Cargando…

4-Heteroaryl Substituted Amino-3,5-Dicyanopyridines as New Adenosine Receptor Ligands: Novel Insights on Structure-Activity Relationships and Perspectives

A new set of amino-3,5-dicyanopyridines was synthesized and biologically evaluated at the adenosine receptors (ARs). This chemical class is particularly versatile, as small structural modifications can influence not only affinity and selectivity, but also the pharmacological profile. Thus, in order...

Descripción completa

Detalles Bibliográficos
Autores principales: Catarzi, Daniela, Varano, Flavia, Vigiani, Erica, Calenda, Sara, Melani, Fabrizio, Varani, Katia, Vincenzi, Fabrizio, Pasquini, Silvia, Mennini, Natascia, Nerli, Giulia, Dal Ben, Diego, Volpini, Rosaria, Colotta, Vittoria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9024521/
https://www.ncbi.nlm.nih.gov/pubmed/35455475
http://dx.doi.org/10.3390/ph15040478
_version_ 1784690614403596288
author Catarzi, Daniela
Varano, Flavia
Vigiani, Erica
Calenda, Sara
Melani, Fabrizio
Varani, Katia
Vincenzi, Fabrizio
Pasquini, Silvia
Mennini, Natascia
Nerli, Giulia
Dal Ben, Diego
Volpini, Rosaria
Colotta, Vittoria
author_facet Catarzi, Daniela
Varano, Flavia
Vigiani, Erica
Calenda, Sara
Melani, Fabrizio
Varani, Katia
Vincenzi, Fabrizio
Pasquini, Silvia
Mennini, Natascia
Nerli, Giulia
Dal Ben, Diego
Volpini, Rosaria
Colotta, Vittoria
author_sort Catarzi, Daniela
collection PubMed
description A new set of amino-3,5-dicyanopyridines was synthesized and biologically evaluated at the adenosine receptors (ARs). This chemical class is particularly versatile, as small structural modifications can influence not only affinity and selectivity, but also the pharmacological profile. Thus, in order to deepen the structure–activity relationships (SARs) of this series, different substituents were evaluated at the diverse positions on the dicyanopyridine scaffold. In general, the herein reported compounds show nanomolar binding affinity and interact better with both the human (h) A(1) and A(2A) ARs than with the other subtypes. Docking studies at hAR structure were performed to rationalize the observed affinity data. Of interest are compounds 1 and 5, which can be considered as pan ligands as binding all the ARs with comparable nanomolar binding affinity (A(1)AR: 1, K(i) = 9.63 nM; 5, K(i) = 2.50 nM; A(2A)AR: 1, K(i) = 21 nM; 5, Ki = 24 nM; A(3)AR: 1, Ki = 52 nM; 5, Ki = 25 nM; A(2B)AR: 1, EC(50) = 1.4 nM; 5, EC(50) = 1.12 nM). Moreover, these compounds showed a partial agonist profile at all the ARs. This combined AR partial agonist activity could lead us to hypothesize a potential effect in the repair process of damaged tissue that would be beneficial in both wound healing and remodeling.
format Online
Article
Text
id pubmed-9024521
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-90245212022-04-23 4-Heteroaryl Substituted Amino-3,5-Dicyanopyridines as New Adenosine Receptor Ligands: Novel Insights on Structure-Activity Relationships and Perspectives Catarzi, Daniela Varano, Flavia Vigiani, Erica Calenda, Sara Melani, Fabrizio Varani, Katia Vincenzi, Fabrizio Pasquini, Silvia Mennini, Natascia Nerli, Giulia Dal Ben, Diego Volpini, Rosaria Colotta, Vittoria Pharmaceuticals (Basel) Article A new set of amino-3,5-dicyanopyridines was synthesized and biologically evaluated at the adenosine receptors (ARs). This chemical class is particularly versatile, as small structural modifications can influence not only affinity and selectivity, but also the pharmacological profile. Thus, in order to deepen the structure–activity relationships (SARs) of this series, different substituents were evaluated at the diverse positions on the dicyanopyridine scaffold. In general, the herein reported compounds show nanomolar binding affinity and interact better with both the human (h) A(1) and A(2A) ARs than with the other subtypes. Docking studies at hAR structure were performed to rationalize the observed affinity data. Of interest are compounds 1 and 5, which can be considered as pan ligands as binding all the ARs with comparable nanomolar binding affinity (A(1)AR: 1, K(i) = 9.63 nM; 5, K(i) = 2.50 nM; A(2A)AR: 1, K(i) = 21 nM; 5, Ki = 24 nM; A(3)AR: 1, Ki = 52 nM; 5, Ki = 25 nM; A(2B)AR: 1, EC(50) = 1.4 nM; 5, EC(50) = 1.12 nM). Moreover, these compounds showed a partial agonist profile at all the ARs. This combined AR partial agonist activity could lead us to hypothesize a potential effect in the repair process of damaged tissue that would be beneficial in both wound healing and remodeling. MDPI 2022-04-14 /pmc/articles/PMC9024521/ /pubmed/35455475 http://dx.doi.org/10.3390/ph15040478 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Catarzi, Daniela
Varano, Flavia
Vigiani, Erica
Calenda, Sara
Melani, Fabrizio
Varani, Katia
Vincenzi, Fabrizio
Pasquini, Silvia
Mennini, Natascia
Nerli, Giulia
Dal Ben, Diego
Volpini, Rosaria
Colotta, Vittoria
4-Heteroaryl Substituted Amino-3,5-Dicyanopyridines as New Adenosine Receptor Ligands: Novel Insights on Structure-Activity Relationships and Perspectives
title 4-Heteroaryl Substituted Amino-3,5-Dicyanopyridines as New Adenosine Receptor Ligands: Novel Insights on Structure-Activity Relationships and Perspectives
title_full 4-Heteroaryl Substituted Amino-3,5-Dicyanopyridines as New Adenosine Receptor Ligands: Novel Insights on Structure-Activity Relationships and Perspectives
title_fullStr 4-Heteroaryl Substituted Amino-3,5-Dicyanopyridines as New Adenosine Receptor Ligands: Novel Insights on Structure-Activity Relationships and Perspectives
title_full_unstemmed 4-Heteroaryl Substituted Amino-3,5-Dicyanopyridines as New Adenosine Receptor Ligands: Novel Insights on Structure-Activity Relationships and Perspectives
title_short 4-Heteroaryl Substituted Amino-3,5-Dicyanopyridines as New Adenosine Receptor Ligands: Novel Insights on Structure-Activity Relationships and Perspectives
title_sort 4-heteroaryl substituted amino-3,5-dicyanopyridines as new adenosine receptor ligands: novel insights on structure-activity relationships and perspectives
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9024521/
https://www.ncbi.nlm.nih.gov/pubmed/35455475
http://dx.doi.org/10.3390/ph15040478
work_keys_str_mv AT catarzidaniela 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT varanoflavia 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT vigianierica 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT calendasara 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT melanifabrizio 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT varanikatia 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT vincenzifabrizio 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT pasquinisilvia 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT mennininatascia 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT nerligiulia 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT dalbendiego 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT volpinirosaria 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives
AT colottavittoria 4heteroarylsubstitutedamino35dicyanopyridinesasnewadenosinereceptorligandsnovelinsightsonstructureactivityrelationshipsandperspectives