학술논문

Novel Dual-Target μ-Opioid Receptor and Dopamine D3Receptor Ligands as Potential Nonaddictive Pharmacotherapeutics for Pain Management
Document Type
Article
Source
Journal of Medicinal Chemistry; June 2021, Vol. 64 Issue: 11 p7778-7808, 31p
Subject
Language
ISSN
00222623; 15204804
Abstract
The need for safer pain-management therapies with decreased abuse liability inspired a novel drug design that retains μ-opioid receptor (MOR)-mediated analgesia, while minimizing addictive liability. We recently demonstrated that targeting the dopamine D3receptor (D3R) with highly selective antagonists/partial agonists can reduce opioid self-administration and reinstatement to drug seeking in rodent models without diminishing antinociceptive effects. The identification of the D3R as a target for the treatment of opioid use disorders prompted the idea of generating a class of ligands presenting bitopic or bivalent structures, allowing the dual-target binding of the MOR and D3R. Structure–activity relationship studies using computationally aided drug design and in vitrobinding assays led to the identification of potent dual-target leads (23, 28, and 40), based on different structural templates and scaffolds, with moderate (sub-micromolar) to high (low nanomolar/sub-nanomolar) binding affinities. Bioluminescence resonance energy transfer-based functional studies revealed MOR agonist–D3R antagonist/partial agonist efficacies that suggest potential for maintaining analgesia with reduced opioid-abuse liability.