Maramai Samuele, Gemma Sandra, Brogi Simone, Campiani Giuseppe, Butini Stefania, Stark Holger, Brindisi Margherita
European Research Centre for Drug Discovery and Development and Department of Biotechnology, Chemistry and Pharmacy, University of Siena Siena, Italy.
Institut fuer Pharmazeutische and Medizinische Chemie, Heinrich-Heine-Universitaet Duesseldorf Duesseldorf, Germany.
Front Neurosci. 2016 Oct 5;10:451. doi: 10.3389/fnins.2016.00451. eCollection 2016.
D3 receptors represent a major focus of current drug design and development of therapeutics for dopamine-related pathological states. Their close homology with the D2 receptor subtype makes the development of D3 selective antagonists a challenging task. In this review, we explore the relevance and therapeutic utility of D3 antagonists or partial agonists endowed with multireceptor affinity profile in the field of central nervous system disorders such as schizophrenia and drug abuse. In fact, the peculiar distribution and low brain abundance of D3 receptors make them a valuable target for the development of drugs devoid of motor side effects classically elicited by D2 antagonists. Recent research efforts were devoted to the conception of chemical templates possibly endowed with a multi-target profile, especially with regards to other G-protein-coupled receptors (GPCRs). A comprehensive overview of the recent literature in the field is herein provided. In particular, the evolution of the chemical templates has been tracked, according to the growing advancements in both the structural information and the refinement of the key pharmacophoric elements. The receptor/multireceptor affinity and functional profiles for the examined compounds have been covered, together with their most significant pharmacological applications.
D3受体是当前针对多巴胺相关病理状态的药物设计和治疗药物开发的主要焦点。它们与D2受体亚型的高度同源性使得开发D3选择性拮抗剂成为一项具有挑战性的任务。在本综述中,我们探讨了具有多受体亲和力特征的D3拮抗剂或部分激动剂在中枢神经系统疾病如精神分裂症和药物滥用领域的相关性和治疗效用。事实上,D3受体独特的分布和在脑中的低丰度使其成为开发无D2拮抗剂经典引发的运动副作用药物的有价值靶点。最近的研究致力于设计可能具有多靶点特征的化学模板,特别是针对其他G蛋白偶联受体(GPCR)。本文提供了该领域近期文献的全面概述。特别是,根据结构信息和关键药效基团的优化方面的不断进展,追踪了化学模板的演变。涵盖了所研究化合物的受体/多受体亲和力和功能特征,以及它们最重要的药理学应用。