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Pyridine and p-Nitrophenyl Oxime Esters with Possible Photochemotherapeutic Activity: Synthesis, DNA Photocleavage and DNA Binding Studies

Compared to standard treatments for various diseases, photochemotherapy and photo-dynamic therapy are less invasive approaches, in which DNA photocleavers represent promising tools for novel “on demand” chemotherapeutics. A series of p-nitrobenzoyl and p-pyridoyl ester conjugated aldoximes, amidoxim...

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Autores principales: Pasolli, Milena, Dafnopoulos, Konstantinos, Andreou, Nicolaos-Panagiotis, Gritzapis, Panagiotis S., Koffa, Maria, Koumbis, Alexandros E., Psomas, George, Fylaktakidou, Konstantina C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6272938/
https://www.ncbi.nlm.nih.gov/pubmed/27376258
http://dx.doi.org/10.3390/molecules21070864
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author Pasolli, Milena
Dafnopoulos, Konstantinos
Andreou, Nicolaos-Panagiotis
Gritzapis, Panagiotis S.
Koffa, Maria
Koumbis, Alexandros E.
Psomas, George
Fylaktakidou, Konstantina C.
author_facet Pasolli, Milena
Dafnopoulos, Konstantinos
Andreou, Nicolaos-Panagiotis
Gritzapis, Panagiotis S.
Koffa, Maria
Koumbis, Alexandros E.
Psomas, George
Fylaktakidou, Konstantina C.
author_sort Pasolli, Milena
collection PubMed
description Compared to standard treatments for various diseases, photochemotherapy and photo-dynamic therapy are less invasive approaches, in which DNA photocleavers represent promising tools for novel “on demand” chemotherapeutics. A series of p-nitrobenzoyl and p-pyridoyl ester conjugated aldoximes, amidoximes and ethanone oximes were subjected to UV irradiation at 312 nm with supercoiled circular plasmid DNA. The compounds which possessed appropriate properties were additionally subjected to UVA irradiation at 365 nm. The ability of most of the compounds to photocleave DNA was high at 312 nm, whereas higher concentrations were required at 365 nm as a result of their lower UV absorption. The affinity of selected compounds to calf-thymus (CT) DNA was studied by UV spectroscopy, viscosity experiments and competitive studies with ethidium bromide (EB) revealing that all compounds interacted with CT DNA. The fluorescence emission spectra of the pre-treated EB-DNA exhibited a moderate to significant quenching in the presence of the compounds indicating the binding of the compounds to CT DNA via intercalation as concluded also by DNA-viscosity experiments. For the oxime esters the DNA photocleavage and affinity studies aimed to clarify the role of the oxime nature (aldoxime, ketoxime, amidoxime) and the role of the pyridine and p-nitrophenyl moieties both as oxime substituents and ester conjugates.
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spelling pubmed-62729382018-12-28 Pyridine and p-Nitrophenyl Oxime Esters with Possible Photochemotherapeutic Activity: Synthesis, DNA Photocleavage and DNA Binding Studies Pasolli, Milena Dafnopoulos, Konstantinos Andreou, Nicolaos-Panagiotis Gritzapis, Panagiotis S. Koffa, Maria Koumbis, Alexandros E. Psomas, George Fylaktakidou, Konstantina C. Molecules Article Compared to standard treatments for various diseases, photochemotherapy and photo-dynamic therapy are less invasive approaches, in which DNA photocleavers represent promising tools for novel “on demand” chemotherapeutics. A series of p-nitrobenzoyl and p-pyridoyl ester conjugated aldoximes, amidoximes and ethanone oximes were subjected to UV irradiation at 312 nm with supercoiled circular plasmid DNA. The compounds which possessed appropriate properties were additionally subjected to UVA irradiation at 365 nm. The ability of most of the compounds to photocleave DNA was high at 312 nm, whereas higher concentrations were required at 365 nm as a result of their lower UV absorption. The affinity of selected compounds to calf-thymus (CT) DNA was studied by UV spectroscopy, viscosity experiments and competitive studies with ethidium bromide (EB) revealing that all compounds interacted with CT DNA. The fluorescence emission spectra of the pre-treated EB-DNA exhibited a moderate to significant quenching in the presence of the compounds indicating the binding of the compounds to CT DNA via intercalation as concluded also by DNA-viscosity experiments. For the oxime esters the DNA photocleavage and affinity studies aimed to clarify the role of the oxime nature (aldoxime, ketoxime, amidoxime) and the role of the pyridine and p-nitrophenyl moieties both as oxime substituents and ester conjugates. MDPI 2016-06-30 /pmc/articles/PMC6272938/ /pubmed/27376258 http://dx.doi.org/10.3390/molecules21070864 Text en © 2016 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pasolli, Milena
Dafnopoulos, Konstantinos
Andreou, Nicolaos-Panagiotis
Gritzapis, Panagiotis S.
Koffa, Maria
Koumbis, Alexandros E.
Psomas, George
Fylaktakidou, Konstantina C.
Pyridine and p-Nitrophenyl Oxime Esters with Possible Photochemotherapeutic Activity: Synthesis, DNA Photocleavage and DNA Binding Studies
title Pyridine and p-Nitrophenyl Oxime Esters with Possible Photochemotherapeutic Activity: Synthesis, DNA Photocleavage and DNA Binding Studies
title_full Pyridine and p-Nitrophenyl Oxime Esters with Possible Photochemotherapeutic Activity: Synthesis, DNA Photocleavage and DNA Binding Studies
title_fullStr Pyridine and p-Nitrophenyl Oxime Esters with Possible Photochemotherapeutic Activity: Synthesis, DNA Photocleavage and DNA Binding Studies
title_full_unstemmed Pyridine and p-Nitrophenyl Oxime Esters with Possible Photochemotherapeutic Activity: Synthesis, DNA Photocleavage and DNA Binding Studies
title_short Pyridine and p-Nitrophenyl Oxime Esters with Possible Photochemotherapeutic Activity: Synthesis, DNA Photocleavage and DNA Binding Studies
title_sort pyridine and p-nitrophenyl oxime esters with possible photochemotherapeutic activity: synthesis, dna photocleavage and dna binding studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6272938/
https://www.ncbi.nlm.nih.gov/pubmed/27376258
http://dx.doi.org/10.3390/molecules21070864
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