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Published on: November 2, 2020
Association of comorbidity burden with abnormal cardiac mechanics: findings from the HyperGEN study
Senthil Selvaraj1, Frank G Aguilar, Eva E Martinez
1Division of Cardiology, Department of Medicine, Northwestern University Feinberg School of Medicine, Chicago, IL.
Insights
Higher comorbidity burden negatively impacts cardiac mechanics, even with normal heart geometry. This finding may explain poor outcomes in heart failure patients with multiple health conditions.
Area of Science:
- Cardiology
- Cardiovascular Research
- Medical Science
Background:
- Comorbidities are frequent in heart failure (HF) patients and linked to adverse outcomes.
- The specific impact of multiple comorbidities on cardiac mechanics remains understudied.
- Understanding this relationship is crucial for HF pathogenesis and patient management.
Purpose of the Study:
- To investigate the association between the number of comorbidities and cardiac mechanical function.
- To determine if comorbidity burden affects key echocardiographic measures of cardiac performance.
Main Methods:
- Speckle-tracking echocardiography analysis was performed on 2150 participants from the HyperGEN study.
- Global longitudinal, circumferential, and radial strain, along with early diastolic (e') tissue velocities, were measured.
- Linear mixed-effects models were used to assess the relationship between comorbidity count and cardiac mechanics, adjusting for relevant covariates.
Main Results:
- An increased number of comorbidities was significantly associated with impaired global longitudinal strain and e' velocity (P ≤ 0.0001).
- This association persisted even after adjusting for left ventricular (LV) mass index, ejection fraction, and other confounders.
- The findings remained consistent even when excluding participants with abnormal LV geometry.
Conclusions:
- A higher burden of comorbidities is linked to worse cardiac mechanics, including impaired strain and diastolic function.
- These detrimental effects on cardiac function occur independently of normal left ventricular geometry.
- Worsened cardiac mechanics due to multiple comorbidities may contribute to the high incidence and poor prognosis observed in heart failure.
Background:
Comorbidities are common in heart failure (HF), and the number of comorbidities has been associated with poor outcomes in HF patients. However, little is known about the effect of multiple comorbidities on cardiac mechanics, which could impact the pathogenesis of HF. We sought to determine the relationship between comorbidity burden and adverse cardiac mechanics.
Methods And Results:
We performed speckle-tracking analysis on echocardiograms from the HyperGEN study (n=2150). Global longitudinal, circumferential, and radial strain, and early diastolic (e') tissue velocities were measured. We evaluated the association between comorbidity number and cardiac mechanics using linear mixed effects models to account for relatedness among subjects. The mean age was 51 ± 14 years, 58% were female, and 47% were African American. Dyslipidemia and hypertension were the most common comorbidities (61% and 58%, respectively). After adjusting for left ventricular (LV) mass index, ejection fraction, and several potential confounders, the number of comorbidities remained associated with all indices of cardiac mechanics except global circumferential strain (eg, β=-0.32 [95% CI -0.44, -0.20] per 1-unit increase in number of comorbidities for global longitudinal strain; β=-0.16 [95% CI -0.20, -0.11] for e' velocity; P ≤ 0.0001 for both comparisons). Results were similar after excluding participants with abnormal LV geometry (P<0.05 for all comparisons).
Conclusions:
Higher comorbidity burden is associated with worse cardiac mechanics, even in the presence of normal LV geometry. The deleterious effect of multiple comorbidities on cardiac mechanics may explain both the high comorbidity burden and adverse outcomes in patients who ultimately develop HF.
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