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DNA damage associated with ultrastructural alterations in rat myocardium after loud noise exposure.

Noise exposure causes changes at different levels in human organs, particularly the cardiovascular system, where it is responsible for increasing heart rate, peripheral vascular resistance, and blood pressure. In this study, we evaluated the effect of noise exposure on DNA integrity and ultrastructu...

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Autores principales: Lenzi, Paola, Frenzilli, Giada, Gesi, Marco, Ferrucci, Michela, Lazzeri, Gloria, Fornai, Francesco, Nigro, Marco
Formato: Texto
Lenguaje:English
Publicado: 2003
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1241429/
https://www.ncbi.nlm.nih.gov/pubmed/12676600
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author Lenzi, Paola
Frenzilli, Giada
Gesi, Marco
Ferrucci, Michela
Lazzeri, Gloria
Fornai, Francesco
Nigro, Marco
author_facet Lenzi, Paola
Frenzilli, Giada
Gesi, Marco
Ferrucci, Michela
Lazzeri, Gloria
Fornai, Francesco
Nigro, Marco
author_sort Lenzi, Paola
collection PubMed
description Noise exposure causes changes at different levels in human organs, particularly the cardiovascular system, where it is responsible for increasing heart rate, peripheral vascular resistance, and blood pressure. In this study, we evaluated the effect of noise exposure on DNA integrity and ultrastructure of rat cardiomyocytes. The exposure to loud noise (100 dBA) for 12 hr caused a significant increase of DNA damage, accompanied by swelling of mitochondrial membranes, dilution of the matrix, and cristolysis. These alterations were concomitant with increased in situ noradrenaline levels and utilization. Genetic and ultrastructural alterations did not decrease 24 hr after the cessation of the stimulus. An elevated oxyradical generation, possibly related to altered sympathetic innervation, is hypothesized as responsible for the induction and persistence of noise-induced cellular damage.
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spelling pubmed-12414292005-11-08 DNA damage associated with ultrastructural alterations in rat myocardium after loud noise exposure. Lenzi, Paola Frenzilli, Giada Gesi, Marco Ferrucci, Michela Lazzeri, Gloria Fornai, Francesco Nigro, Marco Environ Health Perspect Research Article Noise exposure causes changes at different levels in human organs, particularly the cardiovascular system, where it is responsible for increasing heart rate, peripheral vascular resistance, and blood pressure. In this study, we evaluated the effect of noise exposure on DNA integrity and ultrastructure of rat cardiomyocytes. The exposure to loud noise (100 dBA) for 12 hr caused a significant increase of DNA damage, accompanied by swelling of mitochondrial membranes, dilution of the matrix, and cristolysis. These alterations were concomitant with increased in situ noradrenaline levels and utilization. Genetic and ultrastructural alterations did not decrease 24 hr after the cessation of the stimulus. An elevated oxyradical generation, possibly related to altered sympathetic innervation, is hypothesized as responsible for the induction and persistence of noise-induced cellular damage. 2003-04 /pmc/articles/PMC1241429/ /pubmed/12676600 Text en
spellingShingle Research Article
Lenzi, Paola
Frenzilli, Giada
Gesi, Marco
Ferrucci, Michela
Lazzeri, Gloria
Fornai, Francesco
Nigro, Marco
DNA damage associated with ultrastructural alterations in rat myocardium after loud noise exposure.
title DNA damage associated with ultrastructural alterations in rat myocardium after loud noise exposure.
title_full DNA damage associated with ultrastructural alterations in rat myocardium after loud noise exposure.
title_fullStr DNA damage associated with ultrastructural alterations in rat myocardium after loud noise exposure.
title_full_unstemmed DNA damage associated with ultrastructural alterations in rat myocardium after loud noise exposure.
title_short DNA damage associated with ultrastructural alterations in rat myocardium after loud noise exposure.
title_sort dna damage associated with ultrastructural alterations in rat myocardium after loud noise exposure.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1241429/
https://www.ncbi.nlm.nih.gov/pubmed/12676600
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