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Functionalized Congener Approach to Muscarinic Antagonists: Analogues of Pirenzepine

机译:毒蕈碱拮抗剂的功能化同类药物方法:哌仑西平类似物

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摘要

The M1-selective muscarinic receptor antagonist pirenzepine (5,11-dihydro-11-[(4-methyl-1-piperazinyl)acetyl]-6H-pyrido[2,3-b] [1,4]benzodiazepin-6-one) was derivatized to explore points of attachment of functionalized side chains for the synthesis of receptor probes and ligands for affinity chromatography. The analogues prepared were evaluated in competitive binding assays versus [3H]-N-methylscopolamine at four muscarinic receptor subtypes (m1AChR-m4AChR) in membranes from rat heart tissue and transfected A9L cells. 9-(Hydroxymethyl)pirenzepine, 8-(methylthio)pirenzepine, and a series of 8-aminosulfonyl derivatives were synthesized. Several 5-substituted analogues of pirenzepine also were prepared. An alternate series of analogues substituted on the 4-position of the piperazine ring was prepared by reaction of 4-desmethylpirenzepine with various electrophiles. An N-chloroethyl analogue of pirenzepine was shown to form a reactive aziridine species in aqueous buffer yet failed to affinity label muscarinic receptors. Within a series of aminoalkyl analogues, the affinity increased as the length of the alkyl chain increased. Shorter chain analogues were generally much less potent than pirenzepine, and longer analogues (7–10 carbons) were roughly as potent as pirenzepine at m1 receptors, but were nonselective. Depending on the methylene chain length, acylation or alkyl substitution of the terminal amine also influenced the affinity at muscarinic receptors.
机译:M1选择性毒蕈碱受体拮抗剂哌仑西平(5,11-二氢-11-[(4-甲基-1-哌嗪基)乙酰基] -6H-吡啶并[2,3-b] [1,4]苯并二氮杂-6-衍生化以探索官能化侧链的连接点,以合成受体探针和亲和色谱的配体。在大鼠心脏组织和转染的A9L细胞膜中,对四种毒蕈碱受体亚型(m1AChR-m4AChR)与[ 3 H] -N-甲基东pol碱进行竞争性结合分析,评估了制备的类似物。合成了9-(羟甲基)苯并ze庚因,8-(甲硫基)苯并ze庚因和一系列8-氨基磺酰基衍生物。还制备了哌仑西平的几种5-取代的类似物。通过使4-去甲基哌仑西平与各种亲电试剂反应来制备在哌嗪环的4-位上取代的一系列类似物。哌仑西平的N-氯乙基类似物显示在水性缓冲液中形成反应性氮丙啶类物质,但未亲和标记毒蕈碱受体。在一系列氨基烷基类似物中,亲和力随烷基链长度的增加而增加。短链类似物的效力通常比哌仑西平低得多,而较长的类似物(7-10个碳原子)在m1受体上的效力与哌仑西平大致相同,但是非选择性的。取决于亚甲基链的长度,末端胺的酰化或烷基取代也影响对毒蕈碱受体的亲和力。

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