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Erschienen in: Inflammation 3/2017

01.03.2017 | ORIGINAL ARTICLE

Atorvastatin and Simvastatin Promoted Mouse Lung Repair After Cigarette Smoke-Induced Emphysema

verfasst von: Vanessa Pinho-Ribeiro, Adriana Correa Melo, Emanuel Kennedy-Feitosa, Adriane Graca-Reis, Marina Valente Barroso, Isabella Cattani-Cavalieri, Giovanna Marcella Cavalcante Carvalho, Walter Araújo Zin, Luis Cristóvão Porto, Lycia Brito Gitirana, Manuella Lanzetti, Samuel Santos Valença

Erschienen in: Inflammation | Ausgabe 3/2017

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Abstract

Cigarette smoke (CS) induces pulmonary emphysema by inflammation, oxidative stress, and metalloproteinase (MMP) activation. Pharmacological research studies have not focused on tissue repair after the establishment of emphysema but have instead focused on inflammatory stimulation. The aim of our study was to analyze the effects of atorvastatin and simvastatin on mouse lung repair after emphysema caused by CS. Male mice (C57BL/6, n = 45) were divided into the following groups: control (sham-exposed), CSr (mice exposed to 12 cigarettes a day for 60 days and then treated for another 60 days with the vehicle), CSr+A (CSr mice treated with atorvastatin for 60 days), and CSr+S (CSr mice treated with simvastatin for 60 days). The treatment with atorvastatin and simvastatin was administered via inhalation (15 min with 1 mg/mL once a day). Mice were sacrificed 24 h after the completion of the 120-day experimental procedure. We performed biochemical, morphological, and physiological analyses. We observed decreased levels of leukocytes and cytokines in statin-treated mice, accompanied by a reduction in oxidative stress markers. We also observed a morphological improvement confirmed by a mean linear intercept counting in statin-treated mice. Finally, statins also ameliorated lung function. We conclude that inhaled atorvastatin and simvastatin improved lung repair after cigarette smoke-induced emphysema in mice.
Literatur
1.
Zurück zum Zitat Mapel, D.W., M.P. Dutro, J.P. Marton, K. Woodruff, and B. Make. 2011. Identifying and characterizing COPD patients in US managed care. A retrospective, cross-sectional analysis of administrative claims data. BMC Health Services Research 11: 43.CrossRefPubMedPubMedCentral Mapel, D.W., M.P. Dutro, J.P. Marton, K. Woodruff, and B. Make. 2011. Identifying and characterizing COPD patients in US managed care. A retrospective, cross-sectional analysis of administrative claims data. BMC Health Services Research 11: 43.CrossRefPubMedPubMedCentral
2.
Zurück zum Zitat Thurlbeck, W.M., and N.L. Muller. 1994. Emphysema: definition, imaging, and quantification. AJR American Journal of Roentgenology 163: 1017–1025.CrossRefPubMed Thurlbeck, W.M., and N.L. Muller. 1994. Emphysema: definition, imaging, and quantification. AJR American Journal of Roentgenology 163: 1017–1025.CrossRefPubMed
3.
Zurück zum Zitat Victoni, T., F. Gleonnec, M. Lanzetti, H. Tenor, S. Valenca, L.C. Porto, V. Lagente, and E. Boichot. 2014. Roflumilast N-oxide prevents cytokine secretion induced by cigarette smoke combined with LPS through JAK/STAT and ERK1/2 inhibition in airway epithelial cells. PLoS One 9: e85243.CrossRefPubMedPubMedCentral Victoni, T., F. Gleonnec, M. Lanzetti, H. Tenor, S. Valenca, L.C. Porto, V. Lagente, and E. Boichot. 2014. Roflumilast N-oxide prevents cytokine secretion induced by cigarette smoke combined with LPS through JAK/STAT and ERK1/2 inhibition in airway epithelial cells. PLoS One 9: e85243.CrossRefPubMedPubMedCentral
4.
Zurück zum Zitat Shapiro, S.D., N.M. Goldstein, A.M. Houghton, D.K. Kobayashi, D. Kelley, and A. Belaaouaj. 2003. Neutrophil elastase contributes to cigarette smoke-induced emphysema in mice. American Journal of Pathology 163: 2329–2335.CrossRefPubMedPubMedCentral Shapiro, S.D., N.M. Goldstein, A.M. Houghton, D.K. Kobayashi, D. Kelley, and A. Belaaouaj. 2003. Neutrophil elastase contributes to cigarette smoke-induced emphysema in mice. American Journal of Pathology 163: 2329–2335.CrossRefPubMedPubMedCentral
5.
Zurück zum Zitat Valenca, S.S., K. da Hora, P. Castro, V.G. Moraes, L. Carvalho, and L.C. Porto. 2004. Emphysema and metalloelastase expression in mouse lung induced by cigarette smoke. Toxicologic Pathology 32: 351–356.CrossRefPubMed Valenca, S.S., K. da Hora, P. Castro, V.G. Moraes, L. Carvalho, and L.C. Porto. 2004. Emphysema and metalloelastase expression in mouse lung induced by cigarette smoke. Toxicologic Pathology 32: 351–356.CrossRefPubMed
6.
Zurück zum Zitat Castro, P., A. Legora-Machado, L. Cardilo-Reis, S. Valenca, L.C. Porto, C. Walker, C. Zuany-Amorim, and V.L. Koatz. 2004. Inhibition of interleukin-1beta reduces mouse lung inflammation induced by exposure to cigarette smoke. European Journal of Pharmacology 498: 279–286.CrossRefPubMed Castro, P., A. Legora-Machado, L. Cardilo-Reis, S. Valenca, L.C. Porto, C. Walker, C. Zuany-Amorim, and V.L. Koatz. 2004. Inhibition of interleukin-1beta reduces mouse lung inflammation induced by exposure to cigarette smoke. European Journal of Pharmacology 498: 279–286.CrossRefPubMed
7.
Zurück zum Zitat Le Quement, C., I. Guenon, J.Y. Gillon, S. Valenca, V. Cayron-Elizondo, V. Lagente, and E. Boichot. 2008. The selective MMP-12 inhibitor, AS111793 reduces airway inflammation in mice exposed to cigarette smoke. British Journal of Pharmacology 154: 1206–1215.CrossRefPubMedPubMedCentral Le Quement, C., I. Guenon, J.Y. Gillon, S. Valenca, V. Cayron-Elizondo, V. Lagente, and E. Boichot. 2008. The selective MMP-12 inhibitor, AS111793 reduces airway inflammation in mice exposed to cigarette smoke. British Journal of Pharmacology 154: 1206–1215.CrossRefPubMedPubMedCentral
8.
Zurück zum Zitat Churg, A., S. Zhou, X. Wang, R. Wang, and J.L. Wright. 2009. The role of interleukin-1beta in murine cigarette smoke-induced emphysema and small airway remodeling. American Journal of Respiratory Cell and Molecular Biology 40: 482–490.CrossRefPubMed Churg, A., S. Zhou, X. Wang, R. Wang, and J.L. Wright. 2009. The role of interleukin-1beta in murine cigarette smoke-induced emphysema and small airway remodeling. American Journal of Respiratory Cell and Molecular Biology 40: 482–490.CrossRefPubMed
9.
Zurück zum Zitat Pryor, W.A., and K. Stone. 1993. Oxidants in cigarette smoke. Radicals, hydrogen peroxide, peroxynitrate, and peroxynitrite. Annals of the New York Academy of Sciences 686: 12–27. discussion 27-18.CrossRefPubMed Pryor, W.A., and K. Stone. 1993. Oxidants in cigarette smoke. Radicals, hydrogen peroxide, peroxynitrate, and peroxynitrite. Annals of the New York Academy of Sciences 686: 12–27. discussion 27-18.CrossRefPubMed
10.
Zurück zum Zitat Kluchova, Z., D. Petrasova, P. Joppa, Z. Dorkova, and R. Tkacova. 2007. The association between oxidative stress and obstructive lung impairment in patients with COPD. Physiological Research 56: 51–56.PubMed Kluchova, Z., D. Petrasova, P. Joppa, Z. Dorkova, and R. Tkacova. 2007. The association between oxidative stress and obstructive lung impairment in patients with COPD. Physiological Research 56: 51–56.PubMed
11.
Zurück zum Zitat Kostikas, K., G. Papatheodorou, K. Psathakis, P. Panagou, and S. Loukides. 2003. Oxidative stress in expired breath condensate of patients with COPD. Chest 124: 1373–1380.CrossRefPubMed Kostikas, K., G. Papatheodorou, K. Psathakis, P. Panagou, and S. Loukides. 2003. Oxidative stress in expired breath condensate of patients with COPD. Chest 124: 1373–1380.CrossRefPubMed
12.
Zurück zum Zitat Tkacova, R., Z. Kluchova, P. Joppa, D. Petrasova, and A. Molcanyiova. 2007. Systemic inflammation and systemic oxidative stress in patients with acute exacerbations of COPD. Respiratory Medicine 101: 1670–1676.CrossRefPubMed Tkacova, R., Z. Kluchova, P. Joppa, D. Petrasova, and A. Molcanyiova. 2007. Systemic inflammation and systemic oxidative stress in patients with acute exacerbations of COPD. Respiratory Medicine 101: 1670–1676.CrossRefPubMed
13.
Zurück zum Zitat Alifano, M., A. Cuvelier, A. Delage, N. Roche, B. Lamia, L.C. Molano, L.J. Couderc, C.H. Marquette, and P. Devillier. 2010. Treatment of COPD: from pharmacological to instrumental therapies. European Respiratory Review 19: 7–23.CrossRefPubMed Alifano, M., A. Cuvelier, A. Delage, N. Roche, B. Lamia, L.C. Molano, L.J. Couderc, C.H. Marquette, and P. Devillier. 2010. Treatment of COPD: from pharmacological to instrumental therapies. European Respiratory Review 19: 7–23.CrossRefPubMed
14.
Zurück zum Zitat Clini, E., S. Costi, M. Romagnoli, and F. Florini. 2004. Rehabilitation of COPD patients: which training modality. Monaldi Archives for Chest Disease 61: 167–173.CrossRefPubMed Clini, E., S. Costi, M. Romagnoli, and F. Florini. 2004. Rehabilitation of COPD patients: which training modality. Monaldi Archives for Chest Disease 61: 167–173.CrossRefPubMed
15.
Zurück zum Zitat Hanania, N.A., N. Ambrosino, P. Calverley, M. Cazzola, C.F. Donner, and B. Make. 2005. Treatments for COPD. Respiratory Medicine 99(Suppl B): S28–40.CrossRefPubMed Hanania, N.A., N. Ambrosino, P. Calverley, M. Cazzola, C.F. Donner, and B. Make. 2005. Treatments for COPD. Respiratory Medicine 99(Suppl B): S28–40.CrossRefPubMed
16.
17.
Zurück zum Zitat Tashkin, D.P. 2015. Smoking cessation in chronic obstructive pulmonary disease. Seminars in Respiratory and Critical Care Medicine 36: 491–507.CrossRefPubMed Tashkin, D.P. 2015. Smoking cessation in chronic obstructive pulmonary disease. Seminars in Respiratory and Critical Care Medicine 36: 491–507.CrossRefPubMed
18.
19.
Zurück zum Zitat Jain, M.K., and P.M. Ridker. 2005. Anti-inflammatory effects of statins: clinical evidence and basic mechanisms. Nature Reviews Drug Discovery 4: 977–987.CrossRefPubMed Jain, M.K., and P.M. Ridker. 2005. Anti-inflammatory effects of statins: clinical evidence and basic mechanisms. Nature Reviews Drug Discovery 4: 977–987.CrossRefPubMed
20.
Zurück zum Zitat Mira, E., and S. Manes. 2009. Immunomodulatory and anti-inflammatory activities of statins. Endocrine, Metabolic & Immune Disorders Drug Targets 9: 237–247.CrossRef Mira, E., and S. Manes. 2009. Immunomodulatory and anti-inflammatory activities of statins. Endocrine, Metabolic & Immune Disorders Drug Targets 9: 237–247.CrossRef
21.
Zurück zum Zitat Mohammadian, M., H.R. Sadeghipour, I.R. Kashani, G.P. Jahromi, A. Omidi, A.K. Nejad, R. Golchoobian, and M.H. Boskabady. Evaluation of simvastatin and bone marrow-derived mesenchymal stem cell combination therapy on airway remodeling in a mouse asthma model. Lung 194:777–785. Mohammadian, M., H.R. Sadeghipour, I.R. Kashani, G.P. Jahromi, A. Omidi, A.K. Nejad, R. Golchoobian, and M.H. Boskabady. Evaluation of simvastatin and bone marrow-derived mesenchymal stem cell combination therapy on airway remodeling in a mouse asthma model. Lung 194:777–785.
22.
Zurück zum Zitat Melo, A.C., S.S. Valenca, L.B. Gitirana, J.C. Santos, M.L. Ribeiro, M.N. Machado, C.B. Magalhaes, W.A. Zin, and L.C. Porto. 2013. Redox markers and inflammation are differentially affected by atorvastatin, pravastatin or simvastatin administered before endotoxin-induced acute lung injury. International Immunopharmacology 17: 57–64.CrossRefPubMed Melo, A.C., S.S. Valenca, L.B. Gitirana, J.C. Santos, M.L. Ribeiro, M.N. Machado, C.B. Magalhaes, W.A. Zin, and L.C. Porto. 2013. Redox markers and inflammation are differentially affected by atorvastatin, pravastatin or simvastatin administered before endotoxin-induced acute lung injury. International Immunopharmacology 17: 57–64.CrossRefPubMed
23.
Zurück zum Zitat Ferreira, T.S., M. Lanzetti, M.V. Barroso, C.R. Rueff-Barroso, C.F. Benjamim, L. de Brito-Gitirana, L.C. Porto, and S.S. Valenca. 2014. Oxidative stress and inflammation are differentially affected by atorvastatin, pravastatin, rosuvastatin, and simvastatin on lungs from mice exposed to cigarette smoke. Inflammation 37: 1355–1365.CrossRefPubMed Ferreira, T.S., M. Lanzetti, M.V. Barroso, C.R. Rueff-Barroso, C.F. Benjamim, L. de Brito-Gitirana, L.C. Porto, and S.S. Valenca. 2014. Oxidative stress and inflammation are differentially affected by atorvastatin, pravastatin, rosuvastatin, and simvastatin on lungs from mice exposed to cigarette smoke. Inflammation 37: 1355–1365.CrossRefPubMed
24.
Zurück zum Zitat Kennedy-Feitosa, E., R.F. Pinto, K.M. Pires, A.P. Monteiro, M.N. Machado, J.C. Santos, M.L. Ribeiro, et al. 2013. The influence of 5-lipoxygenase on cigarette smoke-induced emphysema in mice. Biochimica et Biophysica Acta 1840: 199–208.CrossRefPubMed Kennedy-Feitosa, E., R.F. Pinto, K.M. Pires, A.P. Monteiro, M.N. Machado, J.C. Santos, M.L. Ribeiro, et al. 2013. The influence of 5-lipoxygenase on cigarette smoke-induced emphysema in mice. Biochimica et Biophysica Acta 1840: 199–208.CrossRefPubMed
25.
Zurück zum Zitat Xu, L., X.W. Dong, L.L. Shen, F.F. Li, J.X. Jiang, R. Cao, H.Y. Yao, H.J. Shen, Y. Sun, and Q.M. Xie. 2012. Simvastatin delivery via inhalation attenuates airway inflammation in a murine model of asthma. International Immunopharmacology 12: 556–564.CrossRefPubMed Xu, L., X.W. Dong, L.L. Shen, F.F. Li, J.X. Jiang, R. Cao, H.Y. Yao, H.J. Shen, Y. Sun, and Q.M. Xie. 2012. Simvastatin delivery via inhalation attenuates airway inflammation in a murine model of asthma. International Immunopharmacology 12: 556–564.CrossRefPubMed
26.
Zurück zum Zitat Valenca, S.S., and L.C. Porto. 2008. Immunohistochemical study of lung remodeling in mice exposed to cigarette smoke*. Jornal Brasileiro de Pneumologia 34: 787–795.CrossRefPubMed Valenca, S.S., and L.C. Porto. 2008. Immunohistochemical study of lung remodeling in mice exposed to cigarette smoke*. Jornal Brasileiro de Pneumologia 34: 787–795.CrossRefPubMed
27.
Zurück zum Zitat Weibel, E.R., G.S. Kistler, and W.F. Scherle. 1966. Practical stereological methods for morphometric cytology. Journal of Cell Biology 30: 23–38.CrossRefPubMedPubMedCentral Weibel, E.R., G.S. Kistler, and W.F. Scherle. 1966. Practical stereological methods for morphometric cytology. Journal of Cell Biology 30: 23–38.CrossRefPubMedPubMedCentral
28.
Zurück zum Zitat Cardoso, W.V., P.H. Saldiva, P.M. Criado, R.S. Sakae, G.M. Bohm, and W.A. Zin. 1991. A comparison between the isovolume and the end-inflation occlusion methods for measurement of lung mechanics in rats. Journal of Applied Toxicology 11: 79–84.CrossRefPubMed Cardoso, W.V., P.H. Saldiva, P.M. Criado, R.S. Sakae, G.M. Bohm, and W.A. Zin. 1991. A comparison between the isovolume and the end-inflation occlusion methods for measurement of lung mechanics in rats. Journal of Applied Toxicology 11: 79–84.CrossRefPubMed
29.
Zurück zum Zitat Suzuki, K., H. Ota, S. Sasagawa, T. Sakatani, and T. Fujikura. 1983. Assay method for myeloperoxidase in human polymorphonuclear leukocytes. Analytical Biochemistry 132: 345–352.CrossRefPubMed Suzuki, K., H. Ota, S. Sasagawa, T. Sakatani, and T. Fujikura. 1983. Assay method for myeloperoxidase in human polymorphonuclear leukocytes. Analytical Biochemistry 132: 345–352.CrossRefPubMed
30.
Zurück zum Zitat Choi, H.S., J.W. Kim, Y.N. Cha, and C. Kim. 2006. A quantitative nitroblue tetrazolium assay for determining intracellular superoxide anion production in phagocytic cells. Journal of Immunoassay and Immunochemistry 27: 31–44.CrossRefPubMed Choi, H.S., J.W. Kim, Y.N. Cha, and C. Kim. 2006. A quantitative nitroblue tetrazolium assay for determining intracellular superoxide anion production in phagocytic cells. Journal of Immunoassay and Immunochemistry 27: 31–44.CrossRefPubMed
31.
Zurück zum Zitat Bannister, J.V., and L. Calabrese. 1987. Assays for superoxide dismutase. Methods of Biochemical Analysis 32: 279–312.CrossRefPubMed Bannister, J.V., and L. Calabrese. 1987. Assays for superoxide dismutase. Methods of Biochemical Analysis 32: 279–312.CrossRefPubMed
33.
Zurück zum Zitat Rahman, I., A. Kode, and S.K. Biswas. 2006. Assay for quantitative determination of glutathione and glutathione disulfide levels using enzymatic recycling method. Nature Protocols 1: 3159–3165.CrossRefPubMed Rahman, I., A. Kode, and S.K. Biswas. 2006. Assay for quantitative determination of glutathione and glutathione disulfide levels using enzymatic recycling method. Nature Protocols 1: 3159–3165.CrossRefPubMed
34.
Zurück zum Zitat Draper, H.H., and M. Hadley. 1990. Malondialdehyde determination as index of lipid peroxidation. Methods in Enzymology 186: 421–431.CrossRefPubMed Draper, H.H., and M. Hadley. 1990. Malondialdehyde determination as index of lipid peroxidation. Methods in Enzymology 186: 421–431.CrossRefPubMed
35.
Zurück zum Zitat Churg, A., D.D. Sin, and J.L. Wright. 2011. Everything prevents emphysema: are animal models of cigarette smoke-induced chronic obstructive pulmonary disease any use? American Journal of Respiratory Cell and Molecular Biology 45: 1111–1115.CrossRefPubMed Churg, A., D.D. Sin, and J.L. Wright. 2011. Everything prevents emphysema: are animal models of cigarette smoke-induced chronic obstructive pulmonary disease any use? American Journal of Respiratory Cell and Molecular Biology 45: 1111–1115.CrossRefPubMed
36.
Zurück zum Zitat Wan, W.Y., A. Morris, G. Kinnear, W. Pearce, J. Mok, D. Wyss, and C.S. Stevenson. 2010. Pharmacological characterisation of anti-inflammatory compounds in acute and chronic mouse models of cigarette smoke-induced inflammation. Respiratory Research 11: 126.CrossRefPubMedPubMedCentral Wan, W.Y., A. Morris, G. Kinnear, W. Pearce, J. Mok, D. Wyss, and C.S. Stevenson. 2010. Pharmacological characterisation of anti-inflammatory compounds in acute and chronic mouse models of cigarette smoke-induced inflammation. Respiratory Research 11: 126.CrossRefPubMedPubMedCentral
37.
Zurück zum Zitat Wright, J.L., and A. Churg. 2010. Animal models of cigarette smoke-induced chronic obstructive pulmonary disease. Expert Review of Respiratory Medicine 4: 723–734.CrossRefPubMed Wright, J.L., and A. Churg. 2010. Animal models of cigarette smoke-induced chronic obstructive pulmonary disease. Expert Review of Respiratory Medicine 4: 723–734.CrossRefPubMed
38.
Zurück zum Zitat Nadigel, J., S. Audusseau, C.J. Baglole, D.H. Eidelman, and Q. Hamid. 2013. IL-8 production in response to cigarette smoke is decreased in epithelial cells from COPD patients. Pulmonary Pharmacology & Therapeutics 26: 596–602.CrossRef Nadigel, J., S. Audusseau, C.J. Baglole, D.H. Eidelman, and Q. Hamid. 2013. IL-8 production in response to cigarette smoke is decreased in epithelial cells from COPD patients. Pulmonary Pharmacology & Therapeutics 26: 596–602.CrossRef
39.
Zurück zum Zitat Kim, C., J.M. Lee, S.W. Park, K.S. Kim, M.W. Lee, S. Paik, A.S. Jang, et al. 2015. Attenuation of cigarette smoke-induced emphysema in mice by apolipoprotein A-1 overexpression. American Journal of Respiratory Cell and Molecular Biology 54: 91–102.CrossRef Kim, C., J.M. Lee, S.W. Park, K.S. Kim, M.W. Lee, S. Paik, A.S. Jang, et al. 2015. Attenuation of cigarette smoke-induced emphysema in mice by apolipoprotein A-1 overexpression. American Journal of Respiratory Cell and Molecular Biology 54: 91–102.CrossRef
40.
Zurück zum Zitat Suzuki, M., T. Betsuyaku, K. Nagai, S. Fuke, Y. Nasuhara, K. Kaga, S. Kondo, et al. 2008. Decreased airway expression of vascular endothelial growth factor in cigarette smoke-induced emphysema in mice and COPD patients. Inhalation Toxicology 20: 349–359.CrossRefPubMed Suzuki, M., T. Betsuyaku, K. Nagai, S. Fuke, Y. Nasuhara, K. Kaga, S. Kondo, et al. 2008. Decreased airway expression of vascular endothelial growth factor in cigarette smoke-induced emphysema in mice and COPD patients. Inhalation Toxicology 20: 349–359.CrossRefPubMed
41.
Zurück zum Zitat Wright, J.L., S. Zhou, O. Preobrazhenska, C. Marshall, D.D. Sin, I. Laher, S. Golbidi, and A.M. Churg. 2010. Statin reverses smoke-induced pulmonary hypertension and prevents emphysema but not airway remodeling. American Journal of Respiratory and Critical Care Medicine 183: 50–58.CrossRefPubMed Wright, J.L., S. Zhou, O. Preobrazhenska, C. Marshall, D.D. Sin, I. Laher, S. Golbidi, and A.M. Churg. 2010. Statin reverses smoke-induced pulmonary hypertension and prevents emphysema but not airway remodeling. American Journal of Respiratory and Critical Care Medicine 183: 50–58.CrossRefPubMed
42.
Zurück zum Zitat Bezerra, F.S., S.S. Valenca, K.M. Pires, M. Lanzetti, W.A. Pimenta, A.C. Schmidt, L.C. Porto, and W.A. Zin. 2011. Long-term exposure to cigarette smoke impairs lung function and increases HMGB-1 expression in mice. Respiratory Physiology & Neurobiology 177: 120–126.CrossRef Bezerra, F.S., S.S. Valenca, K.M. Pires, M. Lanzetti, W.A. Pimenta, A.C. Schmidt, L.C. Porto, and W.A. Zin. 2011. Long-term exposure to cigarette smoke impairs lung function and increases HMGB-1 expression in mice. Respiratory Physiology & Neurobiology 177: 120–126.CrossRef
43.
Zurück zum Zitat Rutgers, S.R., D.S. Postma, N.H. ten Hacken, H.F. Kauffman, T.W. van Der Mark, G.H. Koeter, and W. Timens. 2000. Ongoing airway inflammation in patients with COPD who do not currently smoke. Chest 117: 262S.CrossRefPubMed Rutgers, S.R., D.S. Postma, N.H. ten Hacken, H.F. Kauffman, T.W. van Der Mark, G.H. Koeter, and W. Timens. 2000. Ongoing airway inflammation in patients with COPD who do not currently smoke. Chest 117: 262S.CrossRefPubMed
44.
Zurück zum Zitat Valenca, S.S., F.S. Bezerra, B. Romana-Souza, R.O. Paiva, A.M. Costa, and L.C. Porto. 2008. Supplementation with vitamins C and E improves mouse lung repair. Journal of Nutritional Biochemistry 19: 604–611.CrossRefPubMed Valenca, S.S., F.S. Bezerra, B. Romana-Souza, R.O. Paiva, A.M. Costa, and L.C. Porto. 2008. Supplementation with vitamins C and E improves mouse lung repair. Journal of Nutritional Biochemistry 19: 604–611.CrossRefPubMed
45.
Zurück zum Zitat Mazur, W., H. Stark, A. Sovijarvi, M. Myllarniemi, and V.L. Kinnula. 2009. Comparison of 8-isoprostane and interleukin-8 in induced sputum and exhaled breath condensate from asymptomatic and symptomatic smokers. Respiration 78: 209–216.CrossRefPubMed Mazur, W., H. Stark, A. Sovijarvi, M. Myllarniemi, and V.L. Kinnula. 2009. Comparison of 8-isoprostane and interleukin-8 in induced sputum and exhaled breath condensate from asymptomatic and symptomatic smokers. Respiration 78: 209–216.CrossRefPubMed
46.
Zurück zum Zitat Herfs, M., P. Hubert, A.L. Poirrier, P. Vandevenne, V. Renoux, Y. Habraken, D. Cataldo, J. Boniver, and P. Delvenne. 2012. Proinflammatory cytokines induce bronchial hyperplasia and squamous metaplasia in smokers: implications for chronic obstructive pulmonary disease therapy. American Journal of Respiratory Cell and Molecular Biology 47: 67–79.CrossRefPubMed Herfs, M., P. Hubert, A.L. Poirrier, P. Vandevenne, V. Renoux, Y. Habraken, D. Cataldo, J. Boniver, and P. Delvenne. 2012. Proinflammatory cytokines induce bronchial hyperplasia and squamous metaplasia in smokers: implications for chronic obstructive pulmonary disease therapy. American Journal of Respiratory Cell and Molecular Biology 47: 67–79.CrossRefPubMed
47.
Zurück zum Zitat Yao, H., S.R. Yang, A. Kode, S. Rajendrasozhan, S. Caito, D. Adenuga, R. Henry, I. Edirisinghe, and I. Rahman. 2007. Redox regulation of lung inflammation: role of NADPH oxidase and NF-kappaB signalling. Biochemical Society Transactions 35: 1151–1155.CrossRefPubMed Yao, H., S.R. Yang, A. Kode, S. Rajendrasozhan, S. Caito, D. Adenuga, R. Henry, I. Edirisinghe, and I. Rahman. 2007. Redox regulation of lung inflammation: role of NADPH oxidase and NF-kappaB signalling. Biochemical Society Transactions 35: 1151–1155.CrossRefPubMed
48.
Zurück zum Zitat Hammerschmidt, S., N. Buchler, and H. Wahn. 2002. Tissue lipid peroxidation and reduced glutathione depletion in hypochlorite-induced lung injury. Chest 121: 573–581.CrossRefPubMed Hammerschmidt, S., N. Buchler, and H. Wahn. 2002. Tissue lipid peroxidation and reduced glutathione depletion in hypochlorite-induced lung injury. Chest 121: 573–581.CrossRefPubMed
49.
Zurück zum Zitat Zhu, B., A.Q. Ma, L. Yang, and X.M. Dang. 2014. Atorvastatin attenuates bleomycin-induced pulmonary fibrosis via suppressing iNOS expression and the CTGF (CCN2)/ERK signaling pathway. International Journal of Molecular Sciences 14: 24476–24491.CrossRef Zhu, B., A.Q. Ma, L. Yang, and X.M. Dang. 2014. Atorvastatin attenuates bleomycin-induced pulmonary fibrosis via suppressing iNOS expression and the CTGF (CCN2)/ERK signaling pathway. International Journal of Molecular Sciences 14: 24476–24491.CrossRef
50.
Zurück zum Zitat Zhao, W., H. Song, and W. Huo. 2015. Long-term administration of simvastatin reduces ventilator-induced lung injury and upregulates heme oxygenase 1 expression in a rat model. Journal of Surgical Research 199: 601–607.CrossRefPubMed Zhao, W., H. Song, and W. Huo. 2015. Long-term administration of simvastatin reduces ventilator-induced lung injury and upregulates heme oxygenase 1 expression in a rat model. Journal of Surgical Research 199: 601–607.CrossRefPubMed
51.
Zurück zum Zitat Bouhafs, R.K., A. Samuelson, and C. Jarstrand. 2003. Lipid peroxidation of lung surfactant due to reactive oxygen species released from phagocytes stimulated by bacteria from children with cystic fibrosis. Free Radical Research 37: 909–917.CrossRefPubMed Bouhafs, R.K., A. Samuelson, and C. Jarstrand. 2003. Lipid peroxidation of lung surfactant due to reactive oxygen species released from phagocytes stimulated by bacteria from children with cystic fibrosis. Free Radical Research 37: 909–917.CrossRefPubMed
52.
Zurück zum Zitat Yang, S., H. Wu, J. Zhao, X. Wu, Q. Ning, Y. Xu, and J. Xie. 2014. Feasibility of 8-OHdG formation and hOGG1 induction in PBMCs for assessing oxidative DNA damage in the lung of COPD patients. Respirology 19: 1183–1190.CrossRefPubMed Yang, S., H. Wu, J. Zhao, X. Wu, Q. Ning, Y. Xu, and J. Xie. 2014. Feasibility of 8-OHdG formation and hOGG1 induction in PBMCs for assessing oxidative DNA damage in the lung of COPD patients. Respirology 19: 1183–1190.CrossRefPubMed
53.
Zurück zum Zitat Peluffo, G., P. Calcerrada, L. Piacenza, N. Pizzano, and R. Radi. 2009. Superoxide-mediated inactivation of nitric oxide and peroxynitrite formation by tobacco smoke in vascular endothelium: studies in cultured cells and smokers. American Journal of Physiology. Heart and Circulatory Physiology 296: H1781–1792.CrossRefPubMedPubMedCentral Peluffo, G., P. Calcerrada, L. Piacenza, N. Pizzano, and R. Radi. 2009. Superoxide-mediated inactivation of nitric oxide and peroxynitrite formation by tobacco smoke in vascular endothelium: studies in cultured cells and smokers. American Journal of Physiology. Heart and Circulatory Physiology 296: H1781–1792.CrossRefPubMedPubMedCentral
54.
Zurück zum Zitat Petruzzelli, S., R. Puntoni, P. Mimotti, N. Pulera, F. Baliva, E. Fornai, and C. Giuntini. 1997. Plasma 3-nitrotyrosine in cigarette smokers. American Journal of Respiratory and Critical Care Medicine 156: 1902–1907.CrossRefPubMed Petruzzelli, S., R. Puntoni, P. Mimotti, N. Pulera, F. Baliva, E. Fornai, and C. Giuntini. 1997. Plasma 3-nitrotyrosine in cigarette smokers. American Journal of Respiratory and Critical Care Medicine 156: 1902–1907.CrossRefPubMed
55.
Zurück zum Zitat Kanazawa, H., S. Shoji, K. Hirata, N. Kurthara, and J. Yoshikawa. 1996. Role of endogenous nitric oxide in airflow obstruction in smokers. Chest 110: 927–929.CrossRefPubMed Kanazawa, H., S. Shoji, K. Hirata, N. Kurthara, and J. Yoshikawa. 1996. Role of endogenous nitric oxide in airflow obstruction in smokers. Chest 110: 927–929.CrossRefPubMed
56.
Zurück zum Zitat Jin, H., B.J. Webb-Robertson, E.S. Peterson, R. Tan, D.J. Bigelow, M.B. Scholand, J.R. Hoidal, J.G. Pounds, and R.C. Zangar. 2011. Smoking, COPD, and 3-nitrotyrosine levels of plasma proteins. Environmental Health Perspectives 119: 1314–1320.CrossRefPubMedPubMedCentral Jin, H., B.J. Webb-Robertson, E.S. Peterson, R. Tan, D.J. Bigelow, M.B. Scholand, J.R. Hoidal, J.G. Pounds, and R.C. Zangar. 2011. Smoking, COPD, and 3-nitrotyrosine levels of plasma proteins. Environmental Health Perspectives 119: 1314–1320.CrossRefPubMedPubMedCentral
57.
Zurück zum Zitat Sun, G., Y. Li, and Z. Ji. 2015. Atorvastatin attenuates inflammation and oxidative stress induced by ischemia/reperfusion in rat heart via the Nrf2 transcription factor. International Journal of Clinical and Experimental Medicine 8: 14837–14845.PubMedPubMedCentral Sun, G., Y. Li, and Z. Ji. 2015. Atorvastatin attenuates inflammation and oxidative stress induced by ischemia/reperfusion in rat heart via the Nrf2 transcription factor. International Journal of Clinical and Experimental Medicine 8: 14837–14845.PubMedPubMedCentral
58.
Zurück zum Zitat Habeos, I.G., P.G. Ziros, D. Chartoumpekis, A. Psyrogiannis, V. Kyriazopoulou, and A.G. Papavassiliou. 2008. Simvastatin activates Keap1/Nrf2 signaling in rat liver. J Mol Med (Berl) 86: 1279–1285.CrossRef Habeos, I.G., P.G. Ziros, D. Chartoumpekis, A. Psyrogiannis, V. Kyriazopoulou, and A.G. Papavassiliou. 2008. Simvastatin activates Keap1/Nrf2 signaling in rat liver. J Mol Med (Berl) 86: 1279–1285.CrossRef
59.
Zurück zum Zitat Parks, W.C., and S.D. Shapiro. 2001. Matrix metalloproteinases in lung biology. Respiratory Research 2: 10–19.CrossRefPubMed Parks, W.C., and S.D. Shapiro. 2001. Matrix metalloproteinases in lung biology. Respiratory Research 2: 10–19.CrossRefPubMed
60.
Zurück zum Zitat Arikan, M.C., S.D. Shapiro, and T.J. Mariani. 2005. Induction of macrophage elastase (MMP-12) gene expression by statins. Journal of Cellular Physiology 204: 139–145.CrossRefPubMed Arikan, M.C., S.D. Shapiro, and T.J. Mariani. 2005. Induction of macrophage elastase (MMP-12) gene expression by statins. Journal of Cellular Physiology 204: 139–145.CrossRefPubMed
Metadaten
Titel
Atorvastatin and Simvastatin Promoted Mouse Lung Repair After Cigarette Smoke-Induced Emphysema
verfasst von
Vanessa Pinho-Ribeiro
Adriana Correa Melo
Emanuel Kennedy-Feitosa
Adriane Graca-Reis
Marina Valente Barroso
Isabella Cattani-Cavalieri
Giovanna Marcella Cavalcante Carvalho
Walter Araújo Zin
Luis Cristóvão Porto
Lycia Brito Gitirana
Manuella Lanzetti
Samuel Santos Valença
Publikationsdatum
01.03.2017
Verlag
Springer US
Erschienen in
Inflammation / Ausgabe 3/2017
Print ISSN: 0360-3997
Elektronische ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-017-0541-5

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