Light Emitting Diode Photobiomodulation Enhances Oxidative Redox Capacity in Murine Macrophages Stimulated with Bothrops jararacussu Venom and Isolated PLA2s

Author:

dos Reis Valdison Pereira1ORCID,da Silva Setúbal Sulamita1ORCID,Ferreira e Ferreira Alex A.1ORCID,Santana Hallison Mota1ORCID,Silva Milena Daniela Souza1ORCID,Sousa Ortência De Oliveira1ORCID,Boeno Charles Nunes1ORCID,Soares Andreimar M.23ORCID,Zamuner Stella R.4ORCID,Zuliani Juliana P.12ORCID

Affiliation:

1. Laboratório de Imunologia Celular Aplicada à Saúde, FIOCRUZ Rondônia, Porto Velho, RO, Brazil

2. Laboratório de Biotecnologia de Proteínas e Compostos Bioativos da Amazônia Ocidental, Centro de Estudos de Biomoléculas Aplicadas à Saúde (CEBio)–Fundação Oswaldo Cruz, FIOCRUZ Rondônia, Porto Velho, Rondônia, Brazil

3. Laboratório de Análise e Visualização de Dados-Fundação Oswaldo Cruz, FIOCRUZ Rondônia, Porto Velho, Rondônia, Brazil

4. Universidade Nove de Julho (UNINOVE), São Paulo, SP, Brazil

Abstract

Photobiomodulation therapy associated with conventional antivenom treatment has been shown to be effective in reducing the local effects caused by bothropic venoms in preclinical studies. In this study, we analyzed the influence of photobiomodulation using light emitting diode (LED) on the oxidative stress produced by murine macrophages stimulated with Bothrops jararacussu venom and it isolated toxins BthTX-I and BthTX-II. Under LED treatment, we evaluated the activity of the antioxidant enzymes catalase, superoxide dismutase, and peroxidase as well as the release of hydrogen peroxide and the enzyme lactate dehydrogenase. To investigate whether NADPH oxidase complex activation and mitochondrial pathways could contribute to hydrogen peroxide production by macrophages, we tested the effect of two selective inhibitors, apocynin and CCCP3, respectively. Our results showed that LED therapy was able to decrease the production of hydrogen peroxide and the liberation of lactate dehydrogenase, indicating less cell damage. In addition, the antioxidant enzymes catalase, superoxide dismutase, and peroxidase increased in response to LED treatment. The effect of LED treatment on macrophages was inhibited by CCCP3, but not by apocynin. These findings show that LED photobiomodulation treatment protects macrophages, at least in part, by reducing oxidative stress caused B. jararacussu venom and toxins.

Funder

Coordenaçâo de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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