Department of Chemistry, Emory University, Atlanta, Georgia30322, United States.
W.M. Keck Structural Biology Laboratory, Cold Spring Harbor Laboratory, New York, New York11724, United States.
ACS Chem Neurosci. 2023 Mar 1;14(5):917-935. doi: 10.1021/acschemneuro.2c00779. Epub 2023 Feb 13.
Many cases of accidental death associated with drug overdose are due to chronic opioid use, tolerance, and addiction. Analgesic tolerance is characterized by a decreased response to the analgesic effects of opioids, requiring increasingly higher doses to maintain the desired level of pain relief. Overactivation of GluN2B-containing -methyl-d-Aspartate receptors is thought to play a key role in mechanisms underlying cellular adaptation that takes place in the development of analgesic tolerance. Herein, we describe a novel GluN2B-selective negative allosteric modulator, , that shows high potency and brain penetrance. We describe the structural basis for binding at atomic resolution. This compound possesses intrinsic analgesic properties in the rodent tail immersion test. EU93-108 has an acute and significant anodyne effect, whereby morphine when combined with EU93-108 produces a higher tail flick latency compared to that of morphine alone. These data suggest that engagement of GluN2B as a target has utility in the treatment of pain, and EU93-108 could serve as an appropriate tool compound to interrogate this hypothesis. Future structure-activity relationship work around this scaffold could give rise to compounds that can be co-administered with opioids to diminish the onset of tolerance due to chronic opioid use, thereby modifying their utility.
许多与药物过量相关的意外死亡案例都与慢性阿片类药物使用、耐受和成瘾有关。阿片类药物镇痛耐受的特征是对阿片类药物镇痛效果的反应减弱,需要越来越高的剂量来维持所需的止痛水平。GluN2B 包含的 -甲基-D-天冬氨酸受体的过度激活被认为在细胞适应的机制中发挥关键作用,这种细胞适应发生在镇痛耐受的发展过程中。在这里,我们描述了一种新型的 GluN2B 选择性负变构调节剂 ,它具有高效力和脑穿透性。我们描述了在原子分辨率下结合的结构基础。这种化合物在啮齿动物尾部浸入试验中具有内在的镇痛特性。EU93-108 具有急性和显著的镇痛作用,当与 EU93-108 联合使用时,吗啡产生的尾部摆动潜伏期比单独使用吗啡时更长。这些数据表明,作为靶点的 GluN2B 的参与在治疗疼痛方面具有实用性,而 EU93-108 可以作为一种合适的工具化合物来检验这一假设。围绕该支架进行的未来结构-活性关系研究可能会产生可与阿片类药物联合使用的化合物,以减少由于慢性阿片类药物使用而导致的耐受的发生,从而改变其用途。