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N-(Anilinoethyl)amide Melatonergic Ligands with Improved Water Solubility and Metabolic Stability
Authors:Dr Francesca Ferlenghi  Dr Michele Mari  Prof Gabriella Gobbi  Dr Gian Marco Elisi  Prof Marco Mor  Prof Silvia Rivara  Prof Federica Vacondio  Dr Silvia Bartolucci  Prof Annalida Bedini  Dr Fabiola Fanini  Prof Gilberto Spadoni
Affiliation:1. Dipartimento di Scienze degli Alimenti e del Farmaco, Università degli Studi di Parma, Parco Area delle Scienze 27/A, 43124 Parma, Italy;2. Dipartimento di Scienze Biomolecolari, Università degli Studi di Urbino Carlo Bo, Piazza Rinascimento 6, 61029 Urbino, Italy;3. Department of Psychiatry, McGill University, Montreal, QC, H3A1A1 Canada

McGill University Health Center, Montreal, QC, H31A1 Canada;4. Dipartimento di Scienze degli Alimenti e del Farmaco, Università degli Studi di Parma, Parco Area delle Scienze 27/A, 43124 Parma, Italy

Microbiome Research Hub, University of Parma, 43124 Parma, Italy

Abstract:The MT2-selective melatonin receptor ligand UCM765 (N-(2-((3-methoxyphenyl)(phenyl)amino)ethyl)acetamide), showed interesting sleep inducing, analgesic and anxiolytic properties in rodents, but suffers from low water solubility and modest metabolic stability. To overcome these limitations, different strategies were investigated, including modification of metabolically liable sites, introduction of hydrophilic substituents and design of more basic derivatives. Thermodynamic solubility, microsomal stability and lipophilicity of new compounds were experimentally evaluated, together with their MT1 and MT2 binding affinities. Introduction of a m-hydroxymethyl substituent on the phenyl ring of UCM765 and replacement of the replacement of the N,N-diphenyl-amino scaffold with a N-methyl-N-phenyl-amino one led to highly soluble compounds with good microsomal stability and receptor binding affinity. Docking studies into the receptor crystal structure provided a rationale for their binding affinity. Pharmacokinetic characterization in rats highlighted higher plasma concentrations for the N-methyl-N-phenyl-amino derivative, consistent with its improved microsomal stability and makes this compound worthy of consideration for further pharmacological investigation.
Keywords:drug-design  lipophilicity  melatonin receptors  metabolism  pharmacokinetics
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