Extracellular superoxide dismutase in pulmonary fibrosis

被引:87
作者
Gao, Fei [1 ]
Kinnula, Vuokko L. [2 ]
Myllarniemi, Marjukka [2 ]
Oury, Tim D. [1 ]
机构
[1] Univ Pittsburgh, Sch Med, Dept Pathol, Pittsburgh, PA 15261 USA
[2] Univ Helsinki, Helsinki, Finland
关键词
D O I
10.1089/ars.2007.1908
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Disruption of the oxidant/antioxidant balance in the lung is thought to be a key step in the development of many airway pathologies. Hence, antioxidant enzymes play key roles in controlling or preventing pulmonary diseases related to oxidative stress. The superoxide dismutases ( SOD) are a family of enzymes that play a pivotal role protecting tissues from damage by oxidant stress by scavenging superoxide anion, which prevents the formation of other more potent oxidants such as peroxynitrite and hydroxyl radical. Extracellular SOD (EC-SOD) is found predominantly in the extracellular matrix of tissues and is ideally situated to prevent cell and tissue damage initiated by extracellularly produced ROS. EC-SOD has been shown to be protective in several models of interstitial lung disease, including pulmonary fibrosis. In addition, alterations in EC-SOD expression are also present in human idiopathic pulmonary fibrosis (IPF). This review discusses EC-SOD regulation in response to pulmonary fibrosis in animals and humans and reviews possible mechanisms by which EC-SOD may protect against fibrosis.
引用
收藏
页码:343 / 354
页数:12
相关论文
共 149 条
[1]  
Adachi T, 1998, BIOL PHARM BULL, V21, P1090
[2]  
ADAMSON IYR, 1974, AM J PATHOL, V77, P185
[3]   Extracellular superoxide dismutase protects lung development in hyperoxia-exposed newborn mice [J].
Ahmed, MN ;
Suliman, HB ;
Folz, RJ ;
Nozik-Grayck, E ;
Golson, ML ;
Mason, SN ;
Auten, RL .
AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2003, 167 (03) :400-405
[4]   Hyperoxia modulates TGF-β/BMP signaling in a mouse model of bronchopulmonary dysplasia [J].
Alejandre-Alcazar, Miguel A. ;
Kwapiszewska, Grazyna ;
Reiss, Irwin ;
Amarie, Oana V. ;
Marsh, Leigh M. ;
Sevilla-Perez, Julia ;
Wygrecka, Malgorzata ;
Eul, Bastian ;
Koebrich, Silke ;
Hesse, Mareike ;
Schermuly, Ralph T. ;
Seeger, Werner ;
Eickelberg, Oliver ;
Morty, Rory E. .
AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, 2007, 292 (02) :L537-L549
[5]  
American Thoracic Society/European Respiratory Society International Multidisciplinary Consensus Classification of the Idiopathic Interstitial Pneumonias, 2002, Am J Respir Crit Care Med, V165, P277, DOI [DOI 10.1164/AJRCCM.165.2.ATS01, 10.1164/ajrccm.165.2.ats01]
[6]   Differential regulation of the fibroblast growth factor (FGF) family by α2-macroglobulin:: evidence for selective modulation of FGF-2-induced angiogenesis [J].
Asplin, IR ;
Wu, SM ;
Mathew, S ;
Bhattacharjee, G ;
Pizzo, SV .
BLOOD, 2001, 97 (11) :3450-3457
[7]   Genotypic variation in the transforming growth factor-β1 gene -: Association with transforming growth factor-pi production, fibrotic lung disease, and graft fibrosis after lung transplantation [J].
Awad, MR ;
El-Gamel, A ;
Hasleton, P ;
Turner, DM ;
Sinnott, PJ ;
Hutchinson, IV .
TRANSPLANTATION, 1998, 66 (08) :1014-1020
[8]   Redox-mediated activation of latent transforming growth factor-beta 1 [J].
BarcellosHoff, MH ;
Dix, TA .
MOLECULAR ENDOCRINOLOGY, 1996, 10 (09) :1077-1083
[9]   Reactive oxygen and nitrogen intermediates increase transforming growth factor-β1 release from human epithelial alveolar cells through two different mechanisms [J].
Bellocq, A ;
Azoulay, E ;
Marullo, S ;
Flahault, A ;
Fouqueray, B ;
Philippe, C ;
Cadranel, J ;
Baud, L .
AMERICAN JOURNAL OF RESPIRATORY CELL AND MOLECULAR BIOLOGY, 1999, 21 (01) :128-136
[10]   Functions of cell surface heparan sulfate proteoglycans [J].
Bernfield, M ;
Götte, M ;
Park, PW ;
Reizes, O ;
Fitzgerald, ML ;
Lincecum, J ;
Zako, M .
ANNUAL REVIEW OF BIOCHEMISTRY, 1999, 68 :729-777