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兔胸主动脉中两种不同α1-肾上腺素能受体亚型的药理学特性

Pharmacological characterization of two distinct alpha 1-adrenoceptor subtypes in rabbit thoracic aorta.

作者信息

Oshita M, Kigoshi S, Muramatsu I

机构信息

Department of Pharmacology, Fukui Medical School, Japan.

出版信息

Br J Pharmacol. 1993 Apr;108(4):1071-6. doi: 10.1111/j.1476-5381.1993.tb13507.x.

Abstract
  1. alpha 1-Adrenoceptor subtypes in rabbit thoracic aorta have been examined in binding and functional experiments. 2. [3H]-prazosin bound to two distinct populations of alpha 1-adrenoceptors (pKD,high = 9.94, Rhigh = 79.2 fmol mg-1 protein; pKD,low = 8.59, Rlow = 215 fmol mg-1 protein). Pretreatment with chloroethylclonidine (CEC, 10 microM) almost inactivated the prazosin-high affinity sites and reduced the number of the low affinity sites without changing the pKD value. 3. In the displacement experiments with CEC-untreated membranes, unlabelled prazosin, WB4101 and HV723 displaced the binding of 200 pM [3H]-prazosin monophasically; the affinities for WB4101 (pK1 = 8.88) and HV723 (8.49) were about 10 times lower than that for prazosin (9.99). In the CEC-pretreated membranes also, the antagonists inhibited the binding of 1000 pM [3H]-prazosin monophasically; the pK1 values for prazosin, WB4101 and HV723 were 9.09, 8.97 and 8.17, respectively. These results suggest that the prazosin-high and low affinity sites can be independently appraised in the former and latter experimental conditions. Noradrenaline, but not methoxamine, showed slightly higher affinity for the prazosin-high affinity site than for the low affinity site. 4. In the functional experiments, noradrenaline (0.001-100 microM) and methoxamine (0.1-100 microM) produced concentration-dependent contractions. Pretreatment with CEC inhibited the contractions induced by low concentrations of noradrenaline but without effect on the responses to methoxamine. Prazosin inhibited the concentration-response curves for noradrenaline in the CEC-untreated aorta in a manner which was not consistent with competitive antagonism at a single site, and two distinct affinity constants(pKB = 9.71 and 8.74) were obtained. However, after CEC-pretreatment, Schild plots for prazosin were not significantly different from unity (pKB = 8.50). WB4101 and HV723 competitively inhibited the noradrenaline-induced contraction with low pKB values (approximately 8.30), irrespective of CEC pretreatment.Methoxamine-induced contractions were competitively inhibited by prazosin, WB4101 and HV723 with low pKB values similar to those obtained when noradrenaline was used as the agonist.These were not affected by CEC-pretreatment.5. The affinity constant for noradrenaline (pKA = 6.40) in CEC-untreated aorta was slightly greater than that obtained in CEC-pretreated aorta (5.78). On the other hand, methoxamine showed a similar affinity in CEC-untreated and pretreated aortae (pKA = approximately 4.5).6. Nifedipine (1 microM) slightly attenuated the contractile responses to noradrenaline and methoxamine in CEC-untreated and pretreated aortae, suggesting that nifedipine cannot discriminate between alpha 1-adrenoceptors involved in CEC-sensitive and -resistant contractions.7. From these results it is suggested that in the rabbit thoracic aorta there are two distinct alpha 1-adrenoceptor subtypes (presumably alpha 1B and alpha 1L subtypes according to recently proposed subclassification),both of which are involved in noradrenaline-induced contraction. The alpha 1L subtype predominantly mediates the contraction induced by methoxamine.
摘要
  1. 已通过结合实验和功能实验对兔胸主动脉中的α1 -肾上腺素能受体亚型进行了研究。2. [3H]-哌唑嗪与两种不同的α1 -肾上腺素能受体群体结合(高亲和力位点的pKD = 9.94,Rhigh = 79.2 fmol mg-1蛋白质;低亲和力位点的pKD = 8.59,Rlow = 215 fmol mg-1蛋白质)。用氯乙可乐定(CEC,10 microM)预处理几乎使哌唑嗪高亲和力位点失活,并减少了低亲和力位点的数量,而不改变pKD值。3. 在未用CEC处理的膜的置换实验中,未标记的哌唑嗪、WB4101和HV723单相置换200 pM [3H]-哌唑嗪的结合;对WB4101(pK1 = 8.88)和HV723(8.49)的亲和力比对哌唑嗪(9.99)低约10倍。在经CEC预处理的膜中,拮抗剂也单相抑制1000 pM [3H]-哌唑嗪的结合;哌唑嗪、WB4101和HV723的pK1值分别为9.09、8.97和8.17。这些结果表明,哌唑嗪高亲和力和低亲和力位点可在前述和后述实验条件下独立评估。去甲肾上腺素对哌唑嗪高亲和力位点的亲和力略高于对低亲和力位点的亲和力,而甲氧明则不然。4. 在功能实验中,去甲肾上腺素(0.001 - 100 microM)和甲氧明(0.1 - 100 microM)产生浓度依赖性收缩。用CEC预处理可抑制低浓度去甲肾上腺素诱导的收缩,但对甲氧明的反应无影响。哌唑嗪以一种与单一位点竞争性拮抗不一致的方式抑制未用CEC处理的主动脉中去甲肾上腺素的浓度 - 反应曲线,并获得两个不同的亲和力常数(pKB = 9.71和8.74)。然而,在CEC预处理后,哌唑嗪的Schild图与单位值无显著差异(pKB = 8.50)。无论是否用CEC预处理,WB4101和HV723均以低pKB值(约8.30)竞争性抑制去甲肾上腺素诱导的收缩。甲氧明诱导的收缩被哌唑嗪、WB4101和HV723竞争性抑制,其低pKB值与以去甲肾上腺素为激动剂时获得的值相似。这些不受CEC预处理的影响。5. 未用CEC处理的主动脉中去甲肾上腺素的亲和力常数(pKA = 6.40)略大于经CEC预处理的主动脉中获得的亲和力常数(5.78)。另一方面,甲氧明在未用CEC处理和预处理的主动脉中显示出相似的亲和力(pKA = 约4.5)。6. 硝苯地平(1 microM)在未用CEC处理和预处理的主动脉中均轻微减弱对去甲肾上腺素和甲氧明的收缩反应,表明硝苯地平无法区分参与CEC敏感和抗性收缩的α1 -肾上腺素能受体。7. 从这些结果表明,在兔胸主动脉中有两种不同的α1 -肾上腺素能受体亚型(根据最近提出的亚分类可能是α1B和α1L亚型),两者均参与去甲肾上腺素诱导的收缩。α1L亚型主要介导甲氧明诱导的收缩。

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