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嘌呤对大鼠结肠纵行肌的影响。

Effects of purines on the longitudinal muscle of the rat colon.

作者信息

Bailey S J, Hourani S M

机构信息

Receptors and Cellular Regulation Research Group, School of Biological Sciences, University of Surrey, Guildford.

出版信息

Br J Pharmacol. 1992 Apr;105(4):885-92. doi: 10.1111/j.1476-5381.1992.tb09073.x.

Abstract
  1. Adenosine and adenosine 5'-triphosphate (ATP) have been reported to cause relaxation of the rat colon longitudinal muscle preparation; the purinoceptors mediating this effect were investigated by use of a series of agonists and antagonists. 2. The tissue was precontracted with carbachol (1 microM), and the purines induced reversible relaxations with a potency order of 5'-N-ethylcarboxamidoadenosine (NECA) greater than N6-cyclopentyladenosine (CPA) = adenosine 5'-(alpha, beta-methylene) triphosphonate (AMPCPP) greater than adenosine = adenylyl 5'-(beta, gamma-methylene) disphosphonate (AMPPCP) = ATP. The P1-selective antagonist 1,3-dipropyl-8-cyclopentylxanthine (DPCPX) (3 microM) shifted to the right the log concentration-response curves of all these agonists except for AMPCPP, indicating that they all act via P1-purinoceptors. The order of potency of the adenosine analogues and the relatively high concentrations of the antagonist required indicated that these receptors are of the A2 subtype. The P2-selective antagonist suramin (300 microM) inhibited responses to AMPCPP, but not to the other agonists. 3. The dephosphorylation of the nucleotides was studied by high performance liquid chromatography following incubation with the longitudinal muscle preparation for up to 30 min. ATP was rapidly degraded, largely to adenosine, and AMPPCP and AMPCPP were also degraded, although more slowly, to adenosine and adenosine 5'-(alpha, beta-methylene) diphosphonate (AMPCP) respectively. AMPCP, like AMPCPP, caused relaxations by acting on P2-purinoceptors, as it was also inhibited by suramin (300 microM). Incubation of the tissue with adenosine deaminase abolished responses to adenosine, reduced those to ATP and AMPPCP, but had no effect on those to AMPCPP.ATP and AMPPCP therefore appear to be acting on the A2 receptors in this tissue largely via their degradation product adenosine.4. The longitudinal muscle of the rat colon therefore contains both P.- and P2-purinoceptors, which both mediate relaxation. The P,-purinoceptors are of the A2 subtype and the P2-purinoceptors are probably of the P2Y subtype, although the rapid degradation of the nucleotides means that it is difficult to classify them with certainty.
摘要
  1. 据报道,腺苷和5'-三磷酸腺苷(ATP)可使大鼠结肠纵肌标本舒张;通过使用一系列激动剂和拮抗剂研究了介导此效应的嘌呤受体。2. 用卡巴胆碱(1微摩尔)使组织预先收缩,嘌呤类物质可诱导可逆性舒张,其效力顺序为5'-N-乙基甲酰胺基腺苷(NECA)>N6-环戊基腺苷(CPA)=腺苷5'-(α,β-亚甲基)三膦酸酯(AMPCPP)>腺苷=腺苷-5'-(β,γ-亚甲基)二膦酸酯(AMPPCP)=ATP。P1选择性拮抗剂1,3-二丙基-8-环戊基黄嘌呤(DPCPX)(3微摩尔)使除AMPCPP外所有这些激动剂的对数浓度-反应曲线右移,表明它们均通过P1嘌呤受体起作用。腺苷类似物的效力顺序以及所需拮抗剂的相对高浓度表明这些受体属于A2亚型。P2选择性拮抗剂苏拉明(300微摩尔)抑制对AMPCPP的反应,但不抑制对其他激动剂的反应。3. 与纵肌标本孵育长达30分钟后,通过高效液相色谱法研究核苷酸的去磷酸化。ATP迅速降解,主要降解为腺苷,AMPCP和AMPCPP也发生降解,尽管降解较慢,分别降解为腺苷和腺苷5'-(α,β-亚甲基)二膦酸酯(AMPCP)。AMPCP与AMPCPP一样,通过作用于P2嘌呤受体引起舒张,因为它也被苏拉明(300微摩尔)抑制。用腺苷脱氨酶孵育组织可消除对腺苷的反应,降低对ATP和AMPCP的反应,但对AMPCPP的反应无影响。因此,ATP和AMPCP在该组织中似乎主要通过其降解产物腺苷作用于A2受体。4. 因此,大鼠结肠纵肌含有P1和P2嘌呤受体,二者均介导舒张。P1嘌呤受体属于A2亚型,P2嘌呤受体可能属于P2Y亚型,尽管核苷酸的快速降解意味着难以确切对它们进行分类。

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