Low-power infrared laser modulates telomere length in heart tissue from an experimental model of acute lung injury

Acute lung injury and acute respiratory distress syndrome can occur as a result of sepsis. Cardiac dysfunction is a serious component of multi-organ failure caused by severe sepsis. Telomere shortening is related to several heart diseases. Telomeres are associated with the shelterin protein complex,...

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Published in:Photochemical & photobiological sciences Vol. 20; no. 5; p. 653
Main Authors: da Silva Neto Trajano, Larissa Alexsandra, da Silva Sergio, Luiz Philippe, de Oliveira, Diego Sá Leal, Trajano, Eduardo Tavares Lima, Dos Santos Silva, Marco Aurélio, de Paoli, Flavia, Mencalha, André Luiz, de Souza da Fonseca, Adenilson
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Language:English
Published: England 01-05-2021
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Abstract Acute lung injury and acute respiratory distress syndrome can occur as a result of sepsis. Cardiac dysfunction is a serious component of multi-organ failure caused by severe sepsis. Telomere shortening is related to several heart diseases. Telomeres are associated with the shelterin protein complex, which contributes to the maintenance of telomere length. Low-power infrared lasers modulate mRNA levels of shelterin complex genes. This study aimed to evaluate effects of a low-power infrared laser on mRNA relative levels of genes involved in telomere stabilization and telomere length in heart tissue of an experimental model of acute lung injury caused by sepsis. Animals were divided into six groups, treated with intraperitoneal saline solution, saline solution and exposed to a low-power infrared laser at 10 J cm and 20 J cm , lipopolysaccharide (LPS), and LPS and, after 4 h, exposed to a low-power infrared laser at 10 J cm and 20 J cm . The laser exposure was performed only once. Analysis of mRNA relative levels and telomere length by RT-qPCR was performed. Telomere shortening and reduction in mRNA relative levels of TRF1 mRNA in heart tissues of LPS-induced ALI animals were observed. In addition, laser exposure increased the telomere length at 10 J cm and modulated the TRF1 mRNA relative levels of at 20 J cm in healthy animals. Although the telomeres were shortened and mRNA levels of TRF1 gene were increased in nontreated controls, the low-power infrared laser irradiation increased the telomere length at 10 J cm in cardiac tissue of animals affected by LPS-induced acute lung injury, which suggests that telomere maintenance is a part of the photobiomodulation effect induced by infrared radiation.
AbstractList Acute lung injury and acute respiratory distress syndrome can occur as a result of sepsis. Cardiac dysfunction is a serious component of multi-organ failure caused by severe sepsis. Telomere shortening is related to several heart diseases. Telomeres are associated with the shelterin protein complex, which contributes to the maintenance of telomere length. Low-power infrared lasers modulate mRNA levels of shelterin complex genes. This study aimed to evaluate effects of a low-power infrared laser on mRNA relative levels of genes involved in telomere stabilization and telomere length in heart tissue of an experimental model of acute lung injury caused by sepsis. Animals were divided into six groups, treated with intraperitoneal saline solution, saline solution and exposed to a low-power infrared laser at 10 J cm and 20 J cm , lipopolysaccharide (LPS), and LPS and, after 4 h, exposed to a low-power infrared laser at 10 J cm and 20 J cm . The laser exposure was performed only once. Analysis of mRNA relative levels and telomere length by RT-qPCR was performed. Telomere shortening and reduction in mRNA relative levels of TRF1 mRNA in heart tissues of LPS-induced ALI animals were observed. In addition, laser exposure increased the telomere length at 10 J cm and modulated the TRF1 mRNA relative levels of at 20 J cm in healthy animals. Although the telomeres were shortened and mRNA levels of TRF1 gene were increased in nontreated controls, the low-power infrared laser irradiation increased the telomere length at 10 J cm in cardiac tissue of animals affected by LPS-induced acute lung injury, which suggests that telomere maintenance is a part of the photobiomodulation effect induced by infrared radiation.
Author da Silva Neto Trajano, Larissa Alexsandra
de Oliveira, Diego Sá Leal
Mencalha, André Luiz
Dos Santos Silva, Marco Aurélio
de Souza da Fonseca, Adenilson
de Paoli, Flavia
Trajano, Eduardo Tavares Lima
da Silva Sergio, Luiz Philippe
Author_xml – sequence: 1
  givenname: Larissa Alexsandra
  orcidid: 0000-0002-2600-9770
  surname: da Silva Neto Trajano
  fullname: da Silva Neto Trajano, Larissa Alexsandra
  email: larissa.alexsandra@hotmail.com, larissa.alexsandra@hotmail.com, larissa.alexsandra@hotmail.com
  organization: Mestrado Profissional em Ciências Aplicadas em Saúde, Universidade de Vassouras, Avenida Expedicionário Oswaldo de Almeida Ramos, 280, Vassouras, Rio de Janeiro, 27700000, Brazil. larissa.alexsandra@hotmail.com
– sequence: 2
  givenname: Luiz Philippe
  surname: da Silva Sergio
  fullname: da Silva Sergio, Luiz Philippe
  organization: Departamento de Biofísica e Biometria, Instituto de Biologia Roberto Alcântara Gomes, Universidade do Estado do Rio de Janeiro, Avenida 28 de Setembro, 87, fundos, Vila Isabel, Rio de Janeiro, 20551030, Brazil
– sequence: 3
  givenname: Diego Sá Leal
  surname: de Oliveira
  fullname: de Oliveira, Diego Sá Leal
  organization: Departamento de Biofísica e Biometria, Instituto de Biologia Roberto Alcântara Gomes, Universidade do Estado do Rio de Janeiro, Avenida 28 de Setembro, 87, fundos, Vila Isabel, Rio de Janeiro, 20551030, Brazil
– sequence: 4
  givenname: Eduardo Tavares Lima
  surname: Trajano
  fullname: Trajano, Eduardo Tavares Lima
  organization: Mestrado Profissional em Ciências Aplicadas em Saúde, Universidade de Vassouras, Avenida Expedicionário Oswaldo de Almeida Ramos, 280, Vassouras, Rio de Janeiro, 27700000, Brazil
– sequence: 5
  givenname: Marco Aurélio
  surname: Dos Santos Silva
  fullname: Dos Santos Silva, Marco Aurélio
  organization: Mestrado Profissional em Ciências Aplicadas em Saúde, Universidade de Vassouras, Avenida Expedicionário Oswaldo de Almeida Ramos, 280, Vassouras, Rio de Janeiro, 27700000, Brazil
– sequence: 6
  givenname: Flavia
  surname: de Paoli
  fullname: de Paoli, Flavia
  organization: Departamento de Morfologia, Instituto de Ciências Biológicas, Universidade Federal de Juiz de Fora, Minas Gerais, Rua José Lourenço Khelmer - s/n, Campus Universitário, São Pedro, Juiz de Fora, 36036900, Brazil
– sequence: 7
  givenname: André Luiz
  surname: Mencalha
  fullname: Mencalha, André Luiz
  organization: Departamento de Biofísica e Biometria, Instituto de Biologia Roberto Alcântara Gomes, Universidade do Estado do Rio de Janeiro, Avenida 28 de Setembro, 87, fundos, Vila Isabel, Rio de Janeiro, 20551030, Brazil
– sequence: 8
  givenname: Adenilson
  surname: de Souza da Fonseca
  fullname: de Souza da Fonseca, Adenilson
  organization: Centro de Ciências da Saúde, Centro Universitário Serra Dos Órgãos, Avenida Alberto Torres, 111, Teresópolis, Rio de Janeiro, 25964004, Brazil
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crossref_primary_10_1007_s10517_022_05430_5
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Keywords Telomerase
Low-power laser
Telomere length
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Snippet Acute lung injury and acute respiratory distress syndrome can occur as a result of sepsis. Cardiac dysfunction is a serious component of multi-organ failure...
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SubjectTerms Acute Lung Injury - chemically induced
Acute Lung Injury - genetics
Acute Lung Injury - pathology
Animals
Heart
Lasers
Lipopolysaccharides
RNA, Messenger - genetics
Sepsis - chemically induced
Sepsis - genetics
Sepsis - pathology
Telomere - genetics
Title Low-power infrared laser modulates telomere length in heart tissue from an experimental model of acute lung injury
URI https://www.ncbi.nlm.nih.gov/pubmed/34009632
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