Research Article

MT-2 -: The location, physiology, pathology of hippocampus Melatonin MT 2 receptor and MT 2 -selective modulators.

Melatonin, a neurohormone secreted by the pineal gland and regulated by the suprachiasmatic nucleus (SCN) of the hypothalamus, is synthesized and directly released into the cerebrospinal fluid (CSF) of the third ventricle (3rdv), where it undergoes rapid absorption by surrounding tissues to exert its physiological function. The hippocampus, a vital structure in the limbic system adjacent to the ventricles, plays a pivotal role in emotional response and memory formation. Melatonin MT 1 and MT 2 receptors are G protein-coupled receptors (GPCRs) that primarily mediate melatonin's receptor-dependent effects.

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Preclinical animal study
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Original source

The location, physiology, pathology of hippocampus Melatonin MT 2 receptor and MT 2 -selective modulators.

Yueqin Feng, Xiaowen Jiang, Wenwu Liu, Hongyuan Lu · European journal of medicinal chemistry · 2023

Source abstract

Melatonin, a neurohormone secreted by the pineal gland and regulated by the suprachiasmatic nucleus (SCN) of the hypothalamus, is synthesized and directly released into the cerebrospinal fluid (CSF) of the third ventricle (3rdv), where it undergoes rapid absorption by surrounding tissues to exert its physiological function. The hippocampus, a vital structure in the limbic system adjacent to the ventricles, plays a pivotal role in emotional response and memory formation. Melatonin MT 1 and MT 2 receptors are G protein-coupled receptors (GPCRs) that primarily mediate melatonin's receptor-dependent effects. In comparison to the MT 1 receptor, the widely expressed MT 2 receptor is crucial for mediating melatonin's biological functions within the hippocampus. Specifically, MT 2 receptor is implicated in hippocampal synaptic plasticity and memory processes, as well as neurogenesis and axogenesis. Numerous studies have demonstrated the involvement of MT 2 receptors in the pathophysiology and pharmacology of Alzheimer's disease, depression, and epilepsy. This review focuses on the anatomical localization of MT 2 receptor in the hippocampus, their physiological function in this region, and their signal transduction and pharmacological roles in neurological disorders. Additionally, we conducted a comprehensive review of MT 2 receptor ligands used in psychopharmacology and other MT 2 -selective ligands over recent years. Ultimately, we provide an outlook on future research for selective MT 2 receptor drug candidates.

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