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Advanced Raman Spectroscopy Detection of Oxidative Damage in Nucleic Acid Bases: Probing Chemical Changes and Intermolecular Interactions in Guanosine at Ultralow Concentration

[Image: see text] DNA/RNA synthesis precursors are especially vulnerable to damage induced by reactive oxygen species occurring following oxidative stress. Guanosine triphosphates are the prevalent oxidized nucleotides, which can be misincorporated during replication, leading to mutations and cell d...

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Autores principales: Ripanti, Francesca, Fasolato, Claudia, Mazzarda, Flavia, Palleschi, Simonetta, Ceccarini, Marina, Li, Chunchun, Bignami, Margherita, Bodo, Enrico, Bell, Steven E.J., Mazzei, Filomena, Postorino, Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8382216/
https://www.ncbi.nlm.nih.gov/pubmed/34324303
http://dx.doi.org/10.1021/acs.analchem.1c01049
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author Ripanti, Francesca
Fasolato, Claudia
Mazzarda, Flavia
Palleschi, Simonetta
Ceccarini, Marina
Li, Chunchun
Bignami, Margherita
Bodo, Enrico
Bell, Steven E.J.
Mazzei, Filomena
Postorino, Paolo
author_facet Ripanti, Francesca
Fasolato, Claudia
Mazzarda, Flavia
Palleschi, Simonetta
Ceccarini, Marina
Li, Chunchun
Bignami, Margherita
Bodo, Enrico
Bell, Steven E.J.
Mazzei, Filomena
Postorino, Paolo
author_sort Ripanti, Francesca
collection PubMed
description [Image: see text] DNA/RNA synthesis precursors are especially vulnerable to damage induced by reactive oxygen species occurring following oxidative stress. Guanosine triphosphates are the prevalent oxidized nucleotides, which can be misincorporated during replication, leading to mutations and cell death. Here, we present a novel method based on micro-Raman spectroscopy, combined with ab initio calculations, for the identification, detection, and quantification of oxidized nucleotides at low concentration. We also show that the Raman signature in the terahertz spectral range (<100 cm(–1)) contains information on the intermolecular assembly of guanine in tetrads, which allows us to further boost the oxidative damage detection limit. Eventually, we provide evidence that similar analyses can be carried out on samples in very small volumes at very low concentrations by exploiting the high sensitivity of surface-enhanced Raman scattering combined with properly designed superhydrophobic substrates. These results pave the way for employing such advanced spectroscopic methods for quantitatively sensing the oxidative damage of nucleotides in the cell.
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spelling pubmed-83822162021-08-31 Advanced Raman Spectroscopy Detection of Oxidative Damage in Nucleic Acid Bases: Probing Chemical Changes and Intermolecular Interactions in Guanosine at Ultralow Concentration Ripanti, Francesca Fasolato, Claudia Mazzarda, Flavia Palleschi, Simonetta Ceccarini, Marina Li, Chunchun Bignami, Margherita Bodo, Enrico Bell, Steven E.J. Mazzei, Filomena Postorino, Paolo Anal Chem [Image: see text] DNA/RNA synthesis precursors are especially vulnerable to damage induced by reactive oxygen species occurring following oxidative stress. Guanosine triphosphates are the prevalent oxidized nucleotides, which can be misincorporated during replication, leading to mutations and cell death. Here, we present a novel method based on micro-Raman spectroscopy, combined with ab initio calculations, for the identification, detection, and quantification of oxidized nucleotides at low concentration. We also show that the Raman signature in the terahertz spectral range (<100 cm(–1)) contains information on the intermolecular assembly of guanine in tetrads, which allows us to further boost the oxidative damage detection limit. Eventually, we provide evidence that similar analyses can be carried out on samples in very small volumes at very low concentrations by exploiting the high sensitivity of surface-enhanced Raman scattering combined with properly designed superhydrophobic substrates. These results pave the way for employing such advanced spectroscopic methods for quantitatively sensing the oxidative damage of nucleotides in the cell. American Chemical Society 2021-07-29 2021-08-10 /pmc/articles/PMC8382216/ /pubmed/34324303 http://dx.doi.org/10.1021/acs.analchem.1c01049 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Ripanti, Francesca
Fasolato, Claudia
Mazzarda, Flavia
Palleschi, Simonetta
Ceccarini, Marina
Li, Chunchun
Bignami, Margherita
Bodo, Enrico
Bell, Steven E.J.
Mazzei, Filomena
Postorino, Paolo
Advanced Raman Spectroscopy Detection of Oxidative Damage in Nucleic Acid Bases: Probing Chemical Changes and Intermolecular Interactions in Guanosine at Ultralow Concentration
title Advanced Raman Spectroscopy Detection of Oxidative Damage in Nucleic Acid Bases: Probing Chemical Changes and Intermolecular Interactions in Guanosine at Ultralow Concentration
title_full Advanced Raman Spectroscopy Detection of Oxidative Damage in Nucleic Acid Bases: Probing Chemical Changes and Intermolecular Interactions in Guanosine at Ultralow Concentration
title_fullStr Advanced Raman Spectroscopy Detection of Oxidative Damage in Nucleic Acid Bases: Probing Chemical Changes and Intermolecular Interactions in Guanosine at Ultralow Concentration
title_full_unstemmed Advanced Raman Spectroscopy Detection of Oxidative Damage in Nucleic Acid Bases: Probing Chemical Changes and Intermolecular Interactions in Guanosine at Ultralow Concentration
title_short Advanced Raman Spectroscopy Detection of Oxidative Damage in Nucleic Acid Bases: Probing Chemical Changes and Intermolecular Interactions in Guanosine at Ultralow Concentration
title_sort advanced raman spectroscopy detection of oxidative damage in nucleic acid bases: probing chemical changes and intermolecular interactions in guanosine at ultralow concentration
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8382216/
https://www.ncbi.nlm.nih.gov/pubmed/34324303
http://dx.doi.org/10.1021/acs.analchem.1c01049
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