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1.
Eur J Clin Invest ; 50(6): e13246, 2020 Jun.
Article in English | MEDLINE | ID: mdl-32307701

ABSTRACT

BACKGROUND: Following the SEPSIS-3 consensus, detection of organ failure as assessed by the SOFA (Sequential Organ Failure Assessment) score, is mandatory to detect sepsis. Calculating SOFA outside of the Intensive Care Unit (ICU) is challenging. The alternative in this scenario, the quick SOFA, is very specific but less sensible. Biomarkers could help to detect the presence of organ failure secondary to infection either in ICU and non-ICU settings. MATERIALS AND METHODS: We evaluated the ability of four biomarkers (C-Reactive protein (CRP), lactate, mid-regional proadrenomedullin (MR-proADM) and procalcitonin (PCT)) to detect each kind of organ failure considered in the SOFA in 213 patients with infection, sepsis or septic shock, by using multivariate regression analysis and calculation of the area under the receiver operating curve (AUROC). RESULTS: In the multivariate analysis, MR-proADM was an independent predictor of five different failures (respiratory, coagulation, cardiovascular, neurological and renal). In turn, lactate predicted three (coagulation, cardiovascular and neurological) and PCT two (cardiovascular and renal). CRP did not predict any of the individual components of SOFA. The highest AUROCs were those of MR-proADM and PCT to detect cardiovascular (AUROC, CI95%): MR-proADM (0.82 [0.76-0.88]), PCT (0.81 [0.75-0.87] (P < .05) and renal failure: MR-proADM (0.87 [0.82-0.92]), PCT (0.81 [0.75-0.86]), (P < .05). None of the biomarkers tested was able to detect hepatic failure. CONCLUSIONS: In patients with infection, MR-proADM was the biomarker detecting the largest number of SOFA score components, with the exception of hepatic failure.


Subject(s)
Adrenomedullin/blood , C-Reactive Protein/metabolism , Infections/blood , Lactic Acid/blood , Peptide Fragments/blood , Procalcitonin/blood , Protein Precursors/blood , Sepsis/blood , Aged , Aged, 80 and over , Area Under Curve , Blood Coagulation Disorders/blood , Blood Coagulation Disorders/diagnosis , Cardiovascular Diseases/blood , Cardiovascular Diseases/diagnosis , Female , Heart Failure/blood , Heart Failure/diagnosis , Humans , Intensive Care Units , Liver Failure/blood , Liver Failure/diagnosis , Male , Middle Aged , Multivariate Analysis , Nervous System Diseases/blood , Nervous System Diseases/diagnosis , Organ Dysfunction Scores , ROC Curve , Renal Insufficiency/blood , Renal Insufficiency/diagnosis , Respiratory Insufficiency/blood , Respiratory Insufficiency/diagnosis , Sepsis/diagnosis , Shock, Septic/blood , Shock, Septic/diagnosis
3.
Sci Rep ; 8(1): 11999, 2018 08 10.
Article in English | MEDLINE | ID: mdl-30097607

ABSTRACT

Early recognition of sepsis is a key factor to improve survival to this disease in surgical patients, since it allows prompt control of the infectious source. Combining pro-inflammatory and immunosupression biomarkers could represent a good strategy to improve sepsis detection. Here we evaluated the combination of procalcitonin (PCT) with gene expression levels of HLA-DRA to detect sepsis in a cohort of 154 surgical patients (101 with sepsis and 53 with no infection). HLA-DRA expression was quantified using droplet digital PCR, a next-generation PCR technology. Area under the receiver operating curve analysis (AUROC) showed that the PCT/HLA-DRA ratio outperformed PCT to detect sepsis (AUROC [CI95%], p): PCT: 0.80 [0.73-0.88], <0.001; PCT/HLA-DRA: 0.85 [0.78-0.91], <0.001. In the multivariate analysis, the ratio showed a superior ability to predict sepsis compared to that of PCT (OR [CI 95%], p): PCT/HLA-DRA: 7.66 [1.82-32.29], 0.006; PCT: 4.21 [1.15-15.43] 0.030. Multivariate analysis was confirmed using a new surgical cohort with 74 sepsis patients and 21 controls: PCT/HLA-DRA: 34.86 [1.22-995.08], 0.038; PCT: 5.52 [0.40-75.78], 0.201. In conclusion, the combination of PCT with HLA-DRA is a promising strategy for improving sepsis detection in surgical patients.

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