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Erschienen in: Inflammation 5/2016

29.07.2016 | ORIGINAL ARTICLE

The Effects of Dexamethasone and L-NAME on Acute Lung Injury in Rats with Lung Contusion

verfasst von: Ahmet Kozan, Nermin Kilic, Hasan Alacam, Ahmet Guzel, Tolga Guvenc, Mehmet Acikgoz

Erschienen in: Inflammation | Ausgabe 5/2016

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Abstract

The therapeutic efficiency of an anti-inflammatory agent, dexamethasone (DXM), and a nitric oxide synthase (NOS) inhibitor, Nitro-L-arginine methyl ester (L-NAME), in lung tissue injury after lung contusion was investigated. Serum levels of tumor necrosis factor-alpha (TNF-α), interleukin-10 (IL-10), YKL-40, an inflammatory peptide, inducible NOS (iNOS), and Clara cell protein 16 (CC-16) were evaluated. Immunohistochemical analyses were also performed, and the lung tissue was examined histopathologically. The study consisted of eight groups of Sprague-Dawley rats (n = 10 in each group), weighing 250–300 g: (1) control, (2) contusion, (3) control + DXM, (4) contusion + DXM, (5) control + L-NAME (6) contusion + L-NAME, (7) control + DXM + L-NAME, and (8) contusion + DXM + L-NAME. A previously developed lung contusion model was used, in addition to the control group. The rats were administered DXM and L-NAME intraperitoneally (i.p.) at doses of 15 and 60 mg/kg/day, respectively. DXM and L-NAME administration decreased the iNOS level in the contusion groups. DXM increased the levels of YKL-40 and IL-10 in both the control and contusion groups, with higher levels in the contusion groups. L-NAME increased the serum level of IL-10 in the lung contusion groups. DXM increased the synthesis of CC-16 in the control and contusion groups. The combined use of a high-dose steroid and NOS inhibitor resulted in the death of the rats. Steroids can increase the level of cytokines, such as YKL-40 and IL-10, and the synthesis of CC-16 and prevent pneumonia, ALI/ARDS, and sepsis in lung contusion.
Literatur
4.
Zurück zum Zitat Mark, K.S., W.J. Trickler, and D.W. Miller. 2001. Tumor necrosis factor-alpha induces cyclooxygenase-2 expression and prostaglandin release in brain microvessel endothelial cells. Journal of Pharmacology and Experimental Therapeutics 297: 1051–1058.PubMed Mark, K.S., W.J. Trickler, and D.W. Miller. 2001. Tumor necrosis factor-alpha induces cyclooxygenase-2 expression and prostaglandin release in brain microvessel endothelial cells. Journal of Pharmacology and Experimental Therapeutics 297: 1051–1058.PubMed
6.
Zurück zum Zitat Sanders, D.B., D.F. Larson, K. Hunter, M. Gorman, and B. Yang. 2001. Comparison of tumor necrosis factor-alpha effect on the expression of iNOS in macrophage and cardiac myocytes. Perfusion 16: 67–74.CrossRefPubMed Sanders, D.B., D.F. Larson, K. Hunter, M. Gorman, and B. Yang. 2001. Comparison of tumor necrosis factor-alpha effect on the expression of iNOS in macrophage and cardiac myocytes. Perfusion 16: 67–74.CrossRefPubMed
7.
Zurück zum Zitat Fiorentino, D.F., A. Zlotnik, T.R. Mosmann, M. Howard, and A. Ogarra. 1991. IL-10 ınhibits cytokine production by activated macrophages. Journal of Immunology 147: 3815–3822. Fiorentino, D.F., A. Zlotnik, T.R. Mosmann, M. Howard, and A. Ogarra. 1991. IL-10 ınhibits cytokine production by activated macrophages. Journal of Immunology 147: 3815–3822.
8.
Zurück zum Zitat Kasama, T., R.M. Strieter, N.W. Lukacs, M.D. Burdick, and S.L. Kunkel. 1994. Regulation of neutrophil-derived chemokine expression by IL-10. Journal of Immunology 152: 3559–3569. Kasama, T., R.M. Strieter, N.W. Lukacs, M.D. Burdick, and S.L. Kunkel. 1994. Regulation of neutrophil-derived chemokine expression by IL-10. Journal of Immunology 152: 3559–3569.
9.
Zurück zum Zitat Kzhyshkowska, J., A. Gratchev, and S. Goerdt. 2007. Human chitinases and chitinase-like proteins as indicators for inflammation and cancer. Biomarker Insights 2: 128–146.PubMedPubMedCentral Kzhyshkowska, J., A. Gratchev, and S. Goerdt. 2007. Human chitinases and chitinase-like proteins as indicators for inflammation and cancer. Biomarker Insights 2: 128–146.PubMedPubMedCentral
10.
Zurück zum Zitat Letuve, S., A. Kozhich, N. Arouche, M. Grandsaigne, J. Reed, M.-C. Dombret, P.A. Kiener, M. Aubier, A.J. Coyle, and M. Pretolani. 2008. YKL-40 is elevated in patients with chronic obstructive pulmonary disease and activates alveolar macrophages. Journal of Immunology 181: 5167–5173.CrossRef Letuve, S., A. Kozhich, N. Arouche, M. Grandsaigne, J. Reed, M.-C. Dombret, P.A. Kiener, M. Aubier, A.J. Coyle, and M. Pretolani. 2008. YKL-40 is elevated in patients with chronic obstructive pulmonary disease and activates alveolar macrophages. Journal of Immunology 181: 5167–5173.CrossRef
11.
14.
Zurück zum Zitat Shibata, T., K. Nagata, and Y. Kobayashi. 2006. Pivotal advance: a suppressive role of nitric oxide in MIP-2 production by macrophages upon coculturing with apoptotic cells. Journal of Leukocyte Biology 80: 744–752. doi:10.1189/jlb.0106012.CrossRefPubMed Shibata, T., K. Nagata, and Y. Kobayashi. 2006. Pivotal advance: a suppressive role of nitric oxide in MIP-2 production by macrophages upon coculturing with apoptotic cells. Journal of Leukocyte Biology 80: 744–752. doi:10.​1189/​jlb.​0106012.CrossRefPubMed
15.
Zurück zum Zitat Li, X.Y., K. Donaldson, and W. MacNee. 1998. Lipopolysaccharide-induced alveolar epithelial permeability—the role of nitric oxide. American Journal of Respiratory and Critical Care Medicine 157: 1027–1033.CrossRefPubMed Li, X.Y., K. Donaldson, and W. MacNee. 1998. Lipopolysaccharide-induced alveolar epithelial permeability—the role of nitric oxide. American Journal of Respiratory and Critical Care Medicine 157: 1027–1033.CrossRefPubMed
16.
Zurück zum Zitat Wang, D., J. Wei, K. Hsu, J.C. Jau, M.W. Lieu, T.J. Chao, and H.I. Chen. 1999. Effects of nitric oxide synthase inhibitors on systemic hypotension, cytokines and inducible nitric oxide synthase expression and lung injury following endotoxin administration in rats. Journal of Biomedical Science 6: 28–35. doi:10.1007/bf02256421.CrossRefPubMed Wang, D., J. Wei, K. Hsu, J.C. Jau, M.W. Lieu, T.J. Chao, and H.I. Chen. 1999. Effects of nitric oxide synthase inhibitors on systemic hypotension, cytokines and inducible nitric oxide synthase expression and lung injury following endotoxin administration in rats. Journal of Biomedical Science 6: 28–35. doi:10.​1007/​bf02256421.CrossRefPubMed
17.
Zurück zum Zitat Hermans, C., and A. Bernard. 1999. Lung epithelium-specific proteins—characteristics and potential applications as markers. American Journal of Respiratory and Critical Care Medicine 159: 646–678.CrossRefPubMed Hermans, C., and A. Bernard. 1999. Lung epithelium-specific proteins—characteristics and potential applications as markers. American Journal of Respiratory and Critical Care Medicine 159: 646–678.CrossRefPubMed
19.
Zurück zum Zitat Alaçam, H., R. Karli, O. Alici, B. Avci, A. Güzel, A. Kozan, C. Mertoglu, et al. 2013. The effects of α-tocopherol on oxidative damage and serum levels of Clara cell protein 16 in aspiration pneumonitis induced by bile acids. Human and Experimental Toxicology 32: 53–61.CrossRefPubMed Alaçam, H., R. Karli, O. Alici, B. Avci, A. Güzel, A. Kozan, C. Mertoglu, et al. 2013. The effects of α-tocopherol on oxidative damage and serum levels of Clara cell protein 16 in aspiration pneumonitis induced by bile acids. Human and Experimental Toxicology 32: 53–61.CrossRefPubMed
20.
Zurück zum Zitat Reynolds, S.D., A. Giangreco, K.U. Hong, K.E. McGrath, L.A. Ortiz, and B.R. Stripp. 2004. Airway injury in lung disease pathophysiology: selective depletion of airway stem and progenitor cell pools potentiates lung inflammation and alveolar dysfunction. American Journal of Physiology—Lung Cellular and Molecular Physiology 287: L1256–L1265. doi:10.1152/ajplung.00203.2004.CrossRefPubMed Reynolds, S.D., A. Giangreco, K.U. Hong, K.E. McGrath, L.A. Ortiz, and B.R. Stripp. 2004. Airway injury in lung disease pathophysiology: selective depletion of airway stem and progenitor cell pools potentiates lung inflammation and alveolar dysfunction. American Journal of Physiology—Lung Cellular and Molecular Physiology 287: L1256–L1265. doi:10.​1152/​ajplung.​00203.​2004.CrossRefPubMed
22.
Zurück zum Zitat Ekerbicer, N., S. Inan, F. Tarakci, T. Barut, T. Gürpınar, and M. Ozbek. 2012. Effects of acute treatment with dexamethasone on hemodynamic and histopathological changes in rats. Biotechnic & Histochemistry 87(6): 385–396. doi:10.3109/10520295.2012.672651.CrossRef Ekerbicer, N., S. Inan, F. Tarakci, T. Barut, T. Gürpınar, and M. Ozbek. 2012. Effects of acute treatment with dexamethasone on hemodynamic and histopathological changes in rats. Biotechnic & Histochemistry 87(6): 385–396. doi:10.​3109/​10520295.​2012.​672651.CrossRef
23.
Zurück zum Zitat Souza, H.C., G. Ballejo, M.C. Salgado, V.J. Da Silva, and H.C. Salgado. 2001. Cardiac sympathetic overactivity and decreased baroreflex sensitivity in L-NAME hypertensive rats. American Journal of Physiology - Heart and Circulatory Physiology 280(2): H844–H850.PubMed Souza, H.C., G. Ballejo, M.C. Salgado, V.J. Da Silva, and H.C. Salgado. 2001. Cardiac sympathetic overactivity and decreased baroreflex sensitivity in L-NAME hypertensive rats. American Journal of Physiology - Heart and Circulatory Physiology 280(2): H844–H850.PubMed
24.
Zurück zum Zitat Takıl, A., T. Umuroglu, F.G. Yılmaz, Z. Etı, B. Yildizeli, and R. Ahiskali. 2003. Histopathologic effects of lipid content of enteral solutions after pulmonary aspiration in Rats. Nutrition 19: 666–669.CrossRefPubMed Takıl, A., T. Umuroglu, F.G. Yılmaz, Z. Etı, B. Yildizeli, and R. Ahiskali. 2003. Histopathologic effects of lipid content of enteral solutions after pulmonary aspiration in Rats. Nutrition 19: 666–669.CrossRefPubMed
26.
Zurück zum Zitat Perl, M., F. Gebhard, U.B. Bruckner, A. Ayala, S. Braumuller, C. Buttner, L. Kinzl, and M.W. Knoferl. 2005. Pulmonary contusion causes impairment of macrophage and lymphocyte immune functions and increases mortality associated with a subsequent septic challenge. Critical Care Medicine 33: 1351–1358. doi:10.1097/01.ccm.0000166352.28018.a9.CrossRefPubMed Perl, M., F. Gebhard, U.B. Bruckner, A. Ayala, S. Braumuller, C. Buttner, L. Kinzl, and M.W. Knoferl. 2005. Pulmonary contusion causes impairment of macrophage and lymphocyte immune functions and increases mortality associated with a subsequent septic challenge. Critical Care Medicine 33: 1351–1358. doi:10.​1097/​01.​ccm.​0000166352.​28018.​a9.CrossRefPubMed
27.
Zurück zum Zitat Singh, P., A. Castillo, and D.S. Majid. 2014. Decrease in IL-10 and increase in TNF-α levels in renal tissues during systemic inhibition of nitric oxide in anesthetized mice. Physiology Reports 2(2), e00228. doi:10.1002/phy2.228.CrossRef Singh, P., A. Castillo, and D.S. Majid. 2014. Decrease in IL-10 and increase in TNF-α levels in renal tissues during systemic inhibition of nitric oxide in anesthetized mice. Physiology Reports 2(2), e00228. doi:10.​1002/​phy2.​228.CrossRef
28.
Zurück zum Zitat Miguel-Carrasco, J.L., A. Mate, M.T. Monserrat, J.L. Arias, O. Aramburu, and C.M. Vazquez. 2008. The role of ınflammatory markers in the cardioprotective effect of L-Carnitine in L-NAME-ınduced hypertension. American Journal of Hypertension 21: 1231–1237. doi:10.1038/ajh.2008.271.CrossRefPubMed Miguel-Carrasco, J.L., A. Mate, M.T. Monserrat, J.L. Arias, O. Aramburu, and C.M. Vazquez. 2008. The role of ınflammatory markers in the cardioprotective effect of L-Carnitine in L-NAME-ınduced hypertension. American Journal of Hypertension 21: 1231–1237. doi:10.​1038/​ajh.​2008.​271.CrossRefPubMed
29.
Zurück zum Zitat Qiu, H.B., D.C. Chen, J.Q. Pan, D.W. Liu, and S. Ma. 1999. Inhibitory effects of nitric oxide and interleukin-10 on production of tumor necrosis factor alpha, interleukin-1 beta, and interleukin-6 in mouse alveolar macrophages. Acta Pharmacologica Sinica 20: 271–275.PubMed Qiu, H.B., D.C. Chen, J.Q. Pan, D.W. Liu, and S. Ma. 1999. Inhibitory effects of nitric oxide and interleukin-10 on production of tumor necrosis factor alpha, interleukin-1 beta, and interleukin-6 in mouse alveolar macrophages. Acta Pharmacologica Sinica 20: 271–275.PubMed
31.
Zurück zum Zitat Helleday, R., B. Segerstedt, B. Forsberg, I. Mudway, G. Nordberg, A. Bernard, and A. Blomberg. 2006. Exploring the time dependence of serum Clara cell protein as a biomarker of pulmonary injury in humans. Chest 130: 672–675. doi:10.1378/chest.130.3.672.CrossRefPubMed Helleday, R., B. Segerstedt, B. Forsberg, I. Mudway, G. Nordberg, A. Bernard, and A. Blomberg. 2006. Exploring the time dependence of serum Clara cell protein as a biomarker of pulmonary injury in humans. Chest 130: 672–675. doi:10.​1378/​chest.​130.​3.​672.CrossRefPubMed
32.
Zurück zum Zitat Broeckaert, F., A. Clippe, B. Knoops, C. Hermans, and A. Bernard. 2000. Clara cell secretory protein (CC16): features as a peripheral lung biomarker. Uteroglobin/Clara Cell Protein Family 923: 68–77. Broeckaert, F., A. Clippe, B. Knoops, C. Hermans, and A. Bernard. 2000. Clara cell secretory protein (CC16): features as a peripheral lung biomarker. Uteroglobin/Clara Cell Protein Family 923: 68–77.
33.
Zurück zum Zitat Kropski, J.A., R.D. Fremont, C.S. Calfee, and L.B. Ware. 2009. Clara cell protein (CC16), a marker of lung epithelial ınjury, ıs decreased in plasma and pulmonary edema fluid from patients with acute lung ınjury. Chest 135(6): 1440–1447.CrossRefPubMedPubMedCentral Kropski, J.A., R.D. Fremont, C.S. Calfee, and L.B. Ware. 2009. Clara cell protein (CC16), a marker of lung epithelial ınjury, ıs decreased in plasma and pulmonary edema fluid from patients with acute lung ınjury. Chest 135(6): 1440–1447.CrossRefPubMedPubMedCentral
34.
Zurück zum Zitat Hagen, G., M. Wolf, S.L. Katyal, G. Singh, M. Beato, and G. Suske. 1990. Tissue-specific expression, hormonal-regulation and 5′-flanking gene region of the rat Clara cell-10kda protein—comparison to rabbit uteroglobin. Nucleic Acids Research 18: 2939–2946. doi:10.1093/nar/18.10.2939.CrossRefPubMedPubMedCentral Hagen, G., M. Wolf, S.L. Katyal, G. Singh, M. Beato, and G. Suske. 1990. Tissue-specific expression, hormonal-regulation and 5′-flanking gene region of the rat Clara cell-10kda protein—comparison to rabbit uteroglobin. Nucleic Acids Research 18: 2939–2946. doi:10.​1093/​nar/​18.​10.​2939.CrossRefPubMedPubMedCentral
35.
Zurück zum Zitat He, C.H., C.G. Lee, C.S. Dela, C.-M.L. Cruz, Z. Yang, F. Ahangari, B. Ma, et al. 2013. Chitinase 3-like 1 regulates cellular and tissue responses via IL-13 receptor α2. Cell Reports 4: 830–841.CrossRefPubMedPubMedCentral He, C.H., C.G. Lee, C.S. Dela, C.-M.L. Cruz, Z. Yang, F. Ahangari, B. Ma, et al. 2013. Chitinase 3-like 1 regulates cellular and tissue responses via IL-13 receptor α2. Cell Reports 4: 830–841.CrossRefPubMedPubMedCentral
36.
Zurück zum Zitat Ling, H., and A.D. Recklies. 2004. The chitinase 3-like protein human cartilage glycoprotein 39 inhibits cellular responses to the inflammatory cytokines interleukin-1 and tumour necrosis factor-alpha. Biochemical Journal 380: 651–659. doi:10.1042/bj20040099.CrossRefPubMedPubMedCentral Ling, H., and A.D. Recklies. 2004. The chitinase 3-like protein human cartilage glycoprotein 39 inhibits cellular responses to the inflammatory cytokines interleukin-1 and tumour necrosis factor-alpha. Biochemical Journal 380: 651–659. doi:10.​1042/​bj20040099.CrossRefPubMedPubMedCentral
37.
Zurück zum Zitat Seitz, D.H., M. Perl, S. Mangold, A. Neddermann, S.T. Braumueller, S. Zhou, M.G. Bachem, M.S. Huber-Lang, and M.W. Knoeferl. 2008. Pulmonary contusion ınduces alveolar type 2 epithelial cell apoptosis: role of alveolar macrophages and neutrophils. Shock 30: 537–544. doi:10.1097/SHK.0b013e31816a394b.CrossRefPubMed Seitz, D.H., M. Perl, S. Mangold, A. Neddermann, S.T. Braumueller, S. Zhou, M.G. Bachem, M.S. Huber-Lang, and M.W. Knoeferl. 2008. Pulmonary contusion ınduces alveolar type 2 epithelial cell apoptosis: role of alveolar macrophages and neutrophils. Shock 30: 537–544. doi:10.​1097/​SHK.​0b013e31816a394b​.CrossRefPubMed
38.
Zurück zum Zitat Sohn, M.H., M.J. Kang, H. Matsuura, V. Bhandari, N.Y. Chen, C.G. Lee, and J.A. Elias. 2010. The chitinase-like proteins breast regression protein-39 and YKL-40 regulate hyperoxia-induced acute lung injury. American Journal of Respiratory and Critical Care Medicine 182: 918–928.CrossRefPubMedPubMedCentral Sohn, M.H., M.J. Kang, H. Matsuura, V. Bhandari, N.Y. Chen, C.G. Lee, and J.A. Elias. 2010. The chitinase-like proteins breast regression protein-39 and YKL-40 regulate hyperoxia-induced acute lung injury. American Journal of Respiratory and Critical Care Medicine 182: 918–928.CrossRefPubMedPubMedCentral
39.
Zurück zum Zitat Lakshminrusimha, S., D. Wiseman, S.M. Black, J.A. Russell, S.F. Gugino, P. Oishi, R.H. Steinhorn, and J.R. Fineman. 2007. The role of nitric oxide synthase-derived reactive oxygen species in the altered relaxation of pulmonary arteries from lambs with increased pulmonary blood flow. American Journal of Physiology—Heart and Circulatory Physiology 293: H1491–H1497. doi:10.1152/ajpheart.00185.2007.CrossRefPubMedPubMedCentral Lakshminrusimha, S., D. Wiseman, S.M. Black, J.A. Russell, S.F. Gugino, P. Oishi, R.H. Steinhorn, and J.R. Fineman. 2007. The role of nitric oxide synthase-derived reactive oxygen species in the altered relaxation of pulmonary arteries from lambs with increased pulmonary blood flow. American Journal of Physiology—Heart and Circulatory Physiology 293: H1491–H1497. doi:10.​1152/​ajpheart.​00185.​2007.CrossRefPubMedPubMedCentral
40.
Zurück zum Zitat Su, C.F., S.J. Kao, and H.I. Chen. 2012. Acute respiratory distress syndrome and lung injury: pathogenetic mechanism and therapeutic implication. World Journal Critical Care Medicine 1: 50–60. doi:10.5492/wjccm.v1.i2.50.CrossRef Su, C.F., S.J. Kao, and H.I. Chen. 2012. Acute respiratory distress syndrome and lung injury: pathogenetic mechanism and therapeutic implication. World Journal Critical Care Medicine 1: 50–60. doi:10.​5492/​wjccm.​v1.​i2.​50.CrossRef
41.
Zurück zum Zitat Hsiao, Chien-Chou, Chien-Hsing Lee, Lon-Yen Tsao, and Hui-Chen Lo. 2012. The dose-dependent immunoregulatory effects of the nitric oxide synthase inhibitor N-G-nitro-L-arginine methyl ester in rats with sub-acute peritonitis. Plos One 7. doi:10.1371/journal.pone.0042467 Hsiao, Chien-Chou, Chien-Hsing Lee, Lon-Yen Tsao, and Hui-Chen Lo. 2012. The dose-dependent immunoregulatory effects of the nitric oxide synthase inhibitor N-G-nitro-L-arginine methyl ester in rats with sub-acute peritonitis. Plos One 7. doi:10.​1371/​journal.​pone.​0042467
45.
Zurück zum Zitat Turut, H., H. Ciralik, M. Kilinc, D. Ozbag, and S.S. Imrek. 2009. Effects of early administration of dexamethasone, N-acetylcysteine and aprotinin on inflammatory and oxidant-antioxidant status after lung contusion in rats. Injury-International Journal of the Care of the Injured 40: 521–527. doi:10.1016/j.injury.2008.05.001.CrossRef Turut, H., H. Ciralik, M. Kilinc, D. Ozbag, and S.S. Imrek. 2009. Effects of early administration of dexamethasone, N-acetylcysteine and aprotinin on inflammatory and oxidant-antioxidant status after lung contusion in rats. Injury-International Journal of the Care of the Injured 40: 521–527. doi:10.​1016/​j.​injury.​2008.​05.​001.CrossRef
46.
Zurück zum Zitat Scrogin, K.E., D.C. Hatton, Y. Chi, and F.C. Luft. 1998. Chronic nitric oxide inhibition with L-NAME: effects on autonomic control of the cardiovascular system. American Journal of Physiology—Regulatory, Integrative and Comparative Physiology 274: R367–R374. Scrogin, K.E., D.C. Hatton, Y. Chi, and F.C. Luft. 1998. Chronic nitric oxide inhibition with L-NAME: effects on autonomic control of the cardiovascular system. American Journal of Physiology—Regulatory, Integrative and Comparative Physiology 274: R367–R374.
Metadaten
Titel
The Effects of Dexamethasone and L-NAME on Acute Lung Injury in Rats with Lung Contusion
verfasst von
Ahmet Kozan
Nermin Kilic
Hasan Alacam
Ahmet Guzel
Tolga Guvenc
Mehmet Acikgoz
Publikationsdatum
29.07.2016
Verlag
Springer US
Erschienen in
Inflammation / Ausgabe 5/2016
Print ISSN: 0360-3997
Elektronische ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-016-0409-0

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