 adenosine antagonist 1,3-dipropyl-8-cyclopentylxanthine (DPCPX) and the nonselective adenosine antagonist 8-phenyltheophylline (8-PT) at their respective concentrations of 10 nM and 2 microM caused parallel rightward shifts in the concentration-response curve to the non-selective Al/A2 agonist NECA. DPCPX was significantly more potent at inhibiting NECA than 8-PT as revealed by their apparent pA2 values; DPCPX (9.5) and 8-PT (7.26). The high affinity of DPCPX relative to that of 8-PT suggests the presence of an Al and not an A2B receptor. In addition, the high affinity of DPCPX(pA2:9.37) against the selective Al agonist CPA, further confirms the presence of the Al receptor subtype.5. In this study we found that the Al adenosine receptor is involved in regulating in vitro peristalsis which is different from the adenosine receptor regulating inhibition of secretion (A2B) in the same region of intestine of the same species. We propose that A2B adenosine agonists could be of clinical value in the management of diarrhoea that is due to microbiological organisms where antimotility effects are not desired.
摘要
  1. 非选择性腺苷激动剂5'-N-乙基羧基酰胺腺苷(NECA)是大鼠吗啡戒断性腹泻的有效抑制剂。最近我们发现,NECA通过抑制空肠和回肠的分泌以及抑制回肠的蠕动来发挥其止泻作用。本研究的具体目的是通过基于相对激动剂和拮抗剂效力的药理学标准,使用一系列代谢稳定的腺苷类似物进行功能研究,来表征大鼠空肠中介导蠕动抑制的受体。2. 通过将大鼠离体空肠的压力升至7 - 11 cmH₂O并保持3分钟,随后休息3分钟(压力为零)来实现蠕动。在5个独立组织中,充气期间蠕动的平均速率为每3分钟7.3±0.1次蠕动波,并且该速率在长达30分钟内保持一致。腺苷类似物的抑制作用通过将其作用表示为对照组织蠕动收缩平均次数减少的百分比来量化。3. 降低蠕动速率的激动剂效力的排序为:N⁶-环戊基腺苷(CPA)>NECA>R(-)-N⁶-(2-苯异丙基)腺苷(R-PIA)>氯腺苷(2-CADO)>S-PIA>2-苯氨基腺苷(CV-1808)。该顺序与代表A₁受体亚型激活的激动剂效力排序(CPA>R-PIA = CHA =>NECA>2-CADO>S-PIA>CV-1808)非常吻合。4. 选择性A₁腺苷拮抗剂1,3-二丙基-8-环戊基黄嘌呤(DPCPX)和非选择性腺苷拮抗剂8-苯基茶碱(8-PT),在其各自浓度10 nM和2 μM时,使对非选择性A₁/A₂激动剂NECA的浓度-反应曲线平行右移。DPCPX在抑制NECA方面比8-PT显著更有效,这由它们的表观pA₂值表明;DPCPX(9.5)和8-PT(7.26)。DPCPX相对于8-PT的高亲和力表明存在A₁而非A₂B受体。此外,DPCPX(pA₂:9.37)对选择性A₁激动剂CPA的高亲和力进一步证实了A₁受体亚型的存在。5. 在本研究中,我们发现A₁腺苷受体参与调节体外蠕动,这与调节同一物种同一肠道区域分泌抑制(A₂B)的腺苷受体不同。我们提出,A₂B腺苷激动剂在治疗由微生物引起的腹泻(在这种情况下不需要抗蠕动作用)方面可能具有临床价值。

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