Cargando…

Synthesis of New Biscoumarin Derivatives, In Vitro Cholinesterase Inhibition, Molecular Modelling and Antiproliferative Effect in A549 Human Lung Carcinoma Cells

A series of novel C4-C7-tethered biscoumarin derivatives (12a–e) linked through piperazine moiety was designed, synthesized, and evaluated biological/therapeutic potential. Biscoumarin 12d was found to be the most effective inhibitor of both acetylcholinesterase (AChE, IC(50) = 6.30 µM) and butyrylc...

Descripción completa

Detalles Bibliográficos
Autores principales: Hudáčová, Monika, Hamuľaková, Slávka, Konkoľová, Eva, Jendželovský, Rastislav, Vargová, Jana, Ševc, Juraj, Fedoročko, Peter, Soukup, Ondrej, Janočková, Jana, Ihnatova, Veronika, Kučera, Tomáš, Bzonek, Petr, Novakova, Nikola, Jun, Daniel, Junova, Lucie, Korábečný, Jan, Kuča, Kamil, Kožurková, Mária
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8068036/
https://www.ncbi.nlm.nih.gov/pubmed/33917200
http://dx.doi.org/10.3390/ijms22083830
_version_ 1783682942409637888
author Hudáčová, Monika
Hamuľaková, Slávka
Konkoľová, Eva
Jendželovský, Rastislav
Vargová, Jana
Ševc, Juraj
Fedoročko, Peter
Soukup, Ondrej
Janočková, Jana
Ihnatova, Veronika
Kučera, Tomáš
Bzonek, Petr
Novakova, Nikola
Jun, Daniel
Junova, Lucie
Korábečný, Jan
Kuča, Kamil
Kožurková, Mária
author_facet Hudáčová, Monika
Hamuľaková, Slávka
Konkoľová, Eva
Jendželovský, Rastislav
Vargová, Jana
Ševc, Juraj
Fedoročko, Peter
Soukup, Ondrej
Janočková, Jana
Ihnatova, Veronika
Kučera, Tomáš
Bzonek, Petr
Novakova, Nikola
Jun, Daniel
Junova, Lucie
Korábečný, Jan
Kuča, Kamil
Kožurková, Mária
author_sort Hudáčová, Monika
collection PubMed
description A series of novel C4-C7-tethered biscoumarin derivatives (12a–e) linked through piperazine moiety was designed, synthesized, and evaluated biological/therapeutic potential. Biscoumarin 12d was found to be the most effective inhibitor of both acetylcholinesterase (AChE, IC(50) = 6.30 µM) and butyrylcholinesterase (BChE, IC(50) = 49 µM). Detailed molecular modelling studies compared the accommodation of ensaculin (well-established coumarin derivative tested in phase I of clinical trials) and 12d in the human recombinant AChE (hAChE) active site. The ability of novel compounds to cross the blood–brain barrier (BBB) was predicted with a positive outcome for compound 12e. The antiproliferative effects of newly synthesized biscoumarin derivatives were tested in vitro on human lung carcinoma cell line (A549) and normal colon fibroblast cell line (CCD-18Co). The effect of derivatives on cell proliferation was evaluated by MTT assay, quantification of cell numbers and viability, colony-forming assay, analysis of cell cycle distribution and mitotic activity. Intracellular localization of used derivatives in A549 cells was confirmed by confocal microscopy. Derivatives 12d and 12e showed significant antiproliferative activity in A549 cancer cells without a significant effect on normal CCD-18Co cells. The inhibition of hAChE/human recombinant BChE (hBChE), the antiproliferative activity on cancer cells, and the ability to cross the BBB suggest the high potential of biscoumarin derivatives. Beside the treatment of cancer, 12e might be applicable against disorders such as schizophrenia, and 12d could serve future development as therapeutic agents in the prevention and/or treatment of Alzheimer’s disease.
format Online
Article
Text
id pubmed-8068036
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80680362021-04-25 Synthesis of New Biscoumarin Derivatives, In Vitro Cholinesterase Inhibition, Molecular Modelling and Antiproliferative Effect in A549 Human Lung Carcinoma Cells Hudáčová, Monika Hamuľaková, Slávka Konkoľová, Eva Jendželovský, Rastislav Vargová, Jana Ševc, Juraj Fedoročko, Peter Soukup, Ondrej Janočková, Jana Ihnatova, Veronika Kučera, Tomáš Bzonek, Petr Novakova, Nikola Jun, Daniel Junova, Lucie Korábečný, Jan Kuča, Kamil Kožurková, Mária Int J Mol Sci Article A series of novel C4-C7-tethered biscoumarin derivatives (12a–e) linked through piperazine moiety was designed, synthesized, and evaluated biological/therapeutic potential. Biscoumarin 12d was found to be the most effective inhibitor of both acetylcholinesterase (AChE, IC(50) = 6.30 µM) and butyrylcholinesterase (BChE, IC(50) = 49 µM). Detailed molecular modelling studies compared the accommodation of ensaculin (well-established coumarin derivative tested in phase I of clinical trials) and 12d in the human recombinant AChE (hAChE) active site. The ability of novel compounds to cross the blood–brain barrier (BBB) was predicted with a positive outcome for compound 12e. The antiproliferative effects of newly synthesized biscoumarin derivatives were tested in vitro on human lung carcinoma cell line (A549) and normal colon fibroblast cell line (CCD-18Co). The effect of derivatives on cell proliferation was evaluated by MTT assay, quantification of cell numbers and viability, colony-forming assay, analysis of cell cycle distribution and mitotic activity. Intracellular localization of used derivatives in A549 cells was confirmed by confocal microscopy. Derivatives 12d and 12e showed significant antiproliferative activity in A549 cancer cells without a significant effect on normal CCD-18Co cells. The inhibition of hAChE/human recombinant BChE (hBChE), the antiproliferative activity on cancer cells, and the ability to cross the BBB suggest the high potential of biscoumarin derivatives. Beside the treatment of cancer, 12e might be applicable against disorders such as schizophrenia, and 12d could serve future development as therapeutic agents in the prevention and/or treatment of Alzheimer’s disease. MDPI 2021-04-07 /pmc/articles/PMC8068036/ /pubmed/33917200 http://dx.doi.org/10.3390/ijms22083830 Text en © 2021 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
Hudáčová, Monika
Hamuľaková, Slávka
Konkoľová, Eva
Jendželovský, Rastislav
Vargová, Jana
Ševc, Juraj
Fedoročko, Peter
Soukup, Ondrej
Janočková, Jana
Ihnatova, Veronika
Kučera, Tomáš
Bzonek, Petr
Novakova, Nikola
Jun, Daniel
Junova, Lucie
Korábečný, Jan
Kuča, Kamil
Kožurková, Mária
Synthesis of New Biscoumarin Derivatives, In Vitro Cholinesterase Inhibition, Molecular Modelling and Antiproliferative Effect in A549 Human Lung Carcinoma Cells
title Synthesis of New Biscoumarin Derivatives, In Vitro Cholinesterase Inhibition, Molecular Modelling and Antiproliferative Effect in A549 Human Lung Carcinoma Cells
title_full Synthesis of New Biscoumarin Derivatives, In Vitro Cholinesterase Inhibition, Molecular Modelling and Antiproliferative Effect in A549 Human Lung Carcinoma Cells
title_fullStr Synthesis of New Biscoumarin Derivatives, In Vitro Cholinesterase Inhibition, Molecular Modelling and Antiproliferative Effect in A549 Human Lung Carcinoma Cells
title_full_unstemmed Synthesis of New Biscoumarin Derivatives, In Vitro Cholinesterase Inhibition, Molecular Modelling and Antiproliferative Effect in A549 Human Lung Carcinoma Cells
title_short Synthesis of New Biscoumarin Derivatives, In Vitro Cholinesterase Inhibition, Molecular Modelling and Antiproliferative Effect in A549 Human Lung Carcinoma Cells
title_sort synthesis of new biscoumarin derivatives, in vitro cholinesterase inhibition, molecular modelling and antiproliferative effect in a549 human lung carcinoma cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8068036/
https://www.ncbi.nlm.nih.gov/pubmed/33917200
http://dx.doi.org/10.3390/ijms22083830
work_keys_str_mv AT hudacovamonika synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT hamulakovaslavka synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT konkolovaeva synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT jendzelovskyrastislav synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT vargovajana synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT sevcjuraj synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT fedorockopeter synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT soukupondrej synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT janockovajana synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT ihnatovaveronika synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT kuceratomas synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT bzonekpetr synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT novakovanikola synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT jundaniel synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT junovalucie synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT korabecnyjan synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT kucakamil synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells
AT kozurkovamaria synthesisofnewbiscoumarinderivativesinvitrocholinesteraseinhibitionmolecularmodellingandantiproliferativeeffectina549humanlungcarcinomacells