Exercise Inhibits the Effects of Smoke-Induced COPD Involving Modulation of STAT3

Author:

Rodrigues Brandao-Rangel Maysa Alves12ORCID,Bachi Andre Luis Lacerda3ORCID,Oliveira-Junior Manoel Carneiro12ORCID,Abbasi Asghar4,Silva-Renno Adriano12,Aparecida de Brito Auriléia1,Ligeiro de Oliveira Ana Paula1ORCID,Choqueta Toledo-Arruda Alessandra5,Belvisi Maria Gabriela6,Paula Vieira Rodolfo12ORCID

Affiliation:

1. Nove de Julho University, São Paulo, SP, Brazil

2. Brazilian Institute of Teaching and Research in Pulmonary and Exercise Immunology (IBEPIPE), School of Medical Sciences of São José dos Campos Humanitas and Universidade Brasil, São Paulo, SP, Brazil

3. Institute of Physical Activity Sciences and Sports, Post-Graduate Program in Human Movement Sciences, Cruzeiro do Sul University, São Paulo, SP, Brazil

4. Institute for Memory Impairments and Neurological Disorders (MIND Institute), University of California, Irvine, CA, USA

5. Laboratory of Experimental Therapeutics (LIM 20), Department of Medicine, School of Medicine, University of Sao Paulo, São Paulo, SP, Brazil

6. Respiratory Pharmacology Group, Airway Disease, National Heart and Lung Institute, Imperial College London, London, UK

Abstract

Purpose. Evaluate the participation of STAT3 in the effects of aerobic exercise (AE) in a model of smoke-induced COPD. Methods. C57Bl/6 male mice were divided into control, Exe, COPD, and COPD+Exe groups. Smoke were administered during 90 days. Treadmill aerobic training begun on day 61 until day 90. Pulmonary inflammation, systemic inflammation, the level of lung emphysema, and the airway remodeling were evaluated. Analysis of integral and phosphorylated expression of STAT3 by airway epithelial cells, peribronchial leukocytes, and parenchymal leukocytes was performed. Results. AE inhibited smoke-induced accumulation of total cells (p<0.001), lymphocytes (p<0.001), and neutrophils (p<0.001) in BAL, as well as BAL levels of IL-1β (p<0.001), CXCL1 (p<0.001), IL-17 (p<0.001), and TNF-α (p<0.05), while increased the levels of IL-10 (p<0.001). AE also inhibited smoke-induced increases in total leukocytes (p<0.001), neutrophils (p<0.05), lymphocytes (p<0.001), and monocytes (p<0.01) in blood, as well as serum levels of IL-1β (p<0.01), CXCL1 (p<0.01), IL-17 (p<0.05), and TNF-α (p<0.01), while increased the levels of IL-10 (p<0.001). AE reduced smoke-induced emphysema (p<0.001) and collagen fiber accumulation in the airways (p<0.001). AE reduced smoke-induced STAT3 and phospho-STAT3 expression in airway epithelial cells (p<0.001), peribronchial leukocytes (p<0.001), and parenchymal leukocytes (p<0.001). Conclusions. AE reduces smoke-induced COPD phenotype involving STAT3.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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