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首页> 外文期刊>Journal of Medicinal Chemistry >Analogues of prazosin that bear a benextramine-related polyamine backbone exhibit different antagonism toward alpha1-adrenoreceptor subtypes.
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Analogues of prazosin that bear a benextramine-related polyamine backbone exhibit different antagonism toward alpha1-adrenoreceptor subtypes.

机译:带有苯甲酸胺相关多胺主链的哌唑嗪类似物对α1-肾上腺素受体亚型表现出不同的拮抗作用。

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Hybrid tetraaamine disulfides 4-9 were synthesized by combining the structural features of prazosin (1), a competitive alpha1-adrenoreceptor antagonist, and benextramine (2), an irreversible alpha1/alpha2-adrenoreceptor antagonist, and their biological profiles at alpha1-adrenoreceptor subtypes were assessed by functional experiments in isolated rat vas deferens (alpha1A), spleen (alpha1B), and aorta (alpha1D). To verify the role of the disulfide moiety on the interaction with alpha1-adrenoreceptor subtypes, carbon analogues 10-15 were included in this study. All quinazolines lacking the disulfide bridge behaved, like 1, as competitive antagonists, whereas all polyamine disulfides displayed a nonhomogeneous mechanism of inhibition at the three subtypes since they were, like 2, noncompetitive antagonists at the alpha1A and alpha1B subtypes while being, unlike 2, competitive antagonists at the alpha1D. In particular, the blocking effects were characterized by a decrease of the maximal response to noradrenaline that was affected only slightly by washings. Probably the alpha1A and alpha1B subtypes bear in the binding pocket a suitable thiol function that would suffer an interchange reaction with the disulfide moiety of the antagonist and which is missing, or not accessible, in the alpha1D subtype. Polyamines 8, 9, and 14, among others, emerged as promising tools for the characterization of alpha1-adrenoreceptors, owing to their receptor subtype selectivity. Finally, the effect of nonbasic substituents on the phenyl ring of prazosin analogues 16-28 on potency and selectivity for the different subtypes can hardly be rationalized.
机译:通过结合竞争性α1-肾上腺素受体拮抗剂prazosin(1)和不可逆性α1/α2-肾上腺素受体苯甲酸(2)的结构特征及其在α1肾上腺素受体亚型的生物学特征,合成了杂合四胺二硫化物4-9。通过功能实验在分离的大鼠输精管(alpha1A),脾脏(alpha1B)和主动脉(alpha1D)中进行评估。为了验证二硫键部分在与α1-肾上腺素受体亚型相互作用中的作用,本研究中包括了碳类似物10-15。所有缺少二硫键的喹唑啉类药物都像竞争性拮抗剂一样表现为1,而所有多胺二硫化物在这三个亚型上均表现出非均一的抑制机制,因为它们与2类似,在α1A和α1B亚型上是非竞争性拮抗剂,而与2不同。 alpha1D的竞争性拮抗剂。特别地,阻断作用的特征在于对去甲肾上腺素的最大反应的降低,其仅受洗涤影响很小。可能alpha1A和alpha1B亚型在结合袋中具有合适的硫醇功能,该功能会与拮抗剂的二硫键部分发生互换反应,并且在alpha1D亚型中缺失或无法接近。多胺8、9和14等因其受体亚型选择性而成为表征α1-肾上腺素受体的有前途的工具。最后,几乎不合理地推断非碱性取代基在哌唑嗪类似物16-28的苯环上对不同亚型的效力和选择性的影响。

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