New potent muscarinic receptor ligands bearing the 1,4‐dioxane nucleus: Investigation on the nature of the substituent in position 2

Author:

Giorgioni Gianfabio1,Bonifazi Alessandro2,Matucci Rosanna3,Matteucci Federica1,Piergentili Alessandro1,Piergentili Alessia1,Quaglia Wilma1ORCID,Gervasoni Silvia45,Vistoli Giulio4,Vittorio Serena4,Del Bello Fabio1ORCID

Affiliation:

1. Scuola di Scienze del Farmaco e dei Prodotti della Salute Università degli Studi di Camerino Camerino Italy

2. Medicinal Chemistry Section, Molecular Targets and Medications Discovery Branch, National Institute on Drug Abuse—Intramural Research Program National Institutes of Health Baltimore USA

3. Dipartimento di Neuroscienze, Psicologia, Area del Farmaco e Salute del Bambino (NEUROFARBA), Sezione di Farmacologia e Tossicologia Università degli Studi di Firenze Firenze Italy

4. Dipartimento di Scienze Farmaceutiche Università degli Studi di Milano Milano Italy

5. Dipartimento di Fisica, Università di Cagliari Cittadella Universitaria di Monserrato Monserrato Italy

Abstract

AbstractA new series of muscarinic acetylcholine receptor (mAChR) ligands obtained by inserting different substituents in position 2 of the potent 6,6‐diphenyl‐1,4‐dioxane antagonists 4 and 5 was designed and synthesized to investigate the influence of steric bulk on the mAChR affinity. Specifically, the insertion of a 2‐methyl group, affording compounds 6 and 9, resulted as the most favorable modification in terms of affinity for all muscarinic subtypes. As supported by computational studies performed on the hM1 receptor, this substituent may contribute to stabilize the ligand within the binding site by favoring the formation of stable interactions between the cationic head of the ligand and the residue D105. The increase of steric bulk, obtained by replacing the methyl group with an ethyl (7 and 10) and especially a phenyl substituent (8 and 11), caused a marked decrease of mAChR affinity, demonstrating the crucial role played by the steric bulk of the 2‐substituent in the mAChR interaction. The most intriguing result was obtained with the tertiary amine 9, which, surprisingly, showed two different pKi values for all mAChRs, with preferential subpicomolar affinities for the M1, M3, and M4 subtypes. Interestingly, biphasic curves were also observed with both the eutomer (S)‐(–)‐9 and the distomer (R)‐( + )‐9.

Publisher

Wiley

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