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N,N'-二芳基和N-芳基-N-芳烷基胍的构象受限类似物作为神经元钠通道有效抑制剂的设计、合成及药理学评价

Design, synthesis, and pharmacological evaluation of conformationally constrained analogues of N,N'-diaryl- and N-aryl-N-aralkylguanidines as potent inhibitors of neuronal Na+ channels.

作者信息

Maillard M C, Perlman M E, Amitay O, Baxter D, Berlove D, Connaughton S, Fischer J B, Guo J Q, Hu L Y, McBurney R N, Nagy P I, Subbarao K, Yost E A, Zhang L, Durant G J

机构信息

Cambridge NeuroScience Inc., One Kendall Square, Cambridge, Massachusetts 02139, USA.

出版信息

J Med Chem. 1998 Jul 30;41(16):3048-61. doi: 10.1021/jm980124a.

Abstract

In the present investigation, the rationale for the design, synthesis, and biological evaluation of potent inhibitors of neuronal Na+ channels is described. N,N'-diaryl- and N-aryl-N-aralkylguanidine templates were locked in conformations mimicking the permissible conformations of the flexible diarylguanidinium ion (AS+, AA+, SS+). The resulting set of constrained guanidines termed "lockamers" (cyclophane, quinazoline, aminopyrimidazolines, aminoimidazolines, azocino- and tetrahydroquinolinocarboximidamides) was examined for neuronal Na+ channel blockade properties. Inhibition of [14C]guanidinium ion influx in CHO cells expressing type IIA Na+ channels showed that the aminopyrimidazoline 9b and aminoimidazoline 9d, compounds proposed to lock the N,N'-diarylguanidinium in an SS+ conformation, were the most potent Na+ channel blockers with IC50's of 0.06 microM, a value 17 times lower than that of the parent flexible compound 18d. The rest of the restricted analogues with 4-p-alkyl substituents retained potency with IC50 values ranging between 0.46 and 2.9 microM. Evaluation in a synaptosomal 45Ca2+ influx assay showed that 9b did not exhibit high selectivity for neuronal Na+ vs Ca2+ channels. The retention of significant neuronal Na+ blockade in all types of semirigid conformers gives evidence for a multiple mode of binding in this class of compounds and can possibly be attributed to a poor structural specificity of the site(s) of action. Compound 9b was also found to be the most active compound in vivo based on the high level of inhibition of seizures exhibited in the DBA/2 mouse model. The pKa value of 9b indicates that 9b binds to the channel in its protonated form, and log D vs pH measurements suggest that ion-pair partitioning contributes to membrane transport. This compound stands out as an interesting lead for further development of neurotherapeutic agents.

摘要

在本研究中,描述了设计、合成和生物学评价强效神经元钠离子通道抑制剂的基本原理。N,N'-二芳基胍和N-芳基-N-芳烷基胍模板被锁定在模拟柔性二芳基胍离子(AS +、AA +、SS +)允许构象的构象中。对由此产生的一组被称为“锁聚物”(环番、喹唑啉、氨基嘧啶唑啉、氨基咪唑啉、氮杂环辛烷和四氢喹啉甲脒)的受限胍进行了神经元钠离子通道阻断特性研究。在表达IIA型钠离子通道的CHO细胞中对[14C]胍离子内流的抑制作用表明,氨基嘧啶唑啉9b和氨基咪唑啉9d这两种被认为将N,N'-二芳基胍锁定在SS +构象的化合物是最有效的钠离子通道阻滞剂,IC50为0.06 μM,该值比母体柔性化合物18d低17倍。其余带有4-对烷基取代基的受限类似物保持了效力,IC50值在0.46至2.9 μM之间。在突触体45Ca2 +内流试验中的评价表明,9b对神经元钠离子通道与钙离子通道没有表现出高选择性。在所有类型的半刚性构象体中都保留了显著的神经元钠离子阻断作用,这证明了这类化合物存在多种结合模式,并且可能归因于作用位点的结构特异性较差。基于在DBA/2小鼠模型中表现出的对癫痫发作的高度抑制,化合物9b在体内也被发现是最具活性的化合物。9b的pKa值表明9b以其质子化形式与通道结合,并且log D对pH的测量表明离子对分配有助于膜转运。该化合物作为神经治疗药物进一步开发的一个有趣先导脱颖而出。

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