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The Effect of Low-Level Laser Irradiation on Sperm Motility, and Integrity of the Plasma Membrane and Acrosome in Cryopreserved Bovine Sperm

BACKGROUND AND OBJECTIVE: Freezing changes sperm integrity remarkably. Cryopreservation involves cooling, freezing, and thawing and all these contribute to structural damage in sperm, resulting in reduced fertility potential. Low-level laser irradiation (LLLI) could increase energy supply to the cel...

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Autores principales: Fernandes, Guilherme Henrique C., de Carvalho, Paulo de Tarso Camillo, Serra, Andrey Jorge, Crespilho, André Maciel, Peron, Jean Pierre Schatzman, Rossato, Cristiano, Leal-Junior, Ernesto Cesar Pinto, Albertini, Regiane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4364308/
https://www.ncbi.nlm.nih.gov/pubmed/25781016
http://dx.doi.org/10.1371/journal.pone.0121487
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author Fernandes, Guilherme Henrique C.
de Carvalho, Paulo de Tarso Camillo
Serra, Andrey Jorge
Crespilho, André Maciel
Peron, Jean Pierre Schatzman
Rossato, Cristiano
Leal-Junior, Ernesto Cesar Pinto
Albertini, Regiane
author_facet Fernandes, Guilherme Henrique C.
de Carvalho, Paulo de Tarso Camillo
Serra, Andrey Jorge
Crespilho, André Maciel
Peron, Jean Pierre Schatzman
Rossato, Cristiano
Leal-Junior, Ernesto Cesar Pinto
Albertini, Regiane
author_sort Fernandes, Guilherme Henrique C.
collection PubMed
description BACKGROUND AND OBJECTIVE: Freezing changes sperm integrity remarkably. Cryopreservation involves cooling, freezing, and thawing and all these contribute to structural damage in sperm, resulting in reduced fertility potential. Low-level laser irradiation (LLLI) could increase energy supply to the cell and cause reactive oxygen species reduction (ROS), contributing to the restoration of oxygen consumption and adenosine triphosphate synthesis (ATP) in the mitochondria. Our goal was to analyze the effects of low-level laser irradiation on sperm motility and integrity of the plasma membrane and acrosome in cryopreserved bovine sperm. STUDY DESIGN/MATERIALS AND METHODS: We analyzed 09 samples of bull semen (Bos taurus indicus), divided into three groups: a control group without laser irradiation, a 4J group subjected to a laser irradiation dose of 4 joules, and a 6J group subjected to dose of 6 joules. Samples were divided for the analysis of cell viability and acrosomal membrane integrity using flow cytometry; another portion was used for motion analysis. Irradiation was performed in petri dishes of 30 mm containing 3 ml of semen by an aluminum gallium indium phosphide laser diode with a wavelength of 660 nm, 30 mW power, and energy of 4 and 6 joules for 80 and 120 seconds respectively. Subsequently, the irradiated and control semen samples were subjected to cryopreservation and analyzed by flow cytometry (7AAD and FITC-PSA) using the ISAS - Integrated Semen Analysis System. RESULTS: Flow cytometry showed an increase in the percentage of live sperm cells and acrosome integrity in relation to control cells when subjected to irradiation of low-power laser in two different doses of 4 and 6 joules (p < 0.05). In the analysis of straightness, percentage of cell movement, and motility, a dose of 4 joules was more effective (p < 0.05). CONCLUSION: We conclude that LLLI may exert beneficial effects in the preservation of live sperm. A dose of 4 joules prior to cryopreservation was more effective than a dose of 6 joules in preserving sperm motility.
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spelling pubmed-43643082015-03-23 The Effect of Low-Level Laser Irradiation on Sperm Motility, and Integrity of the Plasma Membrane and Acrosome in Cryopreserved Bovine Sperm Fernandes, Guilherme Henrique C. de Carvalho, Paulo de Tarso Camillo Serra, Andrey Jorge Crespilho, André Maciel Peron, Jean Pierre Schatzman Rossato, Cristiano Leal-Junior, Ernesto Cesar Pinto Albertini, Regiane PLoS One Research Article BACKGROUND AND OBJECTIVE: Freezing changes sperm integrity remarkably. Cryopreservation involves cooling, freezing, and thawing and all these contribute to structural damage in sperm, resulting in reduced fertility potential. Low-level laser irradiation (LLLI) could increase energy supply to the cell and cause reactive oxygen species reduction (ROS), contributing to the restoration of oxygen consumption and adenosine triphosphate synthesis (ATP) in the mitochondria. Our goal was to analyze the effects of low-level laser irradiation on sperm motility and integrity of the plasma membrane and acrosome in cryopreserved bovine sperm. STUDY DESIGN/MATERIALS AND METHODS: We analyzed 09 samples of bull semen (Bos taurus indicus), divided into three groups: a control group without laser irradiation, a 4J group subjected to a laser irradiation dose of 4 joules, and a 6J group subjected to dose of 6 joules. Samples were divided for the analysis of cell viability and acrosomal membrane integrity using flow cytometry; another portion was used for motion analysis. Irradiation was performed in petri dishes of 30 mm containing 3 ml of semen by an aluminum gallium indium phosphide laser diode with a wavelength of 660 nm, 30 mW power, and energy of 4 and 6 joules for 80 and 120 seconds respectively. Subsequently, the irradiated and control semen samples were subjected to cryopreservation and analyzed by flow cytometry (7AAD and FITC-PSA) using the ISAS - Integrated Semen Analysis System. RESULTS: Flow cytometry showed an increase in the percentage of live sperm cells and acrosome integrity in relation to control cells when subjected to irradiation of low-power laser in two different doses of 4 and 6 joules (p < 0.05). In the analysis of straightness, percentage of cell movement, and motility, a dose of 4 joules was more effective (p < 0.05). CONCLUSION: We conclude that LLLI may exert beneficial effects in the preservation of live sperm. A dose of 4 joules prior to cryopreservation was more effective than a dose of 6 joules in preserving sperm motility. Public Library of Science 2015-03-17 /pmc/articles/PMC4364308/ /pubmed/25781016 http://dx.doi.org/10.1371/journal.pone.0121487 Text en © 2015 Fernandes 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
Fernandes, Guilherme Henrique C.
de Carvalho, Paulo de Tarso Camillo
Serra, Andrey Jorge
Crespilho, André Maciel
Peron, Jean Pierre Schatzman
Rossato, Cristiano
Leal-Junior, Ernesto Cesar Pinto
Albertini, Regiane
The Effect of Low-Level Laser Irradiation on Sperm Motility, and Integrity of the Plasma Membrane and Acrosome in Cryopreserved Bovine Sperm
title The Effect of Low-Level Laser Irradiation on Sperm Motility, and Integrity of the Plasma Membrane and Acrosome in Cryopreserved Bovine Sperm
title_full The Effect of Low-Level Laser Irradiation on Sperm Motility, and Integrity of the Plasma Membrane and Acrosome in Cryopreserved Bovine Sperm
title_fullStr The Effect of Low-Level Laser Irradiation on Sperm Motility, and Integrity of the Plasma Membrane and Acrosome in Cryopreserved Bovine Sperm
title_full_unstemmed The Effect of Low-Level Laser Irradiation on Sperm Motility, and Integrity of the Plasma Membrane and Acrosome in Cryopreserved Bovine Sperm
title_short The Effect of Low-Level Laser Irradiation on Sperm Motility, and Integrity of the Plasma Membrane and Acrosome in Cryopreserved Bovine Sperm
title_sort effect of low-level laser irradiation on sperm motility, and integrity of the plasma membrane and acrosome in cryopreserved bovine sperm
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4364308/
https://www.ncbi.nlm.nih.gov/pubmed/25781016
http://dx.doi.org/10.1371/journal.pone.0121487
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