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Using click chemistry toward novel 123-triazole-linked dopamine D3 receptor ligands

机译:使用点击化学方法研究新型的123-三唑连接的多巴胺D3受体配体

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摘要

The dopamine D3 receptor (D3R) is a target of pharmacotherapeutic interest in a variety of neurological disorders including schizophrenia, Parkinson's disease, restless leg syndrome, and drug addiction. A common molecular template used in the development of D3R-selective antagonists and partial agonists incorporates a butylamide linker between two pharmacophores, a phenylpiperazine moiety and an extended aryl ring system. The series of compounds described herein incorporates a change to that chemical template, replacing the amide functional group in the linker chain with a 1,2,3-triazole group. Although the amide linker in the 4-phenylpiperazine class of D3R ligands has been previously deemed critical for high D3R affinity and selectivity, the 1,2,3-triazole moiety serves as a suitable bioisosteric replacement and maintains desired D3R-binding functionality of the compounds. Additionally, using mouse liver microsomes to evaluate CYP450-mediated phase I metabolism, we determined that novel 1,2,3-triazole-containing compounds modestly improves metabolic stability compared to amide-containing analogues. The 1,2,3-triazole moiety allows for the modular attachment of chemical subunit libraries using copper-catalyzed azide-alkyne cycloaddition click chemistry, increasing the range of chemical entities that can be designed, synthesized, and developed toward D3R-selective therapeutic agents.
机译:多巴胺D3受体(D3R)是各种神经系统疾病(包括精神分裂症,帕金森氏病,不安腿综合征和药物成瘾)的药物治疗目标。用于开发D3R选择性拮抗剂和部分激动剂的常用分子模板在两个药效基团,苯基哌嗪部分和扩展的芳基环系统之间引入了丁基酰胺连接基。本文所述的一系列化合物并入了该化学模板的变化,用1,2,3-三唑基取代了连接链中的酰胺官能团。尽管以前已认为D3R配体的4-苯基哌嗪类中的酰胺连接基对高D3R亲和力和选择性至关重要,但1,2,3-三唑部分可作为合适的生物等位取代物,并保持化合物所需的D3R结合功能。此外,使用小鼠肝微粒体评估CYP450介导的I期代谢,我们确定与包含酰胺的类似物相比,新型包含1,2,3-三唑的化合物可适度改善代谢稳定性。 1,2,3-三唑部分允许使用铜催化的叠氮化物-炔烃环加成点击化学对化学亚基库进行模块化连接,从而增加了可针对D3R选择性治疗剂设计,合成和开发的化学实体的范围。

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