Cargando…
New-Generation Heterocyclic Bis-Pentamethinium Salts as Potential Cytostatic Drugs with Dual IL-6R and Mitochondria-Targeting Activity
IL-6 signaling is involved in the pathogenesis of a number of serious diseases, including chronic inflammation and cancer. Targeting of IL-6 receptor (IL-6R) by small molecules is therefore an intensively studied strategy in cancer treatment. We describe the design, synthesis, and characteristics of...
Autores principales: | , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416741/ https://www.ncbi.nlm.nih.gov/pubmed/36015338 http://dx.doi.org/10.3390/pharmaceutics14081712 |
_version_ | 1784776550101549056 |
---|---|
author | Talianová, Veronika Kejík, Zdeněk Kaplánek, Robert Veselá, Kateřina Abramenko, Nikita Lacina, Lukáš Strnadová, Karolína Dvořánková, Barbora Martásek, Pavel Masařík, Michal Megová, Magdalena Houdová Bušek, Petr Křížová, Jana Zdražilová, Lucie Hansíková, Hana Vlčák, Erik Filimonenko, Vlada Šedo, Aleksi Smetana, Karel Jakubek, Milan |
author_facet | Talianová, Veronika Kejík, Zdeněk Kaplánek, Robert Veselá, Kateřina Abramenko, Nikita Lacina, Lukáš Strnadová, Karolína Dvořánková, Barbora Martásek, Pavel Masařík, Michal Megová, Magdalena Houdová Bušek, Petr Křížová, Jana Zdražilová, Lucie Hansíková, Hana Vlčák, Erik Filimonenko, Vlada Šedo, Aleksi Smetana, Karel Jakubek, Milan |
author_sort | Talianová, Veronika |
collection | PubMed |
description | IL-6 signaling is involved in the pathogenesis of a number of serious diseases, including chronic inflammation and cancer. Targeting of IL-6 receptor (IL-6R) by small molecules is therefore an intensively studied strategy in cancer treatment. We describe the design, synthesis, and characteristics of two new bis-pentamethinium salts 5 and 6 (meta and para) bearing indole moieties. Molecular docking studies showed that both compounds have the potential to bind IL-6R (free energy of binding −9.5 and −8.1 kcal/mol). The interaction with IL-6R was confirmed using microscale thermophoresis analyses, which revealed that both compounds had strong affinity for the IL-6R (experimentally determined dissociation constants 26.5 ± 2.5 nM and 304 ± 27.6 nM, respectively). In addition, both compounds were cytotoxic for a broad spectrum of cancer cell lines in micromolar concentrations, most likely due to their accumulation in mitochondria and inhibition of mitochondrial respiration. In summary, the structure motif of bis-pentamethinium salts represents a promising starting point for the design of novel multitargeting compounds with the potential to inhibit IL-6 signaling and simultaneously target mitochondrial metabolism in cancer cells. |
format | Online Article Text |
id | pubmed-9416741 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-94167412022-08-27 New-Generation Heterocyclic Bis-Pentamethinium Salts as Potential Cytostatic Drugs with Dual IL-6R and Mitochondria-Targeting Activity Talianová, Veronika Kejík, Zdeněk Kaplánek, Robert Veselá, Kateřina Abramenko, Nikita Lacina, Lukáš Strnadová, Karolína Dvořánková, Barbora Martásek, Pavel Masařík, Michal Megová, Magdalena Houdová Bušek, Petr Křížová, Jana Zdražilová, Lucie Hansíková, Hana Vlčák, Erik Filimonenko, Vlada Šedo, Aleksi Smetana, Karel Jakubek, Milan Pharmaceutics Article IL-6 signaling is involved in the pathogenesis of a number of serious diseases, including chronic inflammation and cancer. Targeting of IL-6 receptor (IL-6R) by small molecules is therefore an intensively studied strategy in cancer treatment. We describe the design, synthesis, and characteristics of two new bis-pentamethinium salts 5 and 6 (meta and para) bearing indole moieties. Molecular docking studies showed that both compounds have the potential to bind IL-6R (free energy of binding −9.5 and −8.1 kcal/mol). The interaction with IL-6R was confirmed using microscale thermophoresis analyses, which revealed that both compounds had strong affinity for the IL-6R (experimentally determined dissociation constants 26.5 ± 2.5 nM and 304 ± 27.6 nM, respectively). In addition, both compounds were cytotoxic for a broad spectrum of cancer cell lines in micromolar concentrations, most likely due to their accumulation in mitochondria and inhibition of mitochondrial respiration. In summary, the structure motif of bis-pentamethinium salts represents a promising starting point for the design of novel multitargeting compounds with the potential to inhibit IL-6 signaling and simultaneously target mitochondrial metabolism in cancer cells. MDPI 2022-08-17 /pmc/articles/PMC9416741/ /pubmed/36015338 http://dx.doi.org/10.3390/pharmaceutics14081712 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 Talianová, Veronika Kejík, Zdeněk Kaplánek, Robert Veselá, Kateřina Abramenko, Nikita Lacina, Lukáš Strnadová, Karolína Dvořánková, Barbora Martásek, Pavel Masařík, Michal Megová, Magdalena Houdová Bušek, Petr Křížová, Jana Zdražilová, Lucie Hansíková, Hana Vlčák, Erik Filimonenko, Vlada Šedo, Aleksi Smetana, Karel Jakubek, Milan New-Generation Heterocyclic Bis-Pentamethinium Salts as Potential Cytostatic Drugs with Dual IL-6R and Mitochondria-Targeting Activity |
title | New-Generation Heterocyclic Bis-Pentamethinium Salts as Potential Cytostatic Drugs with Dual IL-6R and Mitochondria-Targeting Activity |
title_full | New-Generation Heterocyclic Bis-Pentamethinium Salts as Potential Cytostatic Drugs with Dual IL-6R and Mitochondria-Targeting Activity |
title_fullStr | New-Generation Heterocyclic Bis-Pentamethinium Salts as Potential Cytostatic Drugs with Dual IL-6R and Mitochondria-Targeting Activity |
title_full_unstemmed | New-Generation Heterocyclic Bis-Pentamethinium Salts as Potential Cytostatic Drugs with Dual IL-6R and Mitochondria-Targeting Activity |
title_short | New-Generation Heterocyclic Bis-Pentamethinium Salts as Potential Cytostatic Drugs with Dual IL-6R and Mitochondria-Targeting Activity |
title_sort | new-generation heterocyclic bis-pentamethinium salts as potential cytostatic drugs with dual il-6r and mitochondria-targeting activity |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416741/ https://www.ncbi.nlm.nih.gov/pubmed/36015338 http://dx.doi.org/10.3390/pharmaceutics14081712 |
work_keys_str_mv | AT talianovaveronika newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT kejikzdenek newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT kaplanekrobert newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT veselakaterina newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT abramenkonikita newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT lacinalukas newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT strnadovakarolina newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT dvorankovabarbora newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT martasekpavel newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT masarikmichal newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT megovamagdalenahoudova newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT busekpetr newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT krizovajana newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT zdrazilovalucie newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT hansikovahana newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT vlcakerik newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT filimonenkovlada newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT sedoaleksi newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT smetanakarel newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity AT jakubekmilan newgenerationheterocyclicbispentamethiniumsaltsaspotentialcytostaticdrugswithdualil6randmitochondriatargetingactivity |