Laboratory of Fine Organic Chemistry, Department of Chemistry and Biochemistry, Faculty of Sciences and Technology of São Paulo State University, Presidente Prudente, São Paulo, 19060-900, Brazil.
Department of Pharmaceutical Chemistry, Faculty of Life Sciences, University of Vienna, Althanstraße 14, 1090, Vienna, Austria.
Amino Acids. 2022 Jan;54(1):85-98. doi: 10.1007/s00726-021-03106-4. Epub 2021 Nov 29.
Dopamine is an important neurotransmitter that regulates numerous essential functions, including cognition and voluntary movement. As such, it serves as an important scaffold for synthesis of novel analogues as part of drug development effort to obtain drugs for treatment of neurodegenerative diseases, such as Parkinson's disease. To that end, similarity search of the ZINC database based on two known dopamine-1 receptor (D1R) agonists, dihydrexidine (DHX) and SKF 38393, respectively, was used to predict novel chemical entities with potential binding to D1R. Three compounds that showed the highest similarity index were selected for synthesis and bioactivity profiling. All main synthesis products as well as the isolated intermediates, were properly characterized. The physico-chemical analyses were performed using HRESIMS, GC/MS, LC/MS with UV-Vis detection, and FTIR, H NMR and C NMR spectroscopy. Binding to D1 and D2 receptors and inhibition of dopamine reuptake via dopamine transporter were measured for the synthesized analogues of DHX and SKF 38393.
多巴胺是一种重要的神经递质,调节着许多重要的功能,包括认知和自主运动。因此,它是合成新型类似物的重要支架,是开发治疗神经退行性疾病(如帕金森病)药物的药物研发工作的一部分。为此,基于两种已知的多巴胺-1 受体(D1R)激动剂二氢可待因(DHX)和 SKF 38393,对 ZINC 数据库进行了相似性搜索,以预测具有潜在 D1R 结合能力的新型化学实体。选择了三个显示出最高相似度指数的化合物进行合成和生物活性分析。所有主要的合成产物以及分离的中间体都得到了适当的表征。使用 HRESIMS、GC/MS、LC/MS 与 UV-Vis 检测以及 FTIR、H NMR 和 C NMR 光谱进行了物理化学分析。对 DHX 和 SKF 38393 的合成类似物进行了 D1 和 D2 受体结合以及通过多巴胺转运蛋白抑制多巴胺再摄取的测定。