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基于黄嘌呤和吡唑并吡啶的拮抗剂揭示的脑腺苷A1受体药理学中的物种差异。

Species differences in brain adenosine A1 receptor pharmacology revealed by use of xanthine and pyrazolopyridine based antagonists.

作者信息

Maemoto T, Finlayson K, Olverman H J, Akahane A, Horton R W, Butcher S P

机构信息

Fujisawa Institute of Neuroscience, University of Edinburgh, Osaka, Japan.

出版信息

Br J Pharmacol. 1997 Nov;122(6):1202-8. doi: 10.1038/sj.bjp.0701465.

Abstract
  1. The pharmacological profile of adenosine A1 receptors in human, guinea-pig, rat and mouse brain membranes was characterized in a radioligand binding assay by use of the receptor selective antagonist, [3H]-8-cyclopentyl-1,3-dipropylxanthine ([3H]-DPCPX). 2. The affinity of [3H]-DPCPX binding sites in rat cortical and hippocampal membranes was similar. Binding site affinity was higher in rat cortical membranes than in membranes prepared from guinea-pig cortex and hippocampus, mouse cortex and human cortex. pKD values (M) were 9.55, 9.44, 8.85, 8.94, 8.67, 9.39 and 8.67, respectively. The binding site density (Bmax) was lower in rat cortical membranes than in guinea-pig or human cortical membranes. 3. The rank order of potency of seven adenosine receptor agonists was identical in each species. With the exception of 5'-N-ethylcarboxamidoadenosine (NECA), agonist affinity was 3.5-26.2 fold higher in rat cortical membranes than in human and guinea-pig brain membranes; affinity in rat and mouse brain membranes was similar. While NECA exhibited 9.3 fold higher affinity in rat compared to human cortical membranes, affinity in other species was comparable. The stable GTP analogue, Gpp(NH)p (100 microM) reduced 2-chloro-N6-cyclopentyladenosine (CCPA) affinity 7-13.9 fold, whereas the affinity of DPCPX was unaffected. 4. The affinity of six xanthine-based adenosine receptor antagonists was 2.2-15.9 fold higher in rat cortical membranes compared with human or guinea-pig membranes. The rank order of potency was species-independent. In contrast, three pyrazolopyridine derivatives, (R)-1-[(E)-3-(2-phenylpyrazolo[1,5-a]pyridin-3-yl) acryloyl]-2-piperidine ethanol (FK453), (R)-1-[(E)-3-(2-phenylpyrazolo[1,5-a]pyridin-3-yl) acryloyl]-piperidin-2-yl acetic acid (FK352) and 6-oxo-3-(2-phenylpyrazolo[1,5-a]pyridin-3-yl)-1(6H)-pyridazinebutyric acid (FK838) exhibited similar affinity in human, guinea-pig, rat and mouse brain membranes. pKi values (M) for [3H]-DPCPX binding sites in human cortical membranes were 9.31, 7.52 and 7.92, respectively. 5. Drug affinity for adenosine A2A receptors was determined in a [3H]-2-[4-(2-carboxyethyl)phenethylamino]-5'-N-ethylcarboxamido ade nosine ([3H]-CGS 21680) binding assay in rat striatal membranes. The pyrazolopyridine derivatives, FK453, FK838 and FK352 exhibited pKi values (M) of 5.90, 5.92 and 4.31, respectively, compared with pKi values of 9.31, 8.18 and 7.57 determined in the [3H]-DPCPX binding assay in rat cortical membranes. These novel pyrazolopyridine derivatives therefore represent high affinity, adenosine A1 receptor selective drugs that, in contrast to xanthine based antagonists, exhibit similar affinity for [3H]-DPCPX binding sites in human, rat, mouse and guinea-pig brain membranes.
摘要
  1. 在放射性配体结合试验中,使用受体选择性拮抗剂[3H]-8-环戊基-1,3-二丙基黄嘌呤([3H]-DPCPX)对人、豚鼠、大鼠和小鼠脑膜中腺苷A1受体的药理学特性进行了表征。2. [3H]-DPCPX在大鼠皮质和海马膜中的结合位点亲和力相似。大鼠皮质膜中的结合位点亲和力高于豚鼠皮质和海马、小鼠皮质及人皮质制备的膜中的亲和力。pKD值(M)分别为9.55、9.44、8.85、8.94、8.67、9.39和8.67。大鼠皮质膜中的结合位点密度(Bmax)低于豚鼠或人皮质膜中的密度。3. 七种腺苷受体激动剂的效价顺序在每个物种中相同。除5'-N-乙基甲酰胺基腺苷(NECA)外,大鼠皮质膜中激动剂的亲和力比人和豚鼠脑膜中的高3.5 - 26.2倍;大鼠和小鼠脑膜中的亲和力相似。虽然与人类皮质膜相比,NECA在大鼠中的亲和力高9.3倍,但在其他物种中的亲和力相当。稳定的GTP类似物Gpp(NH)p(100 microM)使2-氯-N6-环戊基腺苷(CCPA)的亲和力降低7 - 13.9倍,而DPCPX的亲和力不受影响。4. 六种基于黄嘌呤的腺苷受体拮抗剂在大鼠皮质膜中的亲和力比人或豚鼠膜中的高2.2 - 15.9倍。效价顺序与物种无关。相比之下,三种吡唑并吡啶衍生物,(R)-1-[(E)-3-(2-苯基吡唑并[1,5-a]吡啶-3-基)丙烯酰基]-2-哌啶乙醇(FK453)、(R)-1-[(E)-3-(2-苯基吡唑并[1,5-a]吡啶-3-基)丙烯酰基]-哌啶-2-基乙酸(FK352)和6-氧代-3-(2-苯基吡唑并[1,5-a]吡啶-3-基)-1(6H)-哒嗪丁酸(FK838)在人、豚鼠、大鼠和小鼠脑膜中表现出相似的亲和力。人皮质膜中[3H]-DPCPX结合位点的pKi值(M)分别为9.31、7.52和7.92。5. 在大鼠纹状体膜的[3H]-2-[4-(2-羧乙基)苯乙氨基]-5'-N-乙基甲酰胺基腺苷([3H]-CGS 21680)结合试验中测定了药物对腺苷A2A受体的亲和力。吡唑并吡啶衍生物FK453、FK838和FK352的pKi值(M)分别为5.90、5.92和4.31,而在大鼠皮质膜的[3H]-DPCPX结合试验中测定的pKi值分别为9.31、8.18和7.57。因此,这些新型吡唑并吡啶衍生物代表了高亲和力、腺苷A1受体选择性药物,与基于黄嘌呤的拮抗剂不同,它们在人、大鼠、小鼠和豚鼠脑膜中对[3H]-DPCPX结合位点表现出相似的亲和力。

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