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Evaluation of New Cardiac Damage Biomarkers in Polytrauma: GDF-15, HFABP and uPAR for Predicting Patient Outcomes
Aileen Ritter1, Lorenz Lötterle1, Jiaoyan Han1
1Department of Trauma-, Hand- and Reconstructive Surgery, University Hospital Frankfurt, Goethe-University, 60596 Frankfurt am Main, Germany.
Insights
New biomarkers like GDF-15 and HFABP show promise for detecting cardiac damage in polytrauma patients, offering better early detection than troponin T. These markers also correlate with patient outcomes.
Area of Science:
- Biochemistry
- Trauma Medicine
- Biomarker Discovery
Background:
- Polytrauma significantly contributes to mortality in younger individuals.
- Cardiac damage in polytrauma patients is associated with poor prognosis.
- Current cardiac biomarkers like troponin T have limitations for early trauma detection.
Purpose of the Study:
- To identify novel biomarkers for early cardiac damage detection in polytrauma.
- To evaluate the diagnostic and prognostic value of specific proteins and microRNAs.
- To compare new biomarkers against troponin T in trauma patients.
Main Methods:
- Plasma samples from polytraumatized patients (ISS ≥ 16) with (n=37) and without (n=32) cardiac damage were analyzed.
- Samples were collected 24 hours post-trauma and compared to healthy volunteers (n=10).
- Assayed proteins included HFABP, GDF-15, uPAR; microRNAs included miR-21, miR-133, and others.
Main Results:
- HFABP, uPAR, and GDF-15 were significantly elevated in polytrauma patients with cardiac damage (p < 0.001).
- Elevated HFABP levels were observed in non-survivors.
- miR-133 (p < 0.01) and miR-21 (p < 0.05) showed increased concentrations in patients with cardiac damage.
Conclusions:
- Tested plasma proteins (HFABP, GDF-15, uPAR) and specific microRNAs (miR-133, miR-21) effectively indicate cardiac damage in polytrauma.
- GDF-15 and HFABP demonstrate a strong correlation with patient outcomes, suggesting prognostic value.
Abstract:
Background: Polytrauma is one of the leading mortality factors in younger patients, and in particular, the presence of cardiac damage correlates with a poor prognosis. Currently, troponin T is the gold standard, although troponin is limited as a biomarker. Therefore, there is a need for new biomarkers of cardiac damage early after trauma. Methods: Polytraumatized patients (ISS ≥ 16) were divided into two groups: those with cardiac damage (troponin T > 50 pg/mL, n = 37) and those without cardiac damage (troponin T < 12 pg/mL, n = 32) on admission to the hospital. Patients' plasma was collected in the emergency room 24 h after trauma, and plasma from healthy volunteers (n = 10) was sampled. The plasma was analyzed for the expression of HFABP, GDF-15 and uPAR proteins, as well as miR-21, miR-29, miR-34, miR-122, miR-125b, miR-133, miR-194, miR-204, and miR-155. Results were correlated with patients' outcomes. Results: HFABP, uPAR, and GDF-15 were increased in polytraumatized patients with cardiac damage (p < 0.001) with a need for catecholamines. HFABP was increased in non-survivors. Analysis of systemic miRNA concentrations showed a significant increase in miR-133 (p < 0.01) and miR-21 (p < 0.05) in patients with cardiac damage. Conclusion: All tested plasma proteins, miR-133, and miR-21 were found to reflect the cardiac damage in polytrauma patients. GDF-15 and HFABP were shown to strongly correlate with patients' outcomes.
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