Cargando…

Towards dual inhibitors of the MET kinase and WNT signaling pathway; design, synthesis and biological evaluation

Both the kinase MET and the WNT signaling pathway are attractive targets in cancer therapy, and synergistic effects have previously been observed in animal models upon simultaneous inhibition. A strategy towards a designed multiple ligand of MET and WNT signaling is pursued based on the two hetero b...

Descripción completa

Detalles Bibliográficos
Autores principales: Lien, Vegard Torp, Kristiansen, Margrethe Konstanse, Pettersen, Solveig, Haugen, Mads Haugland, Olberg, Dag Erlend, Waaler, Jo, Klaveness, Jo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9075752/
https://www.ncbi.nlm.nih.gov/pubmed/35539091
http://dx.doi.org/10.1039/c9ra08954c
_version_ 1784701754954219520
author Lien, Vegard Torp
Kristiansen, Margrethe Konstanse
Pettersen, Solveig
Haugen, Mads Haugland
Olberg, Dag Erlend
Waaler, Jo
Klaveness, Jo
author_facet Lien, Vegard Torp
Kristiansen, Margrethe Konstanse
Pettersen, Solveig
Haugen, Mads Haugland
Olberg, Dag Erlend
Waaler, Jo
Klaveness, Jo
author_sort Lien, Vegard Torp
collection PubMed
description Both the kinase MET and the WNT signaling pathway are attractive targets in cancer therapy, and synergistic effects have previously been observed in animal models upon simultaneous inhibition. A strategy towards a designed multiple ligand of MET and WNT signaling is pursued based on the two hetero biaryl systems present in both the MET inhibitor tepotinib and WNT signaling inhibitor TC-E 5001. Initial screening was conducted to find the most suitable ring systems for further optimization, whereas a second screen explored modifications towards pyridazinones and triazolo pyridazines. Up to 54% reduction of WNT signaling activity at 10 μM concentration was achieved, however, only low affinities towards MET were observed. Overall, the thiophene substituted pyridazinone 40 was the best dual MET and WNT signaling inhibitor, with a 17% and 19% reduction of activity, respectively. Although further optimizations are needed to achieve more potent dual inhibitors, the strategy presented herein can be valuable towards the development of a dual inhibitor of MET and WNT signaling.
format Online
Article
Text
id pubmed-9075752
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90757522022-05-09 Towards dual inhibitors of the MET kinase and WNT signaling pathway; design, synthesis and biological evaluation Lien, Vegard Torp Kristiansen, Margrethe Konstanse Pettersen, Solveig Haugen, Mads Haugland Olberg, Dag Erlend Waaler, Jo Klaveness, Jo RSC Adv Chemistry Both the kinase MET and the WNT signaling pathway are attractive targets in cancer therapy, and synergistic effects have previously been observed in animal models upon simultaneous inhibition. A strategy towards a designed multiple ligand of MET and WNT signaling is pursued based on the two hetero biaryl systems present in both the MET inhibitor tepotinib and WNT signaling inhibitor TC-E 5001. Initial screening was conducted to find the most suitable ring systems for further optimization, whereas a second screen explored modifications towards pyridazinones and triazolo pyridazines. Up to 54% reduction of WNT signaling activity at 10 μM concentration was achieved, however, only low affinities towards MET were observed. Overall, the thiophene substituted pyridazinone 40 was the best dual MET and WNT signaling inhibitor, with a 17% and 19% reduction of activity, respectively. Although further optimizations are needed to achieve more potent dual inhibitors, the strategy presented herein can be valuable towards the development of a dual inhibitor of MET and WNT signaling. The Royal Society of Chemistry 2019-11-13 /pmc/articles/PMC9075752/ /pubmed/35539091 http://dx.doi.org/10.1039/c9ra08954c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Lien, Vegard Torp
Kristiansen, Margrethe Konstanse
Pettersen, Solveig
Haugen, Mads Haugland
Olberg, Dag Erlend
Waaler, Jo
Klaveness, Jo
Towards dual inhibitors of the MET kinase and WNT signaling pathway; design, synthesis and biological evaluation
title Towards dual inhibitors of the MET kinase and WNT signaling pathway; design, synthesis and biological evaluation
title_full Towards dual inhibitors of the MET kinase and WNT signaling pathway; design, synthesis and biological evaluation
title_fullStr Towards dual inhibitors of the MET kinase and WNT signaling pathway; design, synthesis and biological evaluation
title_full_unstemmed Towards dual inhibitors of the MET kinase and WNT signaling pathway; design, synthesis and biological evaluation
title_short Towards dual inhibitors of the MET kinase and WNT signaling pathway; design, synthesis and biological evaluation
title_sort towards dual inhibitors of the met kinase and wnt signaling pathway; design, synthesis and biological evaluation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9075752/
https://www.ncbi.nlm.nih.gov/pubmed/35539091
http://dx.doi.org/10.1039/c9ra08954c
work_keys_str_mv AT lienvegardtorp towardsdualinhibitorsofthemetkinaseandwntsignalingpathwaydesignsynthesisandbiologicalevaluation
AT kristiansenmargrethekonstanse towardsdualinhibitorsofthemetkinaseandwntsignalingpathwaydesignsynthesisandbiologicalevaluation
AT pettersensolveig towardsdualinhibitorsofthemetkinaseandwntsignalingpathwaydesignsynthesisandbiologicalevaluation
AT haugenmadshaugland towardsdualinhibitorsofthemetkinaseandwntsignalingpathwaydesignsynthesisandbiologicalevaluation
AT olbergdagerlend towardsdualinhibitorsofthemetkinaseandwntsignalingpathwaydesignsynthesisandbiologicalevaluation
AT waalerjo towardsdualinhibitorsofthemetkinaseandwntsignalingpathwaydesignsynthesisandbiologicalevaluation
AT klavenessjo towardsdualinhibitorsofthemetkinaseandwntsignalingpathwaydesignsynthesisandbiologicalevaluation