Department of Pharmacodynamics, Faculty of Pharmacy, Jagiellonian University Medical College, Medyczna 9, 30-688 Krakow, Poland.
Department of Pharmacodynamics, Faculty of Pharmacy, Jagiellonian University Medical College, Medyczna 9, 30-688 Krakow, Poland.
Pharmacol Ther. 2021 Nov;227:107872. doi: 10.1016/j.pharmthera.2021.107872. Epub 2021 Apr 24.
Serotonin (5-HT) is one of the fundamental neurotransmitters that contribute to the information essential for an organism's normal, physiological function. Serotonin acts centrally and systemically. The 5-HT receptor is the most widespread serotonin receptor, and participates in many brain-related disorders, including anxiety, depression, and cognitive impairments. The 5-HT receptor can activate several different biochemical pathways and signals through both G protein-dependent and G protein-independent pathways. Preclinical experiments indicate that distinct signaling pathways in specific brain regions may be crucial for antidepressant-like, anxiolytic-like, and procognitive responses. Therefore, the development of new ligands that selectively target a particular signaling pathway(s) could open new possibilities for more effective and safer pharmacotherapy. This review discusses the current state of preclinical studies focusing on the concept of functional selectivity (biased agonism) regarding the 5-HT receptor and its role in antidepressant-like, anxiolytic-like, and procognitive regulation. Such work highlights not only the differential effects of targeted autoreceptors, vs. heteroreceptors, but also the importance of targeting specific downstream intracellular signaling processes, thereby enhancing favorable over unfavorable signaling activation.
血清素(5-HT)是一种基本的神经递质,对生物体正常的生理功能至关重要。血清素在中枢神经系统和全身系统中发挥作用。5-HT 受体是最广泛的血清素受体之一,参与许多与大脑相关的疾病,包括焦虑、抑郁和认知障碍。5-HT 受体可以通过 G 蛋白依赖和非依赖途径激活几种不同的生化途径和信号。临床前实验表明,特定脑区的特定信号通路可能对抗抑郁样、抗焦虑样和认知调节反应至关重要。因此,开发选择性针对特定信号通路(s)的新型配体可能为更有效和更安全的药物治疗开辟新的可能性。本文综述了目前关于 5-HT 受体的功能选择性(偏向激动作用)概念及其在抗抑郁样、抗焦虑样和认知调节中的作用的临床前研究现状。这些工作不仅强调了靶向自身受体与异源受体的差异效应,还强调了靶向特定下游细胞内信号转导过程的重要性,从而增强了有利信号激活的效果。