Nackenoff Alex G, Simmler Linda D, Baganz Nicole L, Pehrson Alan L, Sánchez Connie, Blakely Randy D
Lundbeck Research USA , Paramus, New Jersey 07652, United States.
ACS Chem Neurosci. 2017 May 17;8(5):1092-1100. doi: 10.1021/acschemneuro.7b00038. Epub 2017 Mar 20.
Selective serotonin (5-HT, SERT) reuptake inhibitors (SSRIs) are the most commonly prescribed treatments for depression. However, they have delayed efficacy and can induce side-effects that can encourage discontinuation. Recently, agents have been developed, including vortioxetine (Trintellix), that augment SERT blockade with interactions at other targets. At therapeutic doses, vortioxetine interacts with SERT as well as 5-HT, 5-HT, 5-HT, and 5-HT receptors. We assessed the SERT-dependency of vortioxetine action using the SERT Met172 mouse model, which disrupts high-affinity interactions of many antidepressants with the transporter. We demonstrate that the SERT Met172 substitution induces an ∼19-fold loss in vortioxetine potency for SERT inhibition in midbrain synaptosomes. Moreover, in these mice, we observed reduced SERT occupancy, a diminished ability to prolong 5-HT clearance, and a reduced capacity to elevate extracellular 5-HT. Despite reduced interactions with SERT, vortioxetine maintained its ability to enhance mobility in tail suspension and forced swim tests, reduce consumption latency in the novelty induced hypophagia test, and promoted proliferation and survival of subgranular zone hippocampal stem cells. Our findings suggest that the antidepressant actions of vortioxetine may be SERT-independent, and encourage consideration of agents that mimic one or more actions of the drug in the development of improved depression treatments.
选择性5-羟色胺(5-HT,SERT)再摄取抑制剂(SSRIs)是治疗抑郁症最常用的处方药。然而,它们起效延迟,还会引发副作用,导致患者停药。最近,已研发出包括伏硫西汀(Trintellix)在内的药物,这些药物通过作用于其他靶点增强了对SERT的阻断作用。在治疗剂量下,伏硫西汀与SERT以及5-HT、5-HT、5-HT和5-HT受体相互作用。我们使用SERT Met172小鼠模型评估了伏硫西汀作用的SERT依赖性,该模型破坏了许多抗抑郁药与转运体的高亲和力相互作用。我们证明,SERT Met172替代导致伏硫西汀抑制中脑突触体中SERT的效力损失约19倍。此外,在这些小鼠中,我们观察到SERT占有率降低、延长5-HT清除的能力减弱以及提高细胞外5-HT的能力降低。尽管与SERT的相互作用减少,但伏硫西汀在悬尾试验和强迫游泳试验中仍保持增强运动能力的作用,在新奇诱导性摄食减少试验中降低摄食潜伏期,并促进海马颗粒下区干细胞的增殖和存活。我们的研究结果表明,伏硫西汀的抗抑郁作用可能不依赖于SERT,并鼓励在开发改进的抑郁症治疗方法时考虑模拟该药物一种或多种作用的药物。