New Approaches to Sepsis: Molecular Diagnostics and Biomarkers
暂无分享,去创建一个
Michael Bauer | M. Bauer | C. Hartog | K. Reinhart | N. Riedemann | Konrad Reinhart | Niels C. Riedemann | Christiane S. Hartog
[1] Jianguo Tang,et al. [The value of serum procalcitonin in treatment of community acquired pneumonia in outpatient]. , 2009, Zhonghua nei ke za zhi.
[2] T. Calandra,et al. Macrophage migration inhibitory factor: a regulator of innate immunity , 2003, Nature Reviews Immunology.
[3] F. Brunkhorst,et al. Discrimination of infectious and noninfectious causes of early acute respiratory distress syndrome by procalcitonin. , 1999, Critical care medicine.
[4] Arthur S Slutsky,et al. Multiple system organ failure. Is mechanical ventilation a contributing factor? , 1998, American journal of respiratory and critical care medicine.
[5] Fei Wang,et al. Granulocyte-colony stimulating factor (G-CSF) and granulocyte-macrophage colony stimulating factor (GM-CSF) for sepsis: a meta-analysis , 2011, Critical care.
[6] F. Blasi,et al. Cellular receptor for urokinase plasminogen activator. Carboxyl-terminal processing and membrane anchoring by glycosyl-phosphatidylinositol. , 1991, The Journal of biological chemistry.
[7] G. Castellani,et al. Diagnosis of bloodstream infections in immunocompromised patients by real-time PCR. , 2009, The Journal of infection.
[8] P. Matzinger. The Danger Model: A Renewed Sense of Self , 2002, Science.
[9] G. Putet,et al. Procalcitonin and C‐reactive protein levels in neonatal infections , 1997, Acta paediatrica.
[10] J. Sung,et al. Serum Proteomic Fingerprints of Adult Patients with Severe Acute Respiratory Syndrome , 2006, Clinical chemistry.
[11] H. Schächinger,et al. Calcitonin precursors are reliable markers of sepsis in a medical intensive care unit , 2000, Critical care medicine.
[12] W. Huber,et al. Failure of PCT to indicate severe fungal infection in two immunodeficient patients , 1997, Infection.
[13] M. Christ-Crain,et al. Effect of procalcitonin-guided treatment on antibiotic use and outcome in lower respiratory tract infections: cluster-randomised, single-blinded intervention trial , 2004, The Lancet.
[14] Jianguo Tang,et al. Procalcitonin guidance for reduction of antibiotic use in low‐risk outpatients with community‐acquired pneumonia , 2011, Respirology.
[15] T. Clemmer,et al. Sepsis syndrome: a valid clinical entity , 1989 .
[16] J. Struck,et al. Identification of an Adrenomedullin precursor fragment in plasma of sepsis patients , 2004, Peptides.
[17] P. Schuetz,et al. Serum Procalcitonin for Discrimination of Blood Contamination from Bloodstream Infection due to Coagulase-Negative Staphylococci , 2007, Infection.
[18] S. Kingsmore,et al. Discriminative value of inflammatory biomarkers for suspected sepsis. , 2012, The Journal of emergency medicine.
[19] K. Reinhart,et al. Protein C Concentrations Correlate with Organ Dysfunction and Predict Outcome Independent of the Presence of Sepsis , 2007, Anesthesiology.
[20] D. Keše,et al. Comparison of serologic tests with urinary antigen detection for diagnosis of legionnaires' disease in patients with community-acquired pneumonia. , 1999, Clinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases.
[21] H. Noda,et al. Increased Serum Interleukin-8: Correlation with Poor Prognosis in Patients with Postoperative Multiple Organ Failure , 1998, World Journal of Surgery.
[22] P. Ng,et al. Diagnostic markers for neonatal sepsis , 2006, Current opinion in pediatrics.
[23] J. González-Juanatey,et al. Evaluation of a multiplex real-time PCR assay for detecting pathogens in cardiac valve tissue in patients with endocarditis. , 2010, Revista espanola de cardiologia.
[24] H. Herwald,et al. Evaluation of potential biomarkers for the discrimination of bacterial and viral infections , 2011, Infection.
[25] Kathleen A Stringer,et al. The emerging field of quantitative blood metabolomics for biomarker discovery in critical illnesses. , 2011, American journal of respiratory and critical care medicine.
[26] J. A. Kruse,et al. The influence of early hemodynamic optimization on biomarker patterns of severe sepsis and septic shock* , 2007, Critical care medicine.
[27] J. Pugin,et al. Use of procalcitonin to shorten antibiotic treatment duration in septic patients: a randomized trial. , 2008, American journal of respiratory and critical care medicine.
[28] E. Appella,et al. Cloning and expression of the receptor for human urokinase plasminogen activator, a central molecule in cell surface, plasmin dependent proteolysis. , 1990, The EMBO journal.
[29] Brian H Cuthbertson,et al. Hydrocortisone therapy for patients with septic shock. , 2008, The New England journal of medicine.
[30] W. Schierding,et al. Preliminary Evidence for Leukocyte Transcriptional Signatures for Pediatric Ventilator-Associated Pneumonia , 2012, Journal of intensive care medicine.
[31] M. Berman,et al. Temporal Trends in the Epidemiology of Severe Postoperative Sepsis after Elective Surgery: A Large, Nationwide Sample , 2010, Anesthesiology.
[32] Richard Beale,et al. The Surviving Sepsis Campaign: results of an international guideline-based performance improvement program targeting severe sepsis , 2010, Intensive Care Medicine.
[33] R. Parks,et al. The value of procalcitonin at predicting the severity of acute pancreatitis and development of infected pancreatic necrosis: systematic review. , 2009, Surgery.
[34] D. Angus. Drotrecogin alfa (activated) ... a sad final fizzle to a roller-coaster party , 2012, Critical Care.
[35] Benjamin Tang,et al. Development and validation of a novel molecular biomarker diagnostic test for the early detection of sepsis , 2011, Critical care.
[36] H. Lippert,et al. PCR-based rapid sepsis diagnosis effectively guides clinical treatment in patients with new onset of SIRS , 2012, Langenbeck's Archives of Surgery.
[37] M. Nojomi,et al. Soluble triggering receptor expressed on myeloid cells 1 and the diagnosis of sepsis. , 2010, Journal of critical care.
[38] M. Falagas,et al. Serum procalcitonin as a diagnostic marker for neonatal sepsis: a systematic review and meta-analysis , 2011, Intensive Care Medicine.
[39] S. Nseir,et al. Preliminary clinical study using a multiplex real-time PCR test for the detection of bacterial and fungal DNA directly in blood. , 2010, Clinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases.
[40] F. Massin,et al. Combination biomarkers to diagnose sepsis in the critically ill patient. , 2012, American journal of respiratory and critical care medicine.
[41] K. Voo,et al. Identification and Characterization of the DNA Binding Domain of CpG-binding Protein* , 2001, The Journal of Biological Chemistry.
[42] J. Struck,et al. Pro-adrenomedullin to predict severity and outcome in community-acquired pneumonia [ISRCTN04176397] , 2006, Critical care.
[43] C. Niemeyer,et al. Plasma Levels and Gene Expression of Granulocyte Colony-Stimulating Factor, Tumor Necrosis Factor-α, Interleukin (IL)-1β, IL-6, IL-8, and Soluble Intercellular Adhesion Molecule-1 in Neonatal Early Onset Sepsis , 1998, Pediatric Research.
[44] M. Briel,et al. Procalcitonin-guided antibiotic use vs a standard approach for acute respiratory tract infections in primary care. , 2008, Archives of internal medicine.
[45] D. Bates,et al. Epidemiology of sepsis syndrome in 8 academic medical centers. , 1997, JAMA.
[46] Y. Bulbul,et al. C-Reactive Protein Alone or Combined With Cardiac Troponin T for Risk Stratification of Respiratory Intensive Care Unit Patients , 2011, Respiratory Care.
[47] M. Sodemann,et al. Antibiotic treatment interruption of suspected lower respiratory tract infections based on a single procalcitonin measurement at hospital admission--a randomized trial. , 2009, Clinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases.
[48] D. Perugini,et al. Diagnostic utility of LightCycler SeptiFast and procalcitonin assays in the diagnosis of bloodstream infection in immunocompromised patients. , 2012, Diagnostic microbiology and infectious disease.
[49] S. Resino,et al. A combined score of pro- and anti-inflammatory interleukins improves mortality prediction in severe sepsis. , 2012, Cytokine.
[50] N. Kutukculer,et al. Study of pro-inflammatory (TNF-α, IL-1α, IL-6) and T-cell-derived (IL-2, IL-4) cytokines in plasma and synovial fluid of patients with juvenile chronic arthritis: Correlations with clinical and laboratory parameters , 2005, Clinical Rheumatology.
[51] M. Meisner,et al. Comparison of procalcitonin (PCT) and C-reactive protein (CRP) plasma concentrations at different SOFA scores during the course of sepsis and MODS , 1999, Critical care.
[52] J. Banchereau,et al. Gene expression patterns in blood leukocytes discriminate patients with acute infections. , 2007, Blood.
[53] D. DeMets,et al. Biomarkers and surrogate endpoints: Preferred definitions and conceptual framework , 2001, Clinical pharmacology and therapeutics.
[54] C. Brun-Buisson,et al. EPISEPSIS: a reappraisal of the epidemiology and outcome of severe sepsis in French intensive care units , 2004, Intensive Care Medicine.
[55] H. Wong,et al. Interleukin-8 as a stratification tool for interventional trials involving pediatric septic shock. , 2008, American journal of respiratory and critical care medicine.
[56] M. Bauer,et al. The late phase of sepsis is characterized by an increased microbiological burden and death rate , 2011, Critical care.
[57] W. Kern,et al. An analysis of interleukin-8, interleukin-6 and C-Reactive protein serum concentrations to predict fever, gram-negative bacteremia and complicated infection in neutropenic cancer patients , 1998, Infection.
[58] B. Bein,et al. Procalcitonin (PCT)-guided algorithm reduces length of antibiotic treatment in surgical intensive care patients with severe sepsis: results of a prospective randomized study , 2009, Langenbeck's Archives of Surgery.
[59] J. Vincent,et al. Sepsis biomarkers: a review , 2010, Critical care.
[60] R. Bone,et al. Sir Isaac Newton, sepsis, SIRS, and CARS. , 1996, Critical care medicine.
[61] J. Hurley. Endotoxemia: methods of detection and clinical correlates , 1995, Clinical microbiology reviews.
[62] R. Gagel,et al. Calcitonin Gene Family of Peptides , 2008 .
[63] K. Tschaikowsky,et al. Predictive value of procalcitonin, interleukin-6, and C-reactive protein for survival in postoperative patients with severe sepsis. , 2011, Journal of critical care.
[64] H. Fredlund,et al. Evaluation of a commercial multiplex PCR test (SeptiFast) in the etiological diagnosis of community-onset bloodstream infections , 2011, European Journal of Clinical Microbiology & Infectious Diseases.
[65] T. Clemmer,et al. Sepsis syndrome: a valid clinical entity. Methylprednisolone Severe Sepsis Study Group. , 1989, Critical care medicine.
[66] Mervyn Singer,et al. Biomarkers in sepsis , 2013, Current Opinion in Pulmonary Medicine.
[67] T. Albertson,et al. Multiplex polymerase chain reaction detection enhancement of bacteremia and fungemia* , 2008, Critical care medicine.
[68] N. Medlicott,et al. Utility of Interleukin-12 and Interleukin-10 in Comparison with Other Cytokines and Acute-Phase Reactants in the Diagnosis of Neonatal Sepsis , 2008, American journal of perinatology.
[69] K. Reinhart,et al. The Role of Procalcitonin in Febrile Neutropenic Patients: Review of the Literature , 2008, Infection.
[70] I. Koh,et al. MICROCIRCULATORY EVALUATION IN SEPSIS: A DIFFICULT TASK , 2010, Shock.
[71] D. Gommers,et al. Serum C-reactive protein as a predictor of morbidity and mortality in intensive care unit patients after esophagectomy. , 2011, The Annals of thoracic surgery.
[72] J. Schüttler,et al. Postoperative plasma concentrations of procalcitonin after different types of surgery , 1998, Intensive Care Medicine.
[73] C. Garlanda,et al. The long pentraxin PTX3 as a prototypic humoral pattern recognition receptor: interplay with cellular innate immunity , 2009, Immunological reviews.
[74] J. Biraben,et al. Infectious diseases. Prevention and treatment in the nineteenth and twentieth centuries , 1979, Medical History.
[75] I. Kushner,et al. Acute-phase proteins and other systemic responses to inflammation. , 1999, The New England journal of medicine.
[76] K. Reinhart,et al. Dynamic evolution of coagulopathy in the first day of severe sepsis: Relationship with mortality and organ failure* , 2005, Critical care medicine.
[77] M. Christ-Crain,et al. Antibiotic treatment of exacerbations of COPD: a randomized, controlled trial comparing procalcitonin-guidance with standard therapy. , 2007, Chest.
[78] B. Bein,et al. Procalcitonin to guide duration of antibiotic therapy in intensive care patients: a randomized prospective controlled trial , 2009, Critical care.
[79] P. Sexton,et al. Procalcitonin has bioactivity at calcitonin receptor family complexes: Potential mediator implications in sepsis* , 2008, Critical care medicine.
[80] J Ean,et al. Efficacy and safety of recombinant human activated protein C for severe sepsis. , 2001, The New England journal of medicine.
[81] F. Venet,et al. Monitoring Immune Dysfunctions in the Septic Patient: A New Skin for the Old Ceremony , 2008, Molecular medicine.
[82] A. Pession,et al. Laboratory diagnosis of late-onset sepsis in newborns by multiplex real-time PCR. , 2009, Journal of medical microbiology.
[83] C. Pedersen,et al. Procalcitonin, lipopolysaccharide-binding protein, interleukin-6 and C-reactive protein in community-acquired infections and sepsis: a prospective study , 2006, Critical care.
[84] C. Urban,et al. Procalcitonin—a marker of invasive fungal infection? , 2005, Supportive Care in Cancer.
[85] B. Jacobsen,et al. Cloning of a Mammalian Transcriptional Activator That Binds Unmethylated CpG Motifs and Shares a CXXC Domain with DNA Methyltransferase, Human Trithorax, and Methyl-CpG Binding Domain Protein 1 , 2000, Molecular and Cellular Biology.
[86] A. Bird,et al. Genomic DNA methylation: the mark and its mediators. , 2006, Trends in biochemical sciences.
[87] K. Reinhart,et al. Diagnostic value and prognostic implications of serum procalcitonin after cardiac surgery: a systematic review of the literature , 2006, Critical care.
[88] H. Friess,et al. Persisting elevation of C-reactive protein after pancreatic resections can indicate developing inflammatory complications. , 2008, Surgery.
[89] S. Kingsmore,et al. Multiplex PCR To Diagnose Bloodstream Infections in Patients Admitted from the Emergency Department with Sepsis , 2009, Journal of Clinical Microbiology.
[90] Nathan A. Pugh,et al. Midregional proadrenomedullin as a prognostic tool in community-acquired pneumonia. , 2009, Chest.
[91] T. Welte,et al. Procalcitonin predicts patients at low risk of death from community-acquired pneumonia across all CRB-65 classes , 2008, European Respiratory Journal.
[92] E. Jantunen,et al. High pentraxin 3 level predicts septic shock and bacteremia at the onset of febrile neutropenia after intensive chemotherapy of hematologic patients , 2011, Haematologica.
[93] M. Haubitz,et al. Usefulness of procalcitonin for differentiation between activity of systemic autoimmune disease (systemic lupus erythematosus/systemic antineutrophil cytoplasmic antibody-associated vasculitis) and invasive bacterial infection. , 1997, Arthritis and rheumatism.
[94] Weixiong Zhang,et al. Plasticity of the Systemic Inflammatory Response to Acute Infection during Critical Illness: Development of the Riboleukogram , 2008, PloS one.
[95] C. Perry,et al. Drotrecogin Alfa (Activated) , 2012, Drugs.
[96] Epidemiology of sepsis syndrome in 8 academic medical centers. , 1998, JAMA.
[97] Henrik Zetterberg,et al. Proteomic analysis using protein chips to detect biomarkers in cervical and amniotic fluid in women with intra-amniotic inflammation. , 2005, Journal of proteome research.
[98] D. Schaer,et al. Expression and secretion of procalcitonin and calcitonin gene-related peptide by adherent monocytes and by macrophage-activated adipocytes* , 2004, Critical care medicine.
[99] G. Petrikkos,et al. Could procalcitonin be a predictive biological marker in systemic fungal infections?. Study of 14 cases. , 2002, European journal of internal medicine.
[100] J. Takeda,et al. The role of a real-time PCR technology for rapid detection and identification of bacterial and fungal pathogens in whole-blood samples , 2011, Journal of infection and chemotherapy : official journal of the Japan Society of Chemotherapy.
[101] J. Eugen-Olsen. suPAR – a future risk marker , 2011, Journal of internal medicine.
[102] Jeffrey L. Greenwald,et al. Procalcitonin algorithms for antibiotic therapy decisions: a systematic review of randomized controlled trials and recommendations for clinical algorithms. , 2011, Archives of internal medicine.
[103] K. Tracey,et al. Extracellular role of HMGB1 in inflammation and sepsis , 2004, Journal of internal medicine.
[104] T. van der Poll,et al. Host-pathogen interactions in sepsis. , 2008, The Lancet. Infectious diseases.
[105] T. Clemmer,et al. Early methylprednisolone treatment for septic syndrome and the adult respiratory distress syndrome. , 1987, Chest.
[106] T. Bregenzer,et al. Effect of procalcitonin-based guidelines vs standard guidelines on antibiotic use in lower respiratory tract infections: the ProHOSP randomized controlled trial. , 2009, JAMA.
[107] P. Hansbro,et al. Methods for the isolation and identification of Listeria spp. and Listeria monocytogenes: a review. , 2005, FEMS microbiology reviews.
[108] S. Friend,et al. Cancer BiomarkersAn Invitation to the Table , 2006, Science.
[109] F. Tubach,et al. Use of procalcitonin to reduce patients' exposure to antibiotics in intensive care units (PRORATA trial): a multicentre randomised controlled trial , 2010, The Lancet.
[110] C. Natanson,et al. Bundled care for septic shock: An analysis of clinical trials* , 2010, Critical care medicine.
[111] A. Limaye,et al. Reactivation of Cytomegalovirus Infection in Critically Ill Immunocompetent Patients—Reply , 2008 .
[112] P. Svoboda,et al. Can procalcitonin help us in timing of re-intervention in septic patients after multiple trauma or major surgery? , 2007, Hepato-gastroenterology.
[113] Patrick Nicolas,et al. Procalcitonin as a diagnostic test for sepsis in critically ill adults and after surgery or trauma: A systematic review and meta-analysis , 2006, Critical care medicine.
[114] K. Langa,et al. Long-term cognitive impairment and functional disability among survivors of severe sepsis. , 2010, JAMA.
[115] Steven B. Johnson,et al. Gene Expression Profiles Differentiate Between Sterile SIRS and Early Sepsis , 2007, Annals of surgery.
[116] R. Hotchkiss,et al. Immunosuppression in patients who die of sepsis and multiple organ failure. , 2011, JAMA.
[117] P. Póvoa,et al. Failure to reduce C-reactive protein levels more than 25% in the last 24 hours before intensive care unit discharge predicts higher in-hospital mortality: a cohort study. , 2012, Journal of critical care.
[118] P. Peduzzi,et al. Magnitude and duration of the effect of sepsis on survival. Department of Veterans Affairs Systemic Sepsis Cooperative Studies Group. , 1997, JAMA.
[119] F. Bozza,et al. MACROPHAGE MIGRATION INHIBITORY FACTOR LEVELS CORRELATE WITH FATAL OUTCOME IN SEPSIS , 2004, Shock.
[120] D. Angus. The lingering consequences of sepsis: a hidden public health disaster? , 2010, JAMA.
[121] J. Cavaillon,et al. Compensatory anti-inflammatory response syndrome , 2008, Thrombosis and Haemostasis.
[122] P. Póvoa,et al. Should C-reactive protein concentration at ICU discharge be used as a prognostic marker? , 2010, BMC anesthesiology.
[123] R. Bone,et al. Gram-positive organisms and sepsis. , 1994, Archives of internal medicine.
[124] Peter A. Ward,et al. Novel strategies for the treatment of sepsis , 2003, Nature Medicine.
[125] J. Lister. ON A NEW METHOD OF TREATING COMPOUND FRACTURE, ABSCESS, ETC. , 1867 .
[126] C. Clec’h,et al. Differential diagnostic value of procalcitonin in surgical and medical patients with septic shock , 2006, Critical care medicine.
[127] Garrett E. Schramm,et al. Predictors of 30-day mortality and hospital costs in patients with ventilator-associated pneumonia attributed to potentially antibiotic-resistant gram-negative bacteria. , 2008, Chest.
[128] Minying Chen,et al. Diagnostic Value of Soluble Triggering Receptor Expressed on Myeloid Cells-1 in Critically-Ill, Postoperative Patients With Suspected Sepsis , 2013, The American journal of the medical sciences.
[129] Rolf Rossaint,et al. Epidemiology of sepsis in Germany: results from a national prospective multicenter study , 2007, Intensive Care Medicine.
[130] B. Labar,et al. LightCycler SeptiFast assay as a tool for the rapid diagnosis of sepsis in patients during antimicrobial therapy. , 2008, Journal of medical microbiology.
[131] K. Tschaikowsky,et al. Lipopolysaccharide-Binding Protein for Monitoring of Postoperative Sepsis: Complemental to C-Reactive Protein or Redundant? , 2011, PloS one.
[132] H. Wong. Genetics and genomics in pediatric septic shock , 2012, Critical care medicine.
[133] K. Larsen,et al. Use of plasma C-reactive protein, procalcitonin, neutrophils, macrophage migration inhibitory factor, soluble urokinase-type plasminogen activator receptor, and soluble triggering receptor expressed on myeloid cells-1 in combination to diagnose infections: a prospective study , 2007, Critical care.
[134] W. Fraser,et al. The serum interleukin 6 response to elective surgery. , 1989, Lymphokine research.
[135] Shubhada Sankararaman,et al. Cells, tissues and disease: Principles of general pathology , 1997 .
[136] P. L. Petersen,et al. Procalcitonin-guided interventions against infections to increase early appropriate antibiotics and improve survival in the intensive care unit: A randomized trial* , 2011, Critical care medicine.
[137] P. Savelkoul,et al. New developments in the diagnosis of bloodstream infections. , 2004, The Lancet. Infectious diseases.
[138] J. White,et al. Clinical review 167: Procalcitonin and the calcitonin gene family of peptides in inflammation, infection, and sepsis: a journey from calcitonin back to its precursors. , 2004, The Journal of clinical endocrinology and metabolism.
[139] A. Armaganidis,et al. Procalcitonin-guided algorithms of antibiotic therapy in the intensive care unit: A systematic review and meta-analysis of randomized controlled trials , 2010, Critical care medicine.
[140] S. Akira,et al. Human TLR9 confers responsiveness to bacterial DNA via species-specific CpG motif recognition , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[141] France Gauvin,et al. Serum procalcitonin and C-reactive protein levels as markers of bacterial infection: a systematic review and meta-analysis. , 2004, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[142] T. Calandra,et al. Multiplex Blood PCR in Combination with Blood Cultures for Improvement of Microbiological Documentation of Infection in Febrile Neutropenia , 2010, Journal of Clinical Microbiology.
[143] A. Kumar,et al. Cytomegalovirus Reactivation in Critically Ill Immunocompetent Patients , 2009 .
[144] F. Gutiérrez,et al. Diagnostic accuracy of sTREM-1 to identify infection in critically ill patients with systemic inflammatory response syndrome. , 2010, Clinical biochemistry.
[145] J. Vincent,et al. Combination of biphasic transmittance waveform with blood procalcitonin levels for diagnosis of sepsis in acutely ill patients , 2008, Critical care medicine.
[146] Alimuddin Zumla,et al. Accurate and rapid identification of bacterial species from positive blood cultures with a DNA-based microarray platform: an observational study , 2010, The Lancet.
[147] R. Hotchkiss,et al. Immunotherapy for sepsis--a new approach against an ancient foe. , 2010, The New England journal of medicine.
[148] R. L. Fulton,et al. Multiple system organ failure. The role of uncontrolled infection. , 1980, Archives of surgery.
[149] M. Svaldi,et al. Procalcitonin‐reduced sensitivity and specificity in heavily leucopenic and immunosuppressed patients , 2001, British journal of haematology.
[150] V. A. Gant,et al. Increased distribution and expression of CD64 on blood polymorphonuclear cells from patients with the systemic inflammatory response syndrome (SIRS) , 2001, Clinical and experimental immunology.
[151] D. Douek,et al. Programmed death-1–induced interleukin-10 production by monocytes impairs CD4+ T cell activation during HIV infection , 2010, Nature Medicine.
[152] K. Timper,et al. Role of calcium in lipopolysaccharide-induced calcitonin gene expression in human adipocytes , 2011, Innate immunity.
[153] F. Brunkhorst,et al. Targeted metabolomics for discrimination of systemic inflammatory disorders in critically ill patients[S] , 2012, Journal of Lipid Research.
[154] W. Knaus,et al. Definitions for sepsis and organ failure and guidelines for the use of innovative therapies in sepsis. The ACCP/SCCM Consensus Conference Committee. American College of Chest Physicians/Society of Critical Care Medicine. 1992. , 2009, Chest.
[155] A. Hoeft,et al. Improved detection of blood stream pathogens by real-time PCR in severe sepsis , 2009, Intensive Care Medicine.
[156] F. Budak,et al. Evaluation of serum C-reactive protein, procalcitonin, tumor necrosis factor alpha, and interleukin-10 levels as diagnostic and prognostic parameters in patients with community-acquired sepsis, severe sepsis, and septic shock , 2006, European Journal of Clinical Microbiology and Infectious Diseases.
[157] H. Litt,et al. Evaluation of the patient with acute chest pain. , 2010, Radiologic clinics of North America.
[158] Munish Goyal,et al. A prospective, multicenter derivation of a biomarker panel to assess risk of organ dysfunction, shock, and death in emergency department patients with suspected sepsis , 2009, Critical care medicine.
[159] M. Leone,et al. Procalcitonin in intensive care units: the PRORATA trial , 2010, The Lancet.
[160] F. Brunkhorst,et al. Kinetics of procalcitonin in iatrogenic sepsis , 1998, Intensive Care Medicine.
[161] Anthony S McLean,et al. Accuracy of procalcitonin for sepsis diagnosis in critically ill patients: systematic review and meta-analysis. , 2007, The Lancet. Infectious diseases.
[162] A. Gómez-Tato,et al. Automated Extraction Improves Multiplex Molecular Detection of Infection in Septic Patients , 2010, PloS one.
[163] Ian W. Dawes,et al. Gene-expression profiling of peripheral blood mononuclear cells in sepsis* , 2009, Critical care medicine.
[164] M. Levy,et al. Improvement in process of care and outcome after a multicenter severe sepsis educational program in Spain. , 2008, JAMA.
[165] John G. Bartlett,et al. Guidelines for evaluation of new fever in critically ill adult patients: 2008 update from the American College of Critical Care Medicine and the Infectious Diseases Society of America , 2008, Critical care medicine.
[166] W. Junger,et al. Circulating Mitochondrial DAMPs Cause Inflammatory Responses to Injury , 2009, Nature.
[167] M. Levy,et al. An international survey: Public awareness and perception of sepsis* , 2009, Critical care medicine.
[168] H. Lippert,et al. Mikrobiologisches Sepsis-Screening chirurgischer Intensivpatienten mit dem „Lightcycler“ Septifast®-Test – eine Pilotstudie , 2009, Zentralblatt fur Chirurgie.
[169] E. Ivers,et al. Early Goal-Directed Therapy in the Treatment of Severe Sepsis and Septic Shock , 2001 .
[170] D. Pittet,et al. Diagnostic value of procalcitonin, interleukin-6, and interleukin-8 in critically ill patients admitted with suspected sepsis. , 2001, American journal of respiratory and critical care medicine.
[171] Panagiota Anyfanti,et al. Immunomodulatory therapy for sepsis: an update , 2011, Expert review of anti-infective therapy.
[172] V. Gant,et al. Multiplex real-time PCR and blood culture for identification of bloodstream pathogens in patients with suspected sepsis. , 2009, Clinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases.
[173] Raquel Almansa,et al. Pro- and anti-inflammatory responses are regulated simultaneously from the first moments of septic shock. , 2011, European cytokine network.
[174] H. Volk,et al. Impaired antigen presentation by human monocytes during endotoxin tolerance. , 2000, Blood.
[175] M. Meisner,et al. Biomarkers in the critically ill patient: procalcitonin. , 2011, Critical care clinics.
[176] Jiyong Jing,et al. Diagnostic value of the soluble triggering receptor expressed on myeloid cells-1 in bacterial infection: a meta-analysis , 2009, Intensive Care Medicine.
[177] J. Vincent,et al. Dear SIRS, I'm sorry to say that I don't like you... , 1997, Critical care medicine.
[178] A. Mantovani,et al. Persisting high levels of plasma pentraxin 3 over the first days after severe sepsis and septic shock onset are associated with mortality , 2010, Intensive Care Medicine.
[179] T. Iba,et al. [Disseminated intravascular coagulation]. , 2003, Nihon rinsho. Japanese journal of clinical medicine.
[180] F. Massin,et al. Surface and soluble triggering receptor expressed on myeloid cells-1: Expression patterns in murine sepsis , 2005, Critical care medicine.
[181] N. Wellinghausen,et al. Superiority of Molecular Techniques for Identification of Gram-Negative, Oxidase-Positive Rods, Including Morphologically Nontypical Pseudomonas aeruginosa, from Patients with Cystic Fibrosis , 2005, Journal of Clinical Microbiology.
[182] L. Arnaud,et al. Cytokine Profiles in Sepsis Have Limited Relevance for Stratifying Patients in the Emergency Department: A Prospective Observational Study , 2011, PloS one.
[183] P. Póvoa,et al. C-reactive protein in critically ill cancer patients with sepsis: influence of neutropenia , 2011, Critical care.
[184] T. Robak,et al. Serum levels of interleukin-6 type cytokines and soluble interleukin-6 receptor in patients with rheumatoid arthritis. , 1998, Mediators of inflammation.
[185] L. Putignani,et al. Multiplex PCR Allows Rapid and Accurate Diagnosis of Bloodstream Infections in Newborns and Children with Suspected Sepsis , 2011, Journal of Clinical Microbiology.
[186] K. Reinhart,et al. Antithrombin Levels, Morbidity, and Mortality in a Surgical Intensive Care Unit , 2007, Anesthesia and analgesia.
[187] T. van der Poll,et al. The influence of corticosteroids on the release of novel biomarkers in human endotoxemia , 2007, Intensive Care Medicine.
[188] Magnitude and duration of the effect of sepsis on survival. Department of Veterans Affairs Systemic Sepsis Cooperative Studies Group. , 1997, JAMA.
[189] Procalcitonin in intensive care units: the PRORATA trial – Authors' reply , 2010, The Lancet.
[190] R. Hotchkiss,et al. The pathophysiology and treatment of sepsis. , 2003, The New England journal of medicine.
[191] M. Assicot,et al. High serum procalcitonin concentrations in patients with sepsis and infection , 1993, The Lancet.
[192] John D. Storey,et al. A network-based analysis of systemic inflammation in humans , 2005, Nature.
[193] Jon C. Aster,et al. Robbins BASIC PATHOLOGY , 2002, Robbins Basic Pathology.
[194] J. Vincent,et al. Randomized, placebo-controlled trial of the anti-tumor necrosis factor antibody fragment afelimomab in hyperinflammatory response during severe sepsis: The RAMSES Study , 2001, Critical care medicine.
[195] S. Kilborn,et al. CD64 Index Provides Simple and Predictive Testing for Detection and Monitoring of Sepsis and Bacterial Infection in Hospital Patients , 2009, Journal of Clinical Microbiology.
[196] M. Wurfel,et al. Lipopolysaccharide (LPS)-binding protein is carried on lipoproteins and acts as a cofactor in the neutralization of LPS , 1994, The Journal of experimental medicine.
[197] P. Reitsma,et al. PTX3 predicts severe disease in febrile patients at the emergency department. , 2010, The Journal of infection.
[198] J Perren Cobb,et al. Injury research in the genomic era , 2004, The Lancet.
[199] J. Marshall,et al. SIRS and MODS: what is their relevance to the science and practice of intensive care? , 2000, Shock.
[200] M. Colonna,et al. TREM-1 amplifies inflammation and is a crucial mediator of septic shock , 2001, Nature.
[201] S. Marsch,et al. Procalcitonin for reduced antibiotic exposure in ventilator-associated pneumonia: a randomised study , 2009, European Respiratory Journal.
[202] Bala Hota,et al. Hospital and societal costs of antimicrobial-resistant infections in a Chicago teaching hospital: implications for antibiotic stewardship. , 2009, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[203] S. Kohno,et al. (1↠3)‐β‐D‐Glucan in culture fluid of fungi activates factor g, a limulus coagulation factor , 1995 .
[204] F. Tacke,et al. Usefulness of suPAR as a biological marker in patients with systemic inflammation or infection: a systematic review , 2012, Intensive Care Medicine.
[205] G. Horsman,et al. Development of a Triplex Real-Time PCR Assay for Detection of Panton-Valentine Leukocidin Toxin Genes in Clinical Isolates of Methicillin-Resistant Staphylococcus aureus , 2005, Journal of Clinical Microbiology.
[206] C. Sprung,et al. Sepsis in European intensive care units: Results of the SOAP study* , 2006, Critical care medicine.
[207] V. Pettilä,et al. Predictive value of antithrombin III and serum C-reactive protein concentration in critically ill patients with suspected sepsis , 2002, Critical care medicine.
[208] A. Shaw. Serum C-reactive protein and neopterin concentrations in patients with viral or bacterial infection. , 1991, Journal of clinical pathology.
[209] K. Kato,et al. Participation of lipopolysaccharide-binding protein in lipopolysaccharide-dependent macrophage activation. , 1992, American journal of respiratory cell and molecular biology.
[210] D. Greenhalgh,et al. Multiplex polymerase chain reaction pathogen detection in patients with suspected septicemia after trauma, emergency, and burn surgery. , 2012, Surgery.
[211] C. Brun-Buisson,et al. Can procalcitonin help identify associated bacterial infection in patients with severe influenza pneumonia? A multicentre study , 2011, Intensive Care Medicine.
[212] D. Raoult,et al. Detection of 400-year-old Yersinia pestis DNA in human dental pulp: an approach to the diagnosis of ancient septicemia. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[213] G. Steinbach,et al. The potential role of procalcitonin and interleukin 8 in the prediction of infected necrosis in acute pancreatitis , 1997, Gut.
[214] D. Cook,et al. Measures, markers, and mediators: Toward a staging system for clinical sepsis. A Report of the Fifth Toronto Sepsis Roundtable, Toronto, Ontario, Canada, October 25–26, 2000 , 2003, Critical care medicine.
[215] C. Lacombe,et al. [Procalcitonin, C-reactive protein and interleukin 6 in bacterial and viral meningitis in children]. , 1998, Presse medicale.
[216] P. Bollaert,et al. Plasma Level of a Triggering Receptor Expressed on Myeloid Cells-1: Its Diagnostic Accuracy in Patients with Suspected Sepsis , 2004, Annals of Internal Medicine.
[217] G. Clermont,et al. Epidemiology of severe sepsis in the United States: Analysis of incidence, outcome, and associated costs of care , 2001, Critical care medicine.
[218] P. Aaby,et al. High mortality risk among individuals assumed to be TB‐negative can be predicted using a simple test , 2009, Tropical medicine & international health : TM & IH.
[219] Y. Shoenfeld,et al. New approaches in the diagnosis of sepsis. , 2001, The Israel Medical Association journal : IMAJ.
[220] A. Hoeft,et al. Plasma levels of macrophage migration inhibitory factor are elevated in patients with severe sepsis , 2001, Intensive Care Medicine.
[221] R. Wenzel,et al. Managing antibiotic resistance. , 2000, The New England journal of medicine.
[222] W. Couet,et al. Microdialysis study of imipenem distribution in muscle and lung extracellular fluids of infected rats , 2006, Critical Care.
[223] K. Reinhart,et al. Lipopolysaccharide binding protein in a surgical intensive care unit: A marker of sepsis?* , 2008, Critical care medicine.
[224] Sfedu Ep,et al. [Acute pulmonary embolism. I]. , 2010, Cardiologia pratica.
[225] S. Ruchholtz,et al. Indicators of the posttraumatic inflammatory response correlate with organ failure in patients with multiple injuries. , 1997, The Journal of trauma.
[226] M. Clementi,et al. Molecular diagnosis of sepsis in neutropenic patients with haematological malignancies. , 2008, Journal of medical microbiology.
[227] Terence C W Poon,et al. Opportunities and limitations of SELDI-TOF-MS in biomedical research: practical advices , 2007, Expert review of proteomics.
[228] J. Kline,et al. Procalcitonin test in the diagnosis of bacteremia: a meta-analysis. , 2007, Annals of emergency medicine.
[229] P. Kenyeres,et al. Sedimentation characteristics of leucocytes can predict bacteraemia in critical care patients , 2006, Journal of Clinical Pathology.
[230] Effect of treatment with low doses of hydrocortisone and fludrocortisone on mortality in patients with septic shock , 2003, Current infectious disease reports.
[231] K. Ho,et al. C-reactive protein concentration as a predictor of in-hospital mortality after ICU discharge: a nested case-control study. , 2007, Critical care and resuscitation : journal of the Australasian Academy of Critical Care Medicine.
[232] B. Davis,et al. Comparison of neutrophil CD64 expression, manual myeloid immaturity counts, and automated hematology analyzer flags as indicators of infection or sepsis. , 2005, Laboratory hematology : official publication of the International Society for Laboratory Hematology.
[233] Y. Hirata,et al. Increased circulating adrenomedullin, a novel vasodilatory peptide, in sepsis. , 1996, The Journal of clinical endocrinology and metabolism.
[234] Carl Nathan,et al. Points of control in inflammation , 2002, Nature.
[235] H. Einsele,et al. A prospective randomized controlled trial comparing PCR-based and empirical treatment with liposomal amphotericin B in patients after allo-SCT , 2009, Bone Marrow Transplantation.
[236] J. Laine,et al. High Plasma Level of Long Pentraxin 3 (PTX3) Is Associated with Fatal Disease in Bacteremic Patients: A Prospective Cohort Study , 2011, PloS one.
[237] M. Levy,et al. Surviving Sepsis Campaign: International guidelines for management of severe sepsis and septic shock: 2008 , 2007, Intensive Care Medicine.
[238] V. Bhandari,et al. Proteomic Profiling of the Amniotic Fluid to Detect Inflammation, Infection, and Neonatal Sepsis , 2007, PLoS medicine.
[239] T. Welte,et al. Will polymerase chain reaction (PCR)-based diagnostics improve outcome in septic patients? A clinical view , 2011, Intensive Care Medicine.
[240] P. Parsons,et al. Plasma interleukin-8 is not an effective risk stratification tool for adults with vasopressor-dependent septic shock* , 2010, Critical care medicine.
[241] M. Bauer,et al. A multicenter trial to compare blood culture with polymerase chain reaction in severe human sepsis , 2010, Intensive Care Medicine.
[242] J. Stulík,et al. A proteomic view of the host–pathogen interaction: The host perspective , 2011, Proteomics.
[243] M. Colonna,et al. Cutting Edge: Inflammatory Responses Can Be Triggered by TREM-1, a Novel Receptor Expressed on Neutrophils and Monocytes1 , 2000, The Journal of Immunology.
[244] E. Ruokonen,et al. HMGB1 as a predictor of organ dysfunction and outcome in patients with severe sepsis , 2008, Intensive Care Medicine.
[245] E. Mannarino,et al. Diagnostic Performance of a Multiple Real-Time PCR Assay in Patients with Suspected Sepsis Hospitalized in an Internal Medicine Ward , 2012, Journal of Clinical Microbiology.
[246] M. Malaguarnera,et al. Elevation of interleukin 6 levels in patients with chronic hepatitis due to hepatitis C virus , 1997, Journal of Gastroenterology.
[247] J. Lister. ON A NEW METHOD OF TREATING COMPOUND FRACTURE, ABSCESS, ETC.: WITH OBSERVATIONS ON THE CONDITIONS OF SUPPURATION , 1927 .
[248] C. Sprung,et al. Surviving Sepsis Campaign: International Guidelines for Management of Severe Sepsis and Septic Shock, 2012 , 2013, Intensive Care Medicine.
[249] J. Boyle,et al. Macrophage activation in atherosclerosis: pathogenesis and pharmacology of plaque rupture. , 2005, Current vascular pharmacology.
[250] M. J. Hall,et al. Inpatient care for septicemia or sepsis: a challenge for patients and hospitals. , 2011, NCHS data brief.
[251] C. van Nieuwkoop,et al. Procalcitonin reflects bacteremia and bacterial load in urosepsis syndrome: a prospective observational study , 2010, Critical care.
[252] M. Christ-Crain,et al. Diagnostic and prognostic accuracy of clinical and laboratory parameters in community-acquired pneumonia , 2007, BMC infectious diseases.
[253] K. Wood,et al. Duration of hypotension before initiation of effective antimicrobial therapy is the critical determinant of survival in human septic shock* , 2006, Critical care medicine.
[254] S. Teramoto,et al. Plasma C-reactive protein levels are associated with mortality in elderly with acute lung injury. , 2012, Journal of critical care.
[255] S. Hunziker,et al. Serum procalcitonin, C‐reactive protein and white blood cell levels following hypothermia after cardiac arrest: a retrospective cohort study , 2010, European journal of clinical investigation.
[256] R. Grounds,et al. C-reactive protein as a predictor of outcome after discharge from the intensive care: a prospective observational study. , 2010, British journal of anaesthesia.
[257] Rita De Rosa,et al. MOLECULAR IDENTIFICATION OF BLOODSTREAM PATHOGENS IN PATIENTS PRESENTING TO THE EMERGENCY DEPARTMENT WITH SUSPECTED SEPSIS , 2010, Shock.
[258] J. Bion,et al. Erratum: Epidemiology and outcome of acute lung injury in European intensive care units: Results from the ALIVE study (Intensive Care Medicine (2003) 30 (51-61)) , 2004 .
[259] Jonathan Cohen. TREM-1 in sepsis , 2001, The Lancet.
[260] T. Baumann,et al. Granulocyte-macrophage colony-stimulating factor to reverse sepsis-associated immunosuppression: a double-blind, randomized, placebo-controlled multicenter trial. , 2009, American journal of respiratory and critical care medicine.
[261] H. M. Soliman,et al. C-reactive protein levels correlate with mortality and organ failure in critically ill patients. , 2003, Chest.
[262] J. Struck,et al. Mid-regional pro-adrenomedullin as a prognostic marker in sepsis: an observational study , 2005, Critical care.
[263] Mirjam Christ-Crain,et al. Procalcitonin levels predict bacteremia in patients with community-acquired pneumonia: a prospective cohort trial. , 2010, Chest.
[264] M. Cannesson,et al. Effect of cardiopulmonary bypass on activated partial thromboplastin time waveform analysis, serum procalcitonin and C-reactive protein concentrations , 2009, Critical care.
[265] J. Takeda,et al. Evaluation of pathogen detection from clinical samples by real-time polymerase chain reaction using a sepsis pathogen DNA detection kit , 2010, Critical care.
[266] T. Blackwell,et al. Meta-Analysis and Systematic Review of Procalcitonin-Guided Therapy in Respiratory Tract Infections , 2011, Antimicrobial Agents and Chemotherapy.
[267] P. Schuetz,et al. Procalcitonin for diagnosis of infection and guide to antibiotic decisions: past, present and future , 2011, BMC medicine.
[268] S. Opal,et al. Relationship between plasma levels of lipopolysaccharide (LPS) and LPS-binding protein in patients with severe sepsis and septic shock. , 1999, The Journal of infectious diseases.
[269] José A Fernández,et al. Prognostic value of protein C concentrations in neutropenic patients at high risk of severe septic complications , 2000, Critical care medicine.
[270] Stephen J. Huang,et al. Genome-wide transcription profiling of human sepsis: a systematic review , 2010, Critical care.
[271] H. Volk,et al. Clinical aspects: from systemic inflammation to 'immunoparalysis'. , 2000, Chemical immunology.
[272] L. Lehmann,et al. Potential clinical utility of polymerase chain reaction in microbiological testing for sepsis , 2009, Critical care medicine.
[273] K. Ho,et al. C-reactive protein concentration as a predictor of in-hospital mortality after ICU discharge: a prospective cohort study , 2008, Intensive Care Medicine.
[274] J. Sung,et al. Host-response biomarkers for diagnosis of late-onset septicemia and necrotizing enterocolitis in preterm infants. , 2010, The Journal of clinical investigation.
[275] C. Coopersmith,et al. The sepsis seesaw: tilting toward immunosuppression , 2009, Nature Medicine.
[276] P. Póvoa,et al. C-reactive protein, an early marker of community-acquired sepsis resolution: a multi-center prospective observational study , 2011, Critical care.
[277] J. R. González-Juanatey,et al. Evaluación de una PCR multiplex en tiempo real para la detección de patógenos en el tejido valvular de pacientes con endocarditis , 2010 .
[278] Steven B. Johnson,et al. Efficacy and safety of the monoclonal anti-tumor necrosis factor antibody F(ab′)2 fragment afelimomab in patients with severe sepsis and elevated interleukin-6 levels* , 2004, Critical care medicine.
[279] J. Vincent,et al. suPAR as a prognostic biomarker in sepsis , 2012, BMC Medicine.
[280] R. Ulevitch,et al. Isolation of a lipopolysaccharide-binding acute phase reactant from rabbit serum , 1986, The Journal of experimental medicine.
[281] T. Fest,et al. The sensitivity of neutrophil CD64 expression as a biomarker of bacterial infection is low in critically ill patients , 2012, Intensive Care Medicine.
[282] K. Asadullah,et al. Monocyte deactivation in septic patients: restoration by IFN-gamma treatment. , 1997, Nature medicine.
[283] John D. Storey,et al. A genomic storm in critically injured humans , 2011, The Journal of experimental medicine.
[284] A. Duits,et al. The diagnostic role of procalcitonin and other biomarkers in discriminating infectious from non-infectious fever. , 2010, The Journal of infection.
[285] M. Béné,et al. Time-course of sTREM (soluble triggering receptor expressed on myeloid cells)-1, procalcitonin, and C-reactive protein plasma concentrations during sepsis , 2005, Critical care medicine.
[286] M. Béné,et al. Soluble triggering receptor expressed on myeloid cells and the diagnosis of pneumonia. , 2004, The New England journal of medicine.
[287] J. Levin,et al. Clottable Protein in Limulus: Its Localization and Kinetics of Its Coagulation by Endotoxin , 1968, Thrombosis and Haemostasis.
[288] D. Schoenfeld,et al. Validation of the Riboleukogram to Detect Ventilator-Associated Pneumonia After Severe Injury , 2009, Annals of surgery.
[289] E. Domann,et al. Culture-Independent Identification of Pathogenic Bacteria and Polymicrobial Infections in the Genitourinary Tract of Renal Transplant Recipients , 2003, Journal of Clinical Microbiology.
[290] W. Schobersberger,et al. In vitro modulation of inducible nitric oxide synthase gene expression and nitric oxide synthesis by procalcitonin , 2001, Critical care medicine.
[291] C. Gogos,et al. Pro- versus anti-inflammatory cytokine profile in patients with severe sepsis: a marker for prognosis and future therapeutic options. , 2000, The Journal of infectious diseases.
[292] G. Weiss,et al. Rapid detection of bloodstream pathogens by real-time PCR in patients with sepsis , 2012, Wiener klinische Wochenschrift.
[293] Yi-Chang Su,et al. A new model for outcome prediction in intra-abdominal sepsis by the linear discriminant function analysis of IL-6 and IL-10 at different heart rates. , 2006, The Journal of surgical research.
[294] Sylvia Siebig,et al. Clinical impact of a commercially available multiplex PCR system for rapid detection of pathogens in patients with presumed sepsis , 2009, BMC infectious diseases.
[295] A. Baue. Multiple, progressive, or sequential systems failure. A syndrome of the 1970s. , 1975, Archives of surgery.
[296] J. Buer,et al. Multiplex PCR for Rapid and Improved Diagnosis of Bloodstream Infections in Liver Transplant Recipients , 2012, Journal of Clinical Microbiology.
[297] Thomas P. Shanley,et al. Genomic expression profiling across the pediatric systemic inflammatory response syndrome, sepsis, and septic shock spectrum* , 2009, Critical care medicine.
[298] M. Bauer,et al. Truncated Human Cytidylate-Phosphate-Deoxyguanylate-Binding Protein for Improved Nucleic Acid Amplification Technique-Based Detection of Bacterial Species in Human Samples , 2009, Journal of Clinical Microbiology.
[299] R. Medzhitov. Origin and physiological roles of inflammation , 2008, Nature.
[300] A. Hoeft,et al. Utility of a Commercially Available Multiplex Real-Time PCR Assay To Detect Bacterial and Fungal Pathogens in Febrile Neutropenia , 2009, Journal of Clinical Microbiology.
[301] Kyung Soo Lim,et al. Role of procalcitonin and C‐reactive protein in differentiation of mixed bacterial infection from 2009 H1N1 viral pneumonia , 2011, Influenza and other respiratory viruses.
[302] T. Welte,et al. Procalcitonin guidance and reduction of antibiotic use in acute respiratory tract infection , 2010, European Respiratory Journal.
[303] Mitchell M. Levy,et al. 2001 SCCM/ESICM/ACCP/ATS/SIS International Sepsis Definitions Conference , 2003, Intensive Care Medicine.
[304] Kevin J. Tracey,et al. Anti-cachectin/TNF monoclonal antibodies prevent septic shock during lethal bacteraemia , 1987, Nature.
[305] R. Roth,et al. Optimization of detection of bacterial endotoxin in plasma with the Limulus test. , 1990, The Journal of laboratory and clinical medicine.
[306] S. Willatts,et al. Assessment of the safety and efficacy of the monoclonal anti-tumor necrosis factor antibody-fragment, MAK 195F, in patients with sepsis and septic shock: a multicenter, randomized, placebo-controlled, dose-ranging study. , 1996, Critical care medicine.
[307] J. Quenot,et al. Serum procalcitonin measurement contribution to the early diagnosis of candidemia in critically ill patients , 2006, Intensive Care Medicine.
[308] Jonathan Cohen,et al. The International Sepsis Forum Consensus Conference on Definitions of Infection in the Intensive Care Unit , 2005, Critical care medicine.
[309] J. Govan,et al. Value of C-reactive protein measurements in exacerbations of chronic obstructive pulmonary disease. , 1998, Respiratory medicine.
[310] Bert Vogelstein,et al. The role of companion diagnostics in the development and use of mutation-targeted cancer therapies , 2006, Nature Biotechnology.
[311] S. Eriksson,et al. Sensitivity of interleukin-6 and C-reactive protein concentrations in the diagnosis of acute appendicitis. , 1995, The European journal of surgery = Acta chirurgica.
[312] D. Cook,et al. Diagnostic and prognostic implications of endotoxemia in critical illness: results of the MEDIC study. , 2004, The Journal of infectious diseases.
[313] Georg Peters,et al. Impact of a Molecular Approach to Improve the Microbiological Diagnosis of Infective Heart Valve Endocarditis , 2005, Circulation.