Cargando…

Conjugation of Benzylvanillin and Benzimidazole Structure Improves DNA Binding with Enhanced Antileukemic Properties

Benzyl-o-vanillin and benzimidazole nucleus serve as important pharmacophore in drug discovery. The benzyl vanillin (2-(benzyloxy)-3-methoxybenzaldehyde) compound shows anti-proliferative activity in HL60 leukemia cancer cells and can effect cell cycle progression at G2/M phase. Its apoptosis activi...

Descripción completa

Detalles Bibliográficos
Autores principales: Al-Mudaris, Zena A., Majid, Aman S. A., Ji, Dan, Al-Mudarris, Ban A., Chen, Shih-Hsun, Liang, Po-Huang, Osman, Hasnah, Jamal Din, Shah Kamal Khan, Abdul Majid, Amin M. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3829952/
https://www.ncbi.nlm.nih.gov/pubmed/24260527
http://dx.doi.org/10.1371/journal.pone.0080983
_version_ 1782291420337405952
author Al-Mudaris, Zena A.
Majid, Aman S. A.
Ji, Dan
Al-Mudarris, Ban A.
Chen, Shih-Hsun
Liang, Po-Huang
Osman, Hasnah
Jamal Din, Shah Kamal Khan
Abdul Majid, Amin M. S.
author_facet Al-Mudaris, Zena A.
Majid, Aman S. A.
Ji, Dan
Al-Mudarris, Ban A.
Chen, Shih-Hsun
Liang, Po-Huang
Osman, Hasnah
Jamal Din, Shah Kamal Khan
Abdul Majid, Amin M. S.
author_sort Al-Mudaris, Zena A.
collection PubMed
description Benzyl-o-vanillin and benzimidazole nucleus serve as important pharmacophore in drug discovery. The benzyl vanillin (2-(benzyloxy)-3-methoxybenzaldehyde) compound shows anti-proliferative activity in HL60 leukemia cancer cells and can effect cell cycle progression at G2/M phase. Its apoptosis activity was due to disruption of mitochondrial functioning. In this study, we have studied a series of compounds consisting of benzyl vanillin and benzimidazole structures. We hypothesize that by fusing these two structures we can produce compounds that have better anticancer activity with improved specificity particularly towards the leukemia cell line. Here we explored the anticancer activity of three compounds namely 2-(2-benzyloxy-3-methoxyphenyl)-1H-benzimidazole, 2MP, N-1-(2-benzyloxy-3-methoxybenzyl)-2-(2-benzyloxy-3-methoxyphenyl)-1H-benzimidazole, 2XP, and (R) and (S)-1-(2-benzyloxy-3-methoxyphenyl)-2, 2, 2-trichloroethyl benzenesulfonate, 3BS and compared their activity to 2-benzyloxy-3-methoxybenzaldehyde, (Bn1), the parent compound. 2XP and 3BS induces cell death of U937 leukemic cell line through DNA fragmentation that lead to the intrinsic caspase 9 activation. DNA binding study primarily by the equilibrium binding titration assay followed by the Viscosity study reveal the DNA binding through groove region with intrinsic binding constant 7.39 µM/bp and 6.86 µM/bp for 3BS and 2XP respectively. 2XP and 3BS showed strong DNA binding activity by the UV titration method with the computational drug modeling showed that both 2XP and 3BS failed to form any electrostatic linkages except via hydrophobic interaction through the minor groove region of the nucleic acid. The benzylvanillin alone (Bn1) has weak anticancer activity even after it was combined with the benzimidazole (2MP), but after addition of another benzylvanillin structure (2XP), stronger activity was observed. Also, the combination of benzylvanillin with benzenesulfonate (3BS) significantly improved the anticancer activity of Bn1. The present study provides a new insight of benzyl vanillin derivatives as potential anti-leukemic agent.
format Online
Article
Text
id pubmed-3829952
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-38299522013-11-20 Conjugation of Benzylvanillin and Benzimidazole Structure Improves DNA Binding with Enhanced Antileukemic Properties Al-Mudaris, Zena A. Majid, Aman S. A. Ji, Dan Al-Mudarris, Ban A. Chen, Shih-Hsun Liang, Po-Huang Osman, Hasnah Jamal Din, Shah Kamal Khan Abdul Majid, Amin M. S. PLoS One Research Article Benzyl-o-vanillin and benzimidazole nucleus serve as important pharmacophore in drug discovery. The benzyl vanillin (2-(benzyloxy)-3-methoxybenzaldehyde) compound shows anti-proliferative activity in HL60 leukemia cancer cells and can effect cell cycle progression at G2/M phase. Its apoptosis activity was due to disruption of mitochondrial functioning. In this study, we have studied a series of compounds consisting of benzyl vanillin and benzimidazole structures. We hypothesize that by fusing these two structures we can produce compounds that have better anticancer activity with improved specificity particularly towards the leukemia cell line. Here we explored the anticancer activity of three compounds namely 2-(2-benzyloxy-3-methoxyphenyl)-1H-benzimidazole, 2MP, N-1-(2-benzyloxy-3-methoxybenzyl)-2-(2-benzyloxy-3-methoxyphenyl)-1H-benzimidazole, 2XP, and (R) and (S)-1-(2-benzyloxy-3-methoxyphenyl)-2, 2, 2-trichloroethyl benzenesulfonate, 3BS and compared their activity to 2-benzyloxy-3-methoxybenzaldehyde, (Bn1), the parent compound. 2XP and 3BS induces cell death of U937 leukemic cell line through DNA fragmentation that lead to the intrinsic caspase 9 activation. DNA binding study primarily by the equilibrium binding titration assay followed by the Viscosity study reveal the DNA binding through groove region with intrinsic binding constant 7.39 µM/bp and 6.86 µM/bp for 3BS and 2XP respectively. 2XP and 3BS showed strong DNA binding activity by the UV titration method with the computational drug modeling showed that both 2XP and 3BS failed to form any electrostatic linkages except via hydrophobic interaction through the minor groove region of the nucleic acid. The benzylvanillin alone (Bn1) has weak anticancer activity even after it was combined with the benzimidazole (2MP), but after addition of another benzylvanillin structure (2XP), stronger activity was observed. Also, the combination of benzylvanillin with benzenesulfonate (3BS) significantly improved the anticancer activity of Bn1. The present study provides a new insight of benzyl vanillin derivatives as potential anti-leukemic agent. Public Library of Science 2013-11-15 /pmc/articles/PMC3829952/ /pubmed/24260527 http://dx.doi.org/10.1371/journal.pone.0080983 Text en © 2013 Al-Mudaris et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Al-Mudaris, Zena A.
Majid, Aman S. A.
Ji, Dan
Al-Mudarris, Ban A.
Chen, Shih-Hsun
Liang, Po-Huang
Osman, Hasnah
Jamal Din, Shah Kamal Khan
Abdul Majid, Amin M. S.
Conjugation of Benzylvanillin and Benzimidazole Structure Improves DNA Binding with Enhanced Antileukemic Properties
title Conjugation of Benzylvanillin and Benzimidazole Structure Improves DNA Binding with Enhanced Antileukemic Properties
title_full Conjugation of Benzylvanillin and Benzimidazole Structure Improves DNA Binding with Enhanced Antileukemic Properties
title_fullStr Conjugation of Benzylvanillin and Benzimidazole Structure Improves DNA Binding with Enhanced Antileukemic Properties
title_full_unstemmed Conjugation of Benzylvanillin and Benzimidazole Structure Improves DNA Binding with Enhanced Antileukemic Properties
title_short Conjugation of Benzylvanillin and Benzimidazole Structure Improves DNA Binding with Enhanced Antileukemic Properties
title_sort conjugation of benzylvanillin and benzimidazole structure improves dna binding with enhanced antileukemic properties
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3829952/
https://www.ncbi.nlm.nih.gov/pubmed/24260527
http://dx.doi.org/10.1371/journal.pone.0080983
work_keys_str_mv AT almudariszenaa conjugationofbenzylvanillinandbenzimidazolestructureimprovesdnabindingwithenhancedantileukemicproperties
AT majidamansa conjugationofbenzylvanillinandbenzimidazolestructureimprovesdnabindingwithenhancedantileukemicproperties
AT jidan conjugationofbenzylvanillinandbenzimidazolestructureimprovesdnabindingwithenhancedantileukemicproperties
AT almudarrisbana conjugationofbenzylvanillinandbenzimidazolestructureimprovesdnabindingwithenhancedantileukemicproperties
AT chenshihhsun conjugationofbenzylvanillinandbenzimidazolestructureimprovesdnabindingwithenhancedantileukemicproperties
AT liangpohuang conjugationofbenzylvanillinandbenzimidazolestructureimprovesdnabindingwithenhancedantileukemicproperties
AT osmanhasnah conjugationofbenzylvanillinandbenzimidazolestructureimprovesdnabindingwithenhancedantileukemicproperties
AT jamaldinshahkamalkhan conjugationofbenzylvanillinandbenzimidazolestructureimprovesdnabindingwithenhancedantileukemicproperties
AT abdulmajidaminms conjugationofbenzylvanillinandbenzimidazolestructureimprovesdnabindingwithenhancedantileukemicproperties