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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Nonpeptide angiotensin II receptor antagonist recognizes inter-species differences in angiotensin AT1 receptors.
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Nonpeptide angiotensin II receptor antagonist recognizes inter-species differences in angiotensin AT1 receptors.

机译:非肽血管紧张素II受体拮抗剂可识别血管紧张素AT1受体的种间差异。

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摘要

Oral administration of the angiotensin AT1 receptor antagonist 3-methyl-2,6-dimethyl-4-[[2'-(1H-tetrazol-5-yl)-1,1'-biphenyl-4-yl ]methoxy] pyridine (ME3221) inhibited the pressor response to angiotensin II at doses of 0.3-1.0 mg/kg in rats. A higher dose of ME3221 (3-10 mg/kg) was required to obtain the same inhibitory potency in dogs. The antagonistic potency of ME3221 for angiotensin II-induced contraction in the rabbit aorta (pA2 = 8.82) was about five times higher than that in the canine aorta (pA2 = 8.18). The inhibition constant of ME3221 for displacing [125I]angiotensin II binding to membrane fractions from the rabbit aorta (Ki = 3.84 nM) and rat liver (Ki = 2.55 nM) was significantly lower than that for the canine aorta (Ki = 84.5 nM), canine liver (Ki = 122 nM) and bovine adrenal cortex (Ki = 21.5 nM). In contrast, [Sar1, Ala8]angiotensin II had a similar inhibition constant (Ki = 0.85-4.67 nM) in the species investigated. Treatment with 5 mM dithiothreitol significantly (P < 0.01) reduced the angiotensin II-induced contractile response to 1.2% in the rabbit aorta, but it did not significantly reduce the response in the canine aorta (83.2%). Dithiothreitol reduced [125I]angiotensin II binding to membrane fractions from the rabbit aorta and the rat liver but partially inhibited binding in preparations that had a low affinity for ME3221. These data indicate a species difference in the angiotensin AT1 receptor: the canine and bovine angiotensin AT1 receptor has a relatively low affinity for ME3221 and is slightly resistant to dithiothreitol. The species difference in the angiotensin AT1 receptor reflects the in vivo efficacy of ME3221 in rats and dogs.
机译:口服给予血管紧张素AT1受体拮抗剂3-甲基-2,6-二甲基-4-[[2'-(1H-四唑-5-基)-1,1'-联苯-4-基]甲氧基]吡啶( ME3221)在大鼠中以0.3-1.0 mg / kg的剂量抑制了对血管紧张素II的升压反应。为了在犬中获得相同的抑制效力,需要更高剂量的ME3221(3-10 mg / kg)。 ME3221对血管紧张素II引起的兔主动脉收缩(pA2 = 8.82)的拮抗效力约为犬主动脉(pA2 = 8.18)的五倍。 ME3221取代[125I]血管紧张素II与兔主动脉(Ki = 3.84 nM)和大鼠肝脏(Ki = 2.55 nM)的膜部分的结合的抑制常数显着低于犬主动脉(Ki = 84.5 nM)。 ,犬肝(Ki = 122 nM)和牛肾上腺皮质(Ki = 21.5 nM)。相反,在所研究的物种中,[Sar1,Ala8]血管紧张素II具有相似的抑制常数(Ki = 0.85-4.67 nM)。 5 mM二硫苏糖醇治疗显着(P <0.01)使兔主动脉中血管紧张素II引起的收缩反应降低至1.2%,但并没有明显降低犬主动脉中的收缩反应(83.2%)。二硫苏糖醇减少了[125I]血管紧张素II与兔主动脉和大鼠肝脏膜组分的结合,但在对ME3221具有低亲和力的制剂中部分抑制了结合。这些数据表明了血管紧张素AT1受体的物种差异:犬和牛血管紧张素AT1受体对ME3221的亲和力较低,并且对二硫苏糖醇略有抵抗力。血管紧张素AT1受体的物种差异反映了ME3221在大鼠和狗中的体内功效。

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