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Machine Learning Prediction of Stress-Induced D-dimer Reactivity in Male Physicians with and without Burnout
Roland von Känel1, Marie Gronemeyer1, Claudia Zuccarella-Hackl1
1Department of Consultation-Liaison Psychiatry and Psychosomatic Medicine, University Hospital Zurich, University of Zurich, Zurich, Switzerland.
Insights
Acute emotional stress can increase blood clot risk, particularly in male physicians. Early adversity, alcohol use, and stress hormone surges predict this heightened D-dimer response, aiding in identifying those at risk for stress-triggered heart events.
Area of Science:
- Cardiology
- Psychoneuroendocrinology
- Hematology
Background:
- Acute emotional stress is a known trigger for acute coronary syndrome (ACS).
- D-dimer levels reflect fibrin turnover and coagulation activation during stress.
- Predictors of D-dimer stress reactivity, especially in high-risk groups like male physicians with burnout, are not well understood.
Purpose of the Study:
- To identify predictors of D-dimer stress reactivity in male physicians.
- To investigate the influence of demographic, behavioral, psychosocial, and physiological factors on coagulation response to acute stress.
Main Methods:
- Sixty male physicians (with and without burnout) underwent the Trier Social Stress Test.
- D-dimer and other biomarkers were measured at four time points over one hour.
- LASSO regression identified key predictors, followed by linear regression for effect size estimation.
Main Results:
- Key predictors of D-dimer stress reactivity included prestress D-dimer, alcohol consumption, prestress cortisol, stress-induced epinephrine (EPI) surge, and adverse childhood experiences (ACEs).
- Alcohol consumption, EPI surge, and ACEs were associated with heightened D-dimer responses.
- Higher prestress D-dimer was linked to attenuated reactivity, with these factors explaining 50.4% of the variance in D-dimer AUC.
Conclusions:
- Early adversity, alcohol consumption, and sympathoadrenal activation significantly influence stress-induced coagulation activation, as indicated by D-dimer reactivity.
- These identified predictors may help identify individuals at higher risk for stress-triggered ACS.
- Findings suggest potential targets for prevention strategies aimed at mitigating stress-related cardiovascular events.
Abstract:
Acute emotional stress can trigger acute coronary syndrome (ACS), potentially via hypercoagulable states. Circulating D-dimer is an established marker of fibrin turnover and stress-related coagulation activation, yet predictors of D-dimer stress reactivity remain unclear, especially in high-risk groups such as male physicians with burnout. We examined predictors of D-dimer changes during acute stress and recovery in 60 male physicians with and without burnout. Participants underwent the Trier Social Stress Test, with D-dimer and other biomarkers assessed across four time points over 1 hour. The area under the curve (AUC) for D-dimer was calculated to capture overall reactivity. We applied the least absolute shrinkage and selection operator (LASSO) regression to identify relevant predictors among demographic, behavioral, psychosocial, and physiological variables, followed by traditional linear regression to estimate effect sizes. LASSO regression identified five key predictors of D-dimer stress reactivity: Prestress D-dimer, habitual alcohol consumption, prestress cortisol, stress-induced epinephrine (EPI) surge, and adverse childhood experiences (ACEs). In linear regression, all but prestress cortisol remained significant independent predictors, collectively explaining 50.4% of the variance in D-dimer AUC. Specifically, higher alcohol consumption (ΔR 2 = 0.117, p < 0.001), larger EPI surge (ΔR 2 = 0.081, p = 0.003), and more ACEs (ΔR 2 = 0.044, p = 0.026) were associated with heightened D-dimer responses, while higher prestress D-dimer was associated with attenuated reactivity (ΔR 2 = 0.208, p < 0.001). Our findings highlight the role of early adversity, alcohol consumption, and sympathoadrenal activation in stress-induced coagulation activation, as reflected by D-dimer reactivity. If validated, these predictors may help identify individuals at elevated risk for stress-triggered ACS and inform targeted prevention strategies.
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