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Published on: July 20, 2022
Renal Function, Atrial Cardiopathy, and Their Joint Association with Mortality in the General Population
Tarek Zaho1, Mai Z Soliman1, Mohamed A Mostafa1
1Epidemiological Cardiology Research Center (EPICARE), Department of Cardiovascular Medicine, Wake Forest School of Medicine, Winston Salem, NC 27157, USA.
Insights
Impaired renal function increases the likelihood of atrial cardiopathy. When these conditions coexist, they synergistically elevate mortality risk more than either condition alone.
Area of Science:
- Cardiology
- Nephrology
- Public Health
Background:
- Atrial cardiopathy and impaired renal function are independent risk factors for mortality.
- The combined impact and interrelationship of these conditions on mortality are not well understood.
Purpose of the Study:
- To investigate the association between impaired renal function and atrial cardiopathy.
- To evaluate the independent and joint effects of impaired renal function and atrial cardiopathy on all-cause mortality.
Main Methods:
- Analysis of 6573 participants from the NHANES-III study with ECG data.
- Atrial cardiopathy defined by ECG markers; impaired renal function defined by eGFR < 45 mL/min/1.73 m².
- Logistic and Cox regression models used to assess associations with atrial cardiopathy and mortality.
Main Results:
- Nearly half of participants (47.9%) had atrial cardiopathy; 4.7% had impaired renal function.
- Impaired renal function was associated with a 44% increased odds of atrial cardiopathy (OR 1.44).
- The combination of both conditions showed the highest mortality risk (HR 1.68), significantly exceeding risks from individual conditions (p=0.011 for interaction).
Conclusions:
- Impaired renal function is linked to a higher prevalence of atrial cardiopathy.
- The coexistence of impaired renal function and atrial cardiopathy results in a synergistic increase in mortality risk.
- Clinical attention to both conditions is warranted due to their combined impact on survival.
Abstract:
Background: Both atrial cardiopathy and impaired renal function are independently associated with increased mortality, but their interrelationship and combined impact remain uncertain. Methods: We analyzed 6573 participants from NHANES-III (mean age 57 years; 50.5% women; 74.6% White) with available electrocardiograms (ECGs). Estimated glomerular filtration rate (eGFR) was calculated using the CKD-EPI equation. Atrial cardiopathy was defined by any of the following ECG markers: abnormal P-wave axis (<0° or >75°), deep terminal negativity in lead V1 (>100 µV), or prolonged P-wave duration in lead II (>120 ms). Participants with eGFR <15 mL/min/1.73 m2 or major ECG abnormalities were excluded. Logistic regression assessed the association between impaired renal function (eGFR < 45 vs. ≥45 mL/min/1.73 m2) and atrial cardiopathy. Cox models evaluated independent and joint associations of impaired renal function and atrial cardiopathy with all-cause mortality. Results: About 47.9% (n = 3151) had atrial cardiopathy at baseline, of whom 161 (4.7%) had impaired renal function. Impaired renal function was associated with higher odds of atrial cardiopathy (OR 1.44; 95% CI 1.16-1.78). Over a median follow-up of 18.1 years, 3076 deaths occurred. Compared with participants without either condition, those with both had the highest mortality risk (HR 1.68; 95% CI 1.46-1.94), exceeding risks from atrial cardiopathy alone (HR 1.10; 95% CI 1.02-1.18) or impaired renal function alone (HR 1.42; 95% CI 1.18-1.70; p = 0.011 for interaction). Conclusions: Impaired renal function is associated with a greater prevalence of atrial cardiopathy. Their coexistence exerts a synergistic effect, substantially amplifying mortality risk beyond either condition alone.
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