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Published on: June 12, 2021
Balancing blood pressure and catecholamine support is critical in heart failure-related cardiogenic shock patients
Benedikt N Beer1,2,3,4, Caroline Kellner1,5, Jonas Sundermeyer1,2
1Department of Cardiology, University Medical Center Hamburg-Eppendorf, Martinistr 52, Hamburg 20246, Germany.
Insights
Optimizing catecholamine dosage in heart failure-associated cardiogenic shock (HF-CS) is crucial. Lowering catecholamine doses, even with reduced mean arterial pressure (MAP) targets, may improve outcomes and reduce mortality.
Area of Science:
- Cardiology
- Intensive Care Medicine
- Pharmacology
Background:
- Heart failure-associated cardiogenic shock (HF-CS) management involves catecholamines titrated to mean arterial pressure (MAP).
- Balancing adequate MAP with minimizing catecholamine adverse effects is a clinical challenge.
Purpose of the Study:
- To assess the optimal balance between catecholamine dose and MAP in patients with HF-CS.
- To identify target ratios for improved outcomes in HF-CS.
Main Methods:
- Retrospective analysis of 704 HF-CS patients from 16 European centers (2016-2021).
- Inotropic scores quantified catecholamine dosage (epinephrine, norepinephrine, dobutamine).
- Logistic regression and Cox regression analyzed associations of dosage and MAP ratios with ICU discharge and 30-day mortality.
Main Results:
- Higher inotropic scores independently predicted lower ICU discharge probability and higher 30-day mortality risk.
- Specific score/MAP ratios (<0.403 µg/kg/min/mmHg for ICU discharge, <0.426 µg/kg/min/mmHg for mortality) were associated with better outcomes.
- Lowering catecholamine doses by accepting reduced MAP targets correlated with improved outcomes.
Conclusions:
- Elevated catecholamine support in HF-CS is linked to adverse outcomes.
- Reducing catecholamine dosage, potentially by accepting lower MAP targets, may enhance patient outcomes.
- Randomized controlled trials are needed to validate these findings.
Aims:
Cardiogenic shock (CS) is often treated with catecholamines titrated to an adequate target mean arterial pressure (MAP) while minimizing adverse effects. We aim to assess the optimal catecholamine dose/MAP balance in heart failure-associated CS (HF-CS).
Methods:
Patients with HF-CS were retrospectively enrolled from 16 tertiary centres in 5 European countries (2016-2021; NCT03313687). Dosage was quantified by inotropic scores (epinephrine, norepinephrine, and dobutamine). Associations of baseline and seven-day summarized dosage with intensive care unit (ICU) discharge (mixed-effects logistic regression) and 30-day mortality (Cox regression) were analysed. Potential catecholamine/MAP target ratios for optimized outcomes were assessed in models adjusted for age, sex, pH, lactate and prior resuscitation, stratified by centre.
Results:
N = 704 patients: median age 63 years, 74% male, 34% post-resuscitation, median lactate 5.2 mmol/l. Of these, 53% were discharged from ICU, 48% died within 30 days. Higher inotropic scores independently predicted a lower probability of ICU discharge (baseline score: OR 0.78 [95%-CI 0.69-0.88]; summarized score: OR 0.46 [0.38-0.56]; both P < .001) and higher risk of 30-day mortality (baseline score: HR 1.27 [1.15-1.40], summarized score HR 1.83 [1.60-2.09]; both P < .001). A score/MAP ratio <0.403 µg/kg/min/mmHg was associated with higher ICU discharge odds (ceiling effect); a < 0.426 µg/kg/min/mmHg with lower 30-day mortality hazards (no ceiling effect). Lowering catecholamine doses by accepting reduced MAP targets was linked to better outcomes.
Conclusion:
In HF-CS, higher catecholamine support independently associates with worse outcomes. Accepting lower blood pressure targets to reduce catecholamine dosage may improve outcomes. Validation in randomized controlled trials is urgently needed.
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