Differential gene profiling in acute lung injury identifies injury-specific gene expression

被引:50
作者
dos Santos, Claudia C. [1 ,2 ]
Okutani, Daisuke [1 ]
Hu, Pingzhao [3 ]
Han, Bing [1 ]
Crimi, Ettore [2 ]
He, Xiaolin [1 ]
Keshavjee, Shaf [1 ]
Greenwood, Celia [3 ]
Slutsky, Author S. [2 ]
Zhang, Haibo [2 ]
Liu, Mingyao [1 ]
机构
[1] Univ Hlth Network, Toronto Gen Res Inst, Thorac Surg Res Lab, Toronto, ON, Canada
[2] St Michaels Hosp, Toronto, ON M5B 1W8, Canada
[3] Hosp Sick Children, Toronto, ON M5G 1X8, Canada
基金
加拿大健康研究院;
关键词
transcriptional profiling; acute respiratory distress syndrome; ventilator-induced lung injury; bioinformatics; sepsis; shock;
D O I
10.1097/CCM.0B013E3181659333
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Objectives. Acute lung injury can result from distinct insults, such as sepsis, ischemia-reperfusion, and ventilator-induced lung injury. Physiologic and morphologic manifestations of disparate forms of injury are often indistinguishable. We sought to demonstrate that acute lung injury resulting from distinct insults may lead to different gene expression profiles. Design. Microarray analysis was used to examine early molecular events in lungs from three rat models of acute lung injury: lipopolysaccharide, hemorrhage shock/resuscitation, and high-volume ventilation. Setting: University laboratory. Subjects. Male Sprague-Dawley rats (body weight, 300-350 g). Interventions: Rats were subjected to hemorrhagic shock or lipopolysaccharide followed by resuscitation or were subjected to sham operation. First hit was followed by ventilation with either low (6 mL/kg) or high (112 mL/kg) tidal volume for 4 hrs. Measurements and Main Results: Physiologic and morphologic variables were assessed. Total RNA was hybridized to Affymetrix chips. Bioconductor was used to identify significantly altered genes. Functional enrichment predictions were performed in Gene Ontology Tree Machine. Confirmation studies included real-time polymerase chain reaction, Western blots, and immunohistochemistry. Physiologic and morphologic variables were noncontributory in determining the Cause of acute lung injury. In contrast, molecular analysis revealled unique gene expression patterns that characterized exposure to lipopolysaccharide and high-volume ventilation. We used hypergeometric probability to demonstrate that specific functional enrichment groups were regulated by biochemical vs. biophysical factors. Genes stimulated by lipopolysaccharide were involved in metabolism, defense response, immune cell proliferation, differentiation and migration, and cell death. In contrast, high-volume ventilation led to the regulation of genes involved primarily in organogenesis, morphogenesis, cell cycle, proliferation, and differentiation. Conclusions. These results demonstrate the application of functional genomics to the molecular "fingerprinting" of acute lung injury and the potential for decoupling biophysical from biochemical injury.
引用
收藏
页码:855 / 865
页数:11
相关论文
共 41 条
[1]   Modulation of lipopolysaccharide-induced gene transcription and promotion of lung injury by mechanical ventilation [J].
Altemeier, WA ;
Matute-Bello, G ;
Gharib, SA ;
Glenny, RW ;
Martin, TR ;
Liles, WC .
JOURNAL OF IMMUNOLOGY, 2005, 175 (05) :3369-3376
[2]   Innate immunity and organ transplantation: The potential role of toll-like receptors [J].
Andrade, CF ;
Waddell, TK ;
Keshavjee, S ;
Liu, M .
AMERICAN JOURNAL OF TRANSPLANTATION, 2005, 5 (05) :969-975
[3]   Toll-like receptor and cytokine gene expression in the early phase of human lung transplantation [J].
Andrade, Cristiano Feijo ;
Kaneda, Hiroyuki ;
Der, Sandy ;
Tsang, Melanie ;
Lodyga, Monika ;
dos Santos, Claudia Chimisso ;
Keshavjee, Shaf ;
Liu, Mingyao .
JOURNAL OF HEART AND LUNG TRANSPLANTATION, 2006, 25 (11) :1317-1323
[4]   Sphingosylphosphorylcholine regulates keratin network architecture and visco-elastic properties of human cancer cells [J].
Beil, M ;
Micoulet, A ;
von Wichert, G ;
Paschke, S ;
Walther, P ;
Omary, MB ;
Van Veldhoven, PP ;
Gern, U ;
Wolff-Hieber, E ;
Eggermann, J ;
Waltenberger, J ;
Adler, G ;
Spatz, J ;
Seufferlein, T .
NATURE CELL BIOLOGY, 2003, 5 (09) :803-811
[5]  
Benard GR, 1994, AM J RESP CRIT CARE, V149, P818
[6]   Controlling the false discovery rate in behavior genetics research [J].
Benjamini, Y ;
Drai, D ;
Elmer, G ;
Kafkafi, N ;
Golani, I .
BEHAVIOURAL BRAIN RESEARCH, 2001, 125 (1-2) :279-284
[7]   Ventilation with lower tidal volumes as compared with traditional tidal volumes for acute lung injury and the acute respiratory distress syndrome. [J].
Brower, RG ;
Matthay, MA ;
Morris, A ;
Schoenfeld, D ;
Thompson, BT ;
Wheeler, A ;
Wiedemann, HP ;
Arroliga, AC ;
Fisher, CJ ;
Komara, JJ ;
Perez-Trepichio, P ;
Parsons, PE ;
Wolkin, R ;
Welsh, C ;
Fulkerson, WJ ;
MacIntyre, N ;
Mallatratt, L ;
Sebastian, M ;
McConnell, R ;
Wilcox, C ;
Govert, J ;
Thompson, D ;
Clemmer, T ;
Davis, R ;
Orme, J ;
Weaver, L ;
Grissom, C ;
Eskelson, M ;
Young, M ;
Gooder, V ;
McBride, K ;
Lawton, C ;
d'Hulst, J ;
Peerless, JR ;
Smith, C ;
Brownlee, J ;
Pluss, W ;
Kallet, R ;
Luce, JM ;
Gottlieb, J ;
Elmer, M ;
Girod, A ;
Park, P ;
Daniel, B ;
Gropper, M ;
Abraham, E ;
Piedalue, F ;
Glodowski, J ;
Lockrem, J ;
McIntyre, R .
NEW ENGLAND JOURNAL OF MEDICINE, 2000, 342 (18) :1301-1308
[8]   DNA microarray analysis of gene expression in alveolar epithelial cells in response to TNFα, LPS, and cyclic stretch [J].
dos Santos, CC ;
Han, B ;
Andrade, CF ;
Bai, X ;
Uhlig, S ;
Hubmayr, R ;
Tsang, M ;
Lodyga, M ;
Keshavjee, S ;
Slutsky, AS ;
Liu, M .
PHYSIOLOGICAL GENOMICS, 2004, 19 (03) :331-342
[9]   Global functional profiling of gene expression [J].
Draghici, S ;
Khatri, P ;
Martins, RP ;
Ostermeier, GC ;
Krawetz, SA .
GENOMICS, 2003, 81 (02) :98-104
[10]   Onto-Tools, the toolkit of the modern biologist: Onto-Express, Onto-Compare, Onto-Design and Onto-Translate [J].
Draghici, S ;
Khatri, P ;
Bhavsar, P ;
Shah, A ;
Krawetz, SA ;
Tainsky, MA .
NUCLEIC ACIDS RESEARCH, 2003, 31 (13) :3775-3781