Aerobic exercise inhibits acute lung injury: from mouse to human evidence Exercise reduced lung injury markers in mouse and in cells

Authors

  • Nicole Cristine Rigonato-Oliveira Nove de Julho University, São Paulo - SP, Brazil Author
  • BreAnne MacKenzie Brazilian Institute of Teaching and Research in Pulmonary and Exercise Immunology, São José dos Campos - SP, Brazil Author
  • Andre Luis Lacerda Bachi Brazilian Institute of Teaching and Research in Pulmonary and Exercise Immunology, São José dos Campos - SP, Brazil Author
  • Manoel Carneiro Oliveira-Junior Brazilian Institute of Teaching and Research in Pulmonary and Exercise Immunology, São José dos Campos - SP, Brazil Author
  • Alana Santos-Dias Brazilian Institute of Teaching and Research in Pulmonary and Exercise Immunology, São José dos Campos - SP, Brazil Author
  • Maysa Alves Rodrigues Brandao-Rangel Brazilian Institute of Teaching and Research in Pulmonary and Exercise Immunology, São José dos Campos - SP, Brazil Author
  • Humberto Delle Nove de Julho University, São Paulo - SP, Brazil Author
  • Tamara Costa-Guimaraes Universidade Brasil, São Paulo - SP, Brazil Author
  • Nilsa Regina Damaceno-Rodrigues University of Sao Paulo, School of Medicine, Department of Pathology, Sao Paulo - SP, Brazil Author
  • Larissa Hilário Dulley Brazilian Institute of Teaching and Research in Pulmonary and Exercise Immunology, São José dos Campos - SP, Brazil Author
  • Marcela Anhesini Benetti Brazilian Institute of Teaching and Research in Pulmonary and Exercise Immunology, São José dos Campos - SP, Brazil Author
  • Christiane Malfitano Science Department of Health, Universidade Federal de Lavras, Lavras - MG, Brazil Author
  • Kátia de Angelis Federal University of São Paulo, Campus São Paulo, São Paulo - SP, Brazil Author
  • Regiane Albertini Federal University of São Paulo, Post-graduation Program in Sciences of Human Movement and Rehabilitation, Santos - SP, Brazil Author
  • Ana Paula Ligeiro Oliveira Nove de Julho University, São Paulo - SP, Brazil Author
  • Asghar Abbasi Division of Respiratory & Critical Care Physiology & Medicine, Los Angeles Biomedical Research Institute at Harbor - UCLA Medical Center, California - CA, USA Author
  • Hinnak Northoff Institute of Clinical and Experimental Transfusion Medicine, University of Tübingen, Tübingen, Germany Author
  • Rodolfo Paula Vieira Brazilian Institute of Teaching and Research in Pulmonary and Exercise Immunology, São José dos Campos - SP, Brazil Author

DOI:

https://doi.org/10.22029/eir.2018.1720

Keywords:

RESPIRATORY-DISTRESS-SYNDROME, DISABILITY 5 YEARS, MODERATE EXERCISE, INFLAMMATION, INTERLEUKIN-10, STATEMENT, CYTOKINE, STRESS, MACROPHAGES, IMMUNITY

Abstract

Acute respiratory distress syndrome (ARDS) is defined as hypoxemic respiratory failure with intense pulmonary inflammation, involving hyperactivation of endothelial cells and neutrophils. Given the anti-inflammatory effects of aerobic exercise (AE), this study investigated whether AE performed daily for 5 weeks would inhibit extra-pulmonary LPS-induced ARDS. C57Bl/6 mice were distributed into Control, Exercise, LPS and Exercise+ LPS groups. AE was performed on a treadmill for 5x/week for four weeks before LPS administration. 24hours after the final AE physical test, animals received 100ug of LPS intra-peritoneally. In addition, whole blood cell culture, neutrophils and human endothelial cells were pre-incubated with IL-10, an anti-inflammatory cytokine induced by exercise. AE reduced total protein levels (p<0.01) and neutrophil accumulation in bronchoalveolar lavage (BAL) (p<0.01) and lung parenchyma (p<0.01). AE reduced BAL inflammatory cytokines IL-1 beta, IL-6 and GM-CSF (p<0.001), CXCL1/KC, IL-17, TNF-alpha and IGF-1 (p<0.01). Systemically, AE reduced IL-1 beta, IL-6 and IFN-gamma (p<0.001), CXCL1/KC (p<0.01) and TNF-alpha (p<0.05). AE increased IL-10 levels in serum (p<0.001) and BAL (p<0.001). Furthermore, AE increased superoxide dismutase SOD (p<0.01) and decreased superoxide anion accumulation in the lungs (p<0.01). Lastly, pre-incubation with IL-10 significantly reduced LPS-induced activation of whole blood cells, neutrophils and HUVECs, as observed by reduced production of IL-1 beta, IL-6, IL-8 and TNF-alpha. Our data suggest that AE inhibited LPS-induced lung inflammation by attenuating inflammatory cytokines and oxidative stress markers in mice and human cell culture via enhanced IL-10 production.

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Published

2018-12-31

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Articles