1.Department of Respiratory Medicine, Jinling Hospital, 305 Zhongshan Road, Nanjing 210002, China
2.Nanjing University Institute of Respiratory Medicine, Nanjing 210002, China
*: yong_song6310@yahoo.com
纸质出版:2018-03
Scan QR Code
Biomarkers for patients with trauma associated acute respiratory distress syndrome[J]. MMR, 2018,5(1):72-78.
Xu et al.: Biomarkers for patients with trauma associated acute respiratory distress syndrome. Mil Med Res, 2017, 4: 25
Biomarkers for patients with trauma associated acute respiratory distress syndrome[J]. MMR, 2018,5(1):72-78. DOI: 10.1186/s40779-017-0134-5.
Xu et al.: Biomarkers for patients with trauma associated acute respiratory distress syndrome. Mil Med Res, 2017, 4: 25 DOI: 10.1186/s40779-017-0134-5.
Trauma is a major factor that contributes to the risk for acute respiratory distress syndrome (ARDS). Biomarkers that predict the risk
diagnosis
treatment response and prognosis of ARDS after trauma have been widely investigated. In addition to their applications in clinical diagnosis and treatment
these biomarkers provide important insights into our understanding of the pathogenesis of ARDS. This review begins with a brief introduction regarding the incidence and pathogenesis of trauma-associated ARDS. Then
we focus on reviewing the clinical trials that have been designed to investigate the value of biomarkers in ARDS after trauma. Biomarkers with a confirmed value in ARDS have been organized on the basis of key pathogenic processes that are central to ARDS and are described in detail. Among these
angiopoietin 2 (Ang-2)
L-selectin
Clara cell protein 16 (CC16)
soluable receptor for advanced glycation end products (sRAGE)
Surfactant protein D (SP-D)
histones
mtDNAs and some biomarker panels had a certain association with the diagnosis and prognosis of trauma-related ARDS. Further investigations are needed regarding the design of trials
the best sampling approaches and the optimal combinations of the biomarker panels.
Ashbaugh DG , Bigelow DB , Petty TL , Levine BE . Acute respiratory distress in adults . Lancet . 1967 ; 2 ( 7511 ): 319 - 23 .
Vincent JL , Zambon M . Why do patients who have acute lung injury/acute respiratory distress syndrome die from multiple organ dysfunction syndrome? Implications for management . Clin Chest Med . 2006 ; 27 ( 4 ): 725 - 31 .
Rubenfeld GD , Caldwell E , Peabody E , Weaver J , Martin DP , Neff M , et al . Incidence and outcomes of acute lung injury . N Engl J Med . 2005 ; 353 ( 16 ): 1685 - 93 .
Recinos G , DuBose JJ , Teixeira PG , Barmparas G , Inaba K , Plurad D , et al . ACS trauma centre designation and outcomes of post-traumatic ARDS: NTDB analysis and implications for trauma quality improvement . Injury . 2009 ; 40 ( 8 ): 856 - 9 .
Calfee CS , Eisner MD , Ware LB , Thompson BT , Parsons PE , Wheeler AP , et al . Trauma-associated lung injury differs clinically and biologically from acute lung injury due to other clinical disorders . Crit Care Med . 2007 ; 35 ( 10 ): 2243 - 50 .
ARDS Definition Task Force , Ranieri VM , Rubenfeld GD , Thompson BT , Ferguson ND , Caldwell E , et al . Acute respiratory distress syndrome: the Berlin Definition . JAMA . 2012 ; 307 ( 23 ): 2526 - 33 .
Dicker RA , Morabito DJ , Pittet JF , Campbell AR , Mackersie RC . Acute respiratory distress syndrome criteria in trauma patients: why the definitions do not work . J Trauma . 2004 ; 57 ( 3 ): 522 - 6 .
Katzenstein , Askin's . Surgical Pathology of Non-Neoplastic Lung Disease . 4th ed . Philadelphia : Saunders Elsevier ; 2006 . p. 17 - 50 .
Guerin C , Bayle F , Leray V , Debord S , Stoian A , Yonis H , et al . Open lung biopsy in nonresolving ARDS frequently identifies diffuse alveolar damage regardless of the severity stage and may have implications for patient management . Intensive Care Med . 2015 ; 41 ( 2 ): 222 - 30 .
Cardinal-Fernández P , Pey C , Kao KC . ARDS: Time to “separate the wheat from the chaff” . J Crit Care . 2016 ; 34 : 31 - 2 .
Butt Y , Kurdowska A , Allen TC . Acute Lung Injury: A Clinical and Molecular Review . Arch Pathol Lab Med . 2016 ; 140 ( 4 ): 345 - 50 .
Walter JM , Wilson J , Ware LB . Biomarkers in acute respiratory distress syndrome: from pathobiology to improving patient care . Expert Rev Respir Med . 2014 ; 8 ( 5 ): 573 - 86 .
Acute Respiratory Distress Syndrome Network , Brower RG , Matthay MA , Morris A , Schoenfeld D , Thompson BT , et al . Ventilation with lower tidal volumes as compared with traditional tidal volumes for acute lung injury and the acute respiratory distress syndrome . N Engl J Med . 2000 ; 342 ( 18 ): 1301 - 8 .
Eisner MD , Parsons P , Matthay MA , Ware L , Greene K , Acute Respiratory Distress Syndrome Network . Plasma surfactant protein levels and clinical outcomes in patients with acute lung injury . Thorax . 2003 ; 58 ( 11 ): 983 - 8 .
Zhang Q , Raoof M , Chen Y , Sumi Y , Sursal T , Junger W , et al . Circulating mitochondrial DAMPs cause inflammatory responses to injury . Nature . 2010 ; 464 ( 7285 ): 104 - 7 .
Eklund L , Saharinen P . Angiopoietin signaling in the vasculature . Exp Cell Res . 2013 ; 319 ( 9 ): 1271 - 80 .
Zinter MS , Spicer A , Orwoll BO , Alkhouli M , Dvorak CC , Calfee CS , et al . Plasma angiopoietin-2 outperforms other markers of endothelial injury in prognosticating pediatric ARDS mortality . Am J Physiol Lung Cell Mol Physiol . 2016 ; 310 ( 3 ): L224 - 31 .
Agrawal A , Matthay MA , Kangelaris KN , Stein J , Chu JC , Imp BM , et al . Plasma angiopoietin-2 predicts the onset of acute lung injury in critically ill patients . Am J Respir Crit Care Med . 2013 ; 187 ( 7 ): 736 - 42 .
Calfee CS , Gallagher D , Abbott J , Thompson BT , Matthay MA , NHLBI ARDS Network . Plasma angiopoietin-2 in clinical acute lung injury: prognostic and pathogenetic significance . Crit Care Med . 2012 ; 40 ( 6 ): 1731 - 7 .
Ganter MT , Cohen MJ , Brohi K , Chesebro BB , Staudenmayer KL , Rahn P , et al . Angiopoietin-2, marker and mediator of endothelial activation with prognostic significance early after trauma? Ann Surg . 2008 ; 247 ( 2 ): 320 - 6 .
Meyer NJ , Li M , Feng R , Bradfield J , Gallop R , Bellamy S , et al . ANGPT2 genetic variant is associated with trauma-associated acute lung injury and altered plasma angiopoietin-2 isoform ratio . Am J Respir Crit Care Med . 2011 ; 183 ( 10 ): 1344 - 53 .
Sakamaki F , Ishizaka A , Handa M , Fujishima S , Urano T , Sayama K , et al . Soluble form of P-selectin in plasma is elevated in acute lung injury . Am J Respir Crit Care Med . 1995 ; 151 ( 6 ): 1821 - 6 .
Donnelly SC , Haslett C , Dransfield I , Robertson CE , Carter DC , Ross JA , et al . Role of selectins in development of adult respiratory distress syndrome . Lancet . 1994 ; 344 ( 8917 ): 215 - 9 .
Stengel D , Bauwens K , Keh D , Gerlach H , Ekkernkamp A , Tauber R , et al . Prognostic value of an early soluble L-selectin (sCD62L) assay for risk assessment in blunt multiple trauma: a metaanalysis . Clin Chem . 2005 ; 51 ( 1 ): 16 - 24 .
Briot R , Frank JA , Uchida T , Lee JW , Calfee CS , Matthay MA . Elevated levels of the receptor for advanced glycation end products, a marker of alveolar epithelial type I cell injury, predict impaired alveolar fluid clearance in isolated perfused human lungs . Chest . 2009 ; 135 ( 2 ): 269 - 75 .
Jabaudon M , Futier E , Roszyk L , Chalus E , Guerin R , Petit A , et al . Soluble form of the receptor for advanced glycation end products is a marker of acute lung injury but not of severe sepsis in critically ill patients . Crit Care Med . 2011 ; 39 ( 3 ): 480 - 8 .
Reilly JP , Bellamy S , Shashaty MG , Gallop R , Meyer NJ , Lanken PN , et al . Heterogeneous phenotypes of acute respiratory distress syndrome after major trauma . Ann Am Thorac Soc . 2014 ; 11 ( 5 ): 728 - 36 .
Negrin LL , Halat G , Prosch H , Hüpfl M , Hajdu S , Heinz T . Soluble Receptor for Advanced Glycation End Products Quantifies Lung Injury in Polytraumatized Patients . Ann Thorac Surg . 2017 ; 103 ( 5 ): 1587 - 93 .
Chroneos ZC , Sever-Chroneos Z , Shepherd VL . Pulmonary surfactant: an immunological perspective . Cell Physiol Biochem . 2010 ; 25 ( 1 ): 13 - 26 .
Cheng IW , Ware LB , Greene KE , Nuckton TJ , Eisner MD , Matthay MA . Prognostic value of surfactant proteins A and D in patients with acute lung injury . Crit Care Med . 2003 ; 31 ( 1 ): 20 - 7 .
Ware LB , Koyama T , Zhao Z , Janz DR , Wickersham N , Bernard GR , et al . Biomarkers of lung epithelial injury and inflammation distinguish severe sepsis patients with acute respiratory distress syndrome . Crit Care . 2013 ; 17 ( 5 ): R253 .
Wutzler S , Lehnert T , Laurer H , Lehnert M , Becker M , Henrich D , et al . Circulating levels of Clara cell protein 16 but not surfactant protein D identify and quantify lung damage in patients with multiple injuries . J Trauma . 2011 ; 71 ( 2 ): E31 - 6 .
Broeckaert F , Clippe A , Knoops B , Hermans C , Bernard A . Clara cell secretory protein (CC16): features as a peripheral lung biomarker . Ann N Y Acad Sci . 2000 ; 923 : 68 - 77 .
Jorens PG , Sibille Y , Goulding NJ , van Overveld FJ , Herman AG , Bossaert L , et al . Potential role of Clara cell protein, an endogenous phospholipase A2 inhibitor, in acute lung injury . Eur Respir J . 1995 ; 8 ( 10 ): 1647 - 53 .
Kropski JA , Fremont RD , Calfee CS , Ware LB . Clara cell protein (CC16), a marker of lung epithelial injury, is decreased in plasma and pulmonary edema fluid from patients with acute lung injury . Chest . 2009 ; 135 ( 6 ): 1440 - 7 .
Wutzler S , Backhaus L , Henrich D , Geiger E , Barker J , Marzi I , et al . Clara cell protein 16: A biomarker for detecting secondary respiratory complications in patients with multiple injuries . J Trauma Acute Care Surg . 2012 ; 73 ( 4 ): 838 - 42 .
Ware LB , Matthay MA , Parsons PE , Thompson BT , Januzzi JL . Eisner MD; National Heart, Lung, and Blood Institute Acute Respiratory Distress Syndrome Clinical Trials Network. Pathogenetic and prognostic significance of altered coagulation and fibrinolysis in acute lung injury/acute respiratory distress syndrome . Crit Care Med . 2007 ; 35 ( 8 ): 1821 - 8 .
McClintock D , Zhuo H , Wickersham N , Matthay MA , Ware LB . Biomarkers of inflammation, coagulation and fibrinolysis predict mortality in acute lung injury . Crit Care . 2008 ; 12 ( 2 ): R41 .
Ward PA , Grailer JJ . Acute lung injury and the role of histones . Transl Respir Med . 2014 ; 2 : 1 .
Zhang Y , Guan L , Yu J , Zhao Z , Mao L , Li S , et al . Pulmonary endothelial activation caused by extracellular histones contributes to neutrophil activation in acute respiratory distress syndrome . Respir Res . 2016 ; 17 ( 1 ): 155 .
Abrams ST , Zhang N , Manson J , Liu T , Dart C , Baluwa F , et al . Circulating histones are mediators of trauma-associated lung injury . Am J Respir Crit Care Med . 2013 ; 187 ( 2 ): 160 - 9 .
Kutcher ME , Xu J , Vilardi RF , Ho C , Esmon CT , Cohen MJ . Extracellular histone release in response to traumatic injury: implications for a compensatory role of activated protein C . J Trauma Acute Care Surg . 2012 ; 73 ( 6 ): 1389 - 94 .
Gan L , Zhong J , Zhang R , Sun T , Li Q , Chen X , et al . The Immediate Intramedullary Nailing Surgery Increased the Mitochondrial DNA Release That Aggravated Systemic Inflammatory Response and Lung Injury Induced by Elderly Hip Fracture . Mediat Inflamm . 2015 ; 2015 : 587378 .
Gu X , Yao Y , Wu G , Lv T , Luo L , Song Y . The plasma mitochondrial DNA is an independent predictor for post-traumatic systemic inflammatory response syndrome . PLoS One . 2013 ; 8 ( 8 ): e72834 .
Yamanouchi S , Kudo D , Yamada M , Miyagawa N , Furukawa H , Kushimoto S . Plasma mitochondrial DNA levels in patients with trauma and severe sepsis: time course and the association with clinical status . J Crit Care . 2013 ; 28 ( 6 ): 1027 - 31 .
Simmons JD , Lee YL , Mulekar S , Kuck JL , Brevard SB , Gonzalez RP , et al . Elevated levels of plasma mitochondrial DNA DAMPs are linked to clinical outcome in severely injured human subjects . Ann Surg . 2013 ; 258 ( 4 ): 591–6. discussion 596–8 .
Fremont RD , Koyama T , Calfee CS , Wu W , Dossett LA , Bossert FR , et al . Acute lung injury in patients with traumatic injuries: utility of a panel of biomarkers for diagnosis and pathogenesis . J Trauma . 2010 ; 68 ( 5 ): 1121 - 7 .
Christie JD , Wurfel MM , Feng R , O'Keefe GE , Bradfield J , Ware LB , et al . Genome wide association identifies PPFIA1 as a candidate gene for acute lung injury risk following major trauma . PLoS One . 2012 ; 7 ( 1 ): e28268 .
Tejera P , Meyer NJ , Chen F , Feng R , Zhao Y , O'Mahony DS , et al . Distinct and replicable genetic risk factors for acute respiratory distress syndrome of pulmonary or extrapulmonary origin . J Med Genet . 2012 ; 49 ( 11 ): 671 - 80 .
Singh S , Grover V , Christie L , Charles P , Kelleher P , Shah PL . A comparative study of bronchoscopic microsample probe versus bronchoalveolar lavage in patients with burns-related inhalational injury, acute lung injury and chronic stable lung disease . Respiration . 2015 ; 89 ( 1 ): 19 - 26 .
Calfee CS , Ware LB , Glidden DV , Eisner MD , Parsons PE , Thompson BT , et al . Use of risk reclassification with multiple biomarkers improves mortality prediction in acute lung injury . Crit Care Med . 2011 ; 39 ( 4 ): 711 - 7 .
Watkins TR , Nathens AB , Cooke CR , Psaty BM , Maier RV , Cuschieri J , et al . Acute respiratory distress syndrome after trauma: development and validation of a predictive model . Crit Care Med . 2012 ; 40 ( 8 ): 2295 - 303 .
0
浏览量
0
Downloads
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621