Publication: Structural and Molecular Insight into Piperazine and Piperidine Derivatives as Histamine H3 and Sigma-1 Receptor Antagonists with Promising Antinociceptive Properties.
Loading...
Identifiers
Date
2021-11-29
Authors
Szczepańska, Katarzyna
Podlewska, Sabina
Dichiara, Maria
Gentile, Davide
Patamia, Vincenzo
Rosier, Niklas
Mönnich, Denise
Ruiz Cantero, Ma Carmen
Karcz, Tadeusz
Łażewska, Dorota
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
American Chemical Society
Abstract
In an attempt to extend recent studies showing that some clinically evaluated histamine H3 receptor (H3R) antagonists possess nanomolar affinity at sigma-1 receptors (σ1R), we selected 20 representative structures among our previously reported H3R ligands to investigate their affinity at σRs. Most of the tested compounds interact with both sigma receptors to different degrees. However, only six of them showed higher affinity toward σ1R than σ2R with the highest binding preference to σ1R for compounds 5, 11, and 12. Moreover, all these ligands share a common structural feature: the piperidine moiety as the fundamental part of the molecule. It is most likely a critical structural element for dual H3/σ1 receptor activity as can be seen by comparing the data for compounds 4 and 5 (hH3R Ki = 3.17 and 7.70 nM, σ1R Ki = 1531 and 3.64 nM, respectively), where piperidine is replaced by piperazine. We identified the putative protein-ligand interactions responsible for their high affinity using molecular modeling techniques and selected compounds 5 and 11 as lead structures for further evaluation. Interestingly, both ligands turned out to be high-affinity histamine H3 and σ1 receptor antagonists with negligible affinity at the other histamine receptor subtypes and promising antinociceptive activity in vivo. Considering that many literature data clearly indicate high preclinical efficacy of individual selective σ1 or H3R ligands in various pain models, our research might be a breakthrough in the search for novel, dual-acting compounds that can improve existing pain therapies. Determining whether such ligands are more effective than single-selective drugs will be the subject of our future studies.
Description
MeSH Terms
Analgesics
Histamine
Histamine Antagonists
Histamine H3 Antagonists
Ligands
Piperazine
Piperidines
Receptors, Histamine H3
Receptors, sigma
Structure-Activity Relationship
Histamine
Histamine Antagonists
Histamine H3 Antagonists
Ligands
Piperazine
Piperidines
Receptors, Histamine H3
Receptors, sigma
Structure-Activity Relationship
DeCS Terms
Analgésicos
Antagonistas de los receptores
Histamínicos
Antagonistas de los receptores
Histamínicos H3
Histamina
Ligandos
Piperazina
Piperidinas
Receptores histamínicos H3
Receptores sigma
Relación estructura-actividad
Antagonistas de los receptores
Histamínicos
Antagonistas de los receptores
Histamínicos H3
Histamina
Ligandos
Piperazina
Piperidinas
Receptores histamínicos H3
Receptores sigma
Relación estructura-actividad
CIE Terms
Keywords
dual targeting compounds, dynamics, functional characterization, histamine H3 receptor, molecular docking, piperazine derivatives, piperidine derivatives, sigma-1 receptor, sigma-2 receptor
Citation
Szczepańska K, Podlewska S, Dichiara M, Gentile D, Patamia V, Rosier N,et al. Structural and Molecular Insight into Piperazine and Piperidine Derivatives as Histamine H3 and Sigma-1 Receptor Antagonists with Promising Antinociceptive Properties. ACS Chem Neurosci. 2022 Jan 5;13(1):1-15.