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H3受体拮抗剂碘苯丙胺和硫代哌酰胺的受体选择性评估:揭示了与5-HT3受体的相互作用。

Evaluation of the receptor selectivity of the H3 receptor antagonists, iodophenpropit and thioperamide: an interaction with the 5-HT3 receptor revealed.

作者信息

Leurs R, Tulp M T, Menge W M, Adolfs M J, Zuiderveld O P, Timmerman H

机构信息

Department of Pharmacochemistry, Faculty of Chemistry, Vrije Universiteit, Amsterdam, The Netherlands.

出版信息

Br J Pharmacol. 1995 Oct;116(4):2315-21. doi: 10.1111/j.1476-5381.1995.tb15071.x.

Abstract
  1. In the present study we evaluated the receptor selectivity of the potent histamine H3 receptor antagonist, iodophenpropit (IPP) in comparison with the prototype antagonist, thioperamide. 2. IPP proved to be a potent competitive H3 receptor antagonist as measured against (R)-alpha-methylhistamine-induced inhibition of electrically-evoked contractions of the guinea-pig jejunum (pA2 = 9.12 +/- 0.06, Schild slope: 1.0 +/- 0.1, n = 8). In the same assay, thioperamide was slightly less potent (pA2 = 8.9 +/- 0.2). 3. In radioligand binding studies, IPP showed a high affinity for the H3 receptor. Displacement of [125I]-IPP binding to rat cortex membranes by unlabelled IPP resulted in a Ki value of 0.97 +/- 0.06 nM (n = 3). In contrast, IPP showed only a weak affinity for the histamine H1- and H2 receptor. Displacement of [3H]-mepyramine and [125I]-iodoaminopotentidine binding to respectively guinea-pig H1- and human H2 receptors by IPP resulted in Ki values of 1.71 +/- 0.32 microM (n = 3) and 2.28 +/- 0.81 microM (n = 3). For thioperamide the affinities for the H1-, H2- and H3 receptor were respectively > 10 microM, > 10 microM and 4.3 +/- 1.6 nM (n = 7). 4. Testing IPP and thioperamide in 39 different receptor binding assays revealed that IPP showed relatively high affinity for the 5-hydroxytryptamine 5-HT3 receptor (Ki = 11 +/- 1 nM, n = 3), the alpha 2-adrenoceptor (Ki = 120 +/- 5 nM, n = 3) and the sigma receptor (Ki = 170 +/- 70 nM, n = 3). Thioperamide showed relatively high affinity for the 5-HT3 receptor (Ki = 120 +/- 30 nM, n = 3) and the sigma receptor (Ki = 180 +/- 90 nM, n = 3). 5. Due to the low density of histamine H3 receptors in the brain, the interaction of IPP with the 5-HT3-, the alpha 2- and the sigma receptor might interfere with [125I]-IPP binding to rat cortex membranes. Yet, in this preparation [125I]-IPP binding was not influenced by ondansetron, yohimbine or haloperidol. The interaction with the 5-HT3 receptor was not restricted to IPP or thioperamide, but was alsofound with other H3 receptor antagonists. The potent H3 receptor agonist imetit, a compound belongingto the same chemical class of IPP, also interacted with the 5-HT3 receptor (Ki = 240 +/- 40 nM). In contrast,histamine or the H3 receptor agonist, (R)-a-methylhistamine showed no affinity for the 5-HT3 receptor.7 In the guinea-pig isolated ileum, imetit evoked concentration-dependent contractions, resulting in apD2 value of 4.72 +/- 0.03 (n = 9). The contractions were antagonized by ondansetron, yielding a pA2 valueof 7.1 +/- 0.1 (n = 9). Similarly ondansetron antagonized the contractions evoked by the 5-HT3 receptoragonist, 2-methyl-5-HT with a pA2 value of 7.3 +/- 0.1 (n = 4). IPP and thioperamide did not mimic 2-methyl-5-HT but non-competitively inhibited the 2-methyl-5-HT-induced contractions of thispreparation.8 In an in vivo model for 5-HT3 activity, the Von Bezold Jarisch reflex, thioperamide showedantagonism in low dosages, which correlated well with the affinity for the 5-HT3 receptor site. Yet, athigher dosages no further 5-HT3 receptor antagonism was observed. For IPP no 5-HT3 receptor activitycould be observed in vivo.9 In the present study we showed that many H3 receptor compounds, that are regarded as highlyselective (including the prototype drug, thioperamide), also interact with the 5-HT3 receptor, albeit athigher drug concentrations.Keywords.: Histamine H3-receptor; iodophenpropit; thioperamide; receptor selectivity; 5-hydroxytryptamine 5-HT3 receptor;guinea-pig intestine; rat brain; Von Bezold Jarisch reflex
摘要
  1. 在本研究中,我们评估了强效组胺H3受体拮抗剂碘苯丙哌(IPP)与原型拮抗剂硫代哌酰胺相比的受体选择性。2. 以豚鼠空肠电诱发收缩的(R)-α-甲基组胺诱导抑制作用来衡量,IPP被证明是一种强效竞争性H3受体拮抗剂(pA2 = 9.12±0.06,希尔斜率:1.0±0.1,n = 8)。在相同实验中,硫代哌酰胺的效力稍低(pA2 = 8.9±0.2)。3. 在放射性配体结合研究中,IPP对H3受体显示出高亲和力。未标记的IPP对大鼠皮层膜上[125I]-IPP结合的置换产生的Ki值为0.97±0.06 nM(n = 3)。相比之下,IPP对组胺H1和H2受体仅显示出弱亲和力。IPP对豚鼠H1受体上[3H]-美吡拉敏和人H2受体上[125I]-碘氨普立定结合的置换产生的Ki值分别为1.71±0.32 μM(n = 3)和2.28±0.81 μM(n = 3)。对于硫代哌酰胺,其对H1、H2和H3受体的亲和力分别>10 μM、>10 μM和4.3±1.6 nM(n = 7)。4. 在39种不同的受体结合实验中对IPP和硫代哌酰胺进行测试,结果显示IPP对5-羟色胺5-HT3受体(Ki = 11±1 nM,n = 3)、α2-肾上腺素能受体(Ki = 120±5 nM,n = 3)和σ受体(Ki = 170±70 nM,n = 3)显示出相对较高的亲和力。硫代哌酰胺对5-HT3受体(Ki = 120±30 nM,n = 3)和σ受体(Ki = 180±90 nM,n = 3)显示出相对较高的亲和力。5. 由于脑中组胺H3受体密度较低,IPP与5-HT3、α2和σ受体的相互作用可能会干扰[125I]-IPP与大鼠皮层膜的结合。然而,在此制剂中,[125I]-IPP结合不受昂丹司琼、育亨宾或氟哌啶醇的影响。与5-HT3受体的相互作用并不局限于IPP或硫代哌酰胺,其他H3受体拮抗剂也存在这种情况。强效H3受体激动剂碘甲磺隆,一种与IPP属于同一化学类别的化合物,也与5-HT3受体相互作用(Ki = 240±40 nM)。相比之下,组胺或H3受体激动剂(R)-α-甲基组胺对5-HT3受体无亲和力。7. 在豚鼠离体回肠中,碘甲磺隆引起浓度依赖性收缩,产生的pD2值为4.72±0.03(n = 9)。这些收缩被昂丹司琼拮抗,产生的pA2值为7.1±0.1(n = 9)。同样,昂丹司琼拮抗5-HT3受体激动剂2-甲基-5-HT引起的收缩,pA2值为7.3±0.1(n = 4)。IPP和硫代哌酰胺不模拟2-甲基-5-HT,但非竞争性抑制该制剂中2-甲基-5-HT诱导的收缩。8. 在5-HT3活性的体内模型,即冯贝佐尔德-贾里什反射中,硫代哌酰胺在低剂量时显示出拮抗作用,这与对5-HT3受体位点的亲和力密切相关。然而,在较高剂量时未观察到进一步的5-HT3受体拮抗作用。对于IPP未观察到体内5-HT3受体活性。9. 在本研究中我们表明,许多被认为具有高度选择性的H3受体化合物(包括原型药物硫代哌酰胺)也与5-HT3受体相互作用,尽管是在较高药物浓度下。关键词:组胺H3受体;碘苯丙哌;硫代哌酰胺;受体选择性;5-羟色胺5-HT3受体;豚鼠肠道;大鼠脑;冯贝佐尔德-贾里什反射

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