4.6 Article

N-Skatyltryptamines-Dual 5-HT6R/D2R Ligands with Antipsychotic and Procognitive Potential

期刊

MOLECULES
卷 26, 期 15, 页码 -

出版社

MDPI
DOI: 10.3390/molecules26154605

关键词

N-skatyltryptamine; tryptamine; D-2; 5-HT6R receptor agonist; antagonist; antipsychotic; precognitive; halogen bond; serotonin dual ligands

资金

  1. National Science Center [SONATA 2014/15/D/NZ7/01782, OPUS13 2017/25/B/NZ7/02929]
  2. Maj Institute of Pharmacology Polish Academy of Sciences

向作者/读者索取更多资源

A series of N-skateletryptamines were synthesized and evaluated for their affinities for serotonin and dopamine receptors. Some compounds exhibited antipsychotic and procognitive activities, while others had unique receptor combinations that had not been studied before. Through screening and modeling, the compounds with specific receptor antagonist and agonist properties were identified.
A series of N-skatyltryptamines was synthesized and their affinities for serotonin and dopamine receptors were determined. Compounds exhibited activity toward 5-HT1A, 5-HT2A, 5-HT6, and D-2 receptors. Substitution patterns resulting in affinity/activity switches were identified and studied using homology modeling. Chosen hits were screened to determine their metabolism, permeability, hepatotoxicity, and CYP inhibition. Several D-2 receptor antagonists with additional 5-HT6R antagonist and agonist properties were identified. The former combination resembled known antipsychotic agents, while the latter was particularly interesting due to the fact that it has not been studied before. Selective 5-HT6R antagonists have been shown previously to produce procognitive and promnesic effects in several rodent models. Administration of 5-HT6R agonists was more ambiguous-in naive animals, it did not alter memory or produce slight amnesic effects, while in rodent models of memory impairment, they ameliorated the condition just like antagonists. Using the identified hit compounds 15 and 18, we tried to sort out the difference between ligands exhibiting the D2R antagonist function combined with 5-HT6R agonism, and mixed D-2/5-HT6R antagonists in murine models of psychosis.

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