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Prognostic impacts of left ventricular strain in hemodialytic patients with preserved left ventricular systolic
Yi-Tsang Fu1,2, Chih-Hsueh Tseng1,3, Wei-Min Huang1,2,4
1Department of Medicine, Taipei Veterans General Hospital, Taipei, Taiwan.
Insights
Left ventricular global longitudinal strain (LV GLS) predicts mortality and heart failure hospitalizations in hemodialysis patients with preserved ejection fraction. Coronary artery disease is a key factor associated with reduced LV GLS.
Area of Science:
- Cardiology
- Nephrology
- Medical Imaging
Background:
- Left ventricular dysfunction is a significant risk factor for adverse outcomes in hemodialysis patients.
- The prognostic utility of left ventricular global longitudinal strain (LV GLS) in patients with preserved left ventricular ejection fraction (LVEF) requires further investigation.
Purpose of the Study:
- To evaluate the prognostic value of LV GLS in hemodialysis patients with preserved LVEF.
- To identify predictors of reduced LV GLS in this population.
Main Methods:
- Retrospective cohort study of 319 hemodialysis patients with preserved LVEF.
- Annual echocardiographic measurements including LV GLS, LVESV, LVEDV, LVIDs, and LVEF.
- Follow-up for mortality and hospitalization for heart failure (HHF).
Main Results:
- Reduced LV GLS (> -15.9%) was associated with a higher prevalence of coronary artery disease (CAD) and increased LV end-systolic volume (LVESV).
- LV GLS independently predicted adverse clinical events, including mortality and HHF, after adjusting for covariates.
- CAD and LVESV were independent determinants of reduced LV GLS.
Conclusions:
- LV GLS is a valuable prognostic marker for long-term adverse outcomes in hemodialysis patients with preserved LVEF.
- LV GLS offers greater prognostic information than traditional left ventricular functional indices in this cohort.
- Coronary artery disease represents a potential modifiable risk factor for reduced LV GLS in hemodialysis patients.
Abstract:
Left ventricular dysfunction is a known risk factor for morbidity and mortality in hemodialysis patients. The prognostic value of left ventricular global longitudinal strain (LV GLS) among those with preserved left ventricular ejection fraction (LVEF) remains uncertain. Subjects with end-stage renal disease initiated hemodialysis at Taipei Veteran General Hospital between 2015 and 2018 were registered. All participants received annually echocardiographic studies thereafter. Left ventricular end-systolic volume (LVESV), end-diastolic volume (LVEDV) and internal diameter in systole (LVIDs), LVEF, and LV GLS were measured. A LV GLS of > - 15.9% was defined as reduced LV GLS. Clinical outcomes of mortality and hospitalization for heart failure (HHF) were followed. A total of 319 patients with preserved LVEF (66.3 ± 15.1 years, 48.6% men) were recruited in the study. Subjects with reduced LV GLS had more coronary artery disease (CAD), higher LVESV and LVIDs, but were similar in age, gender, co-morbidities, biochemistries and other echocardiographic parameters as the counterpart. Both CAD [(odds ratio (OR) and 95% confidence intervals (CIs): 1.669, 1.023-2.724], and LVESV (OR per-1 mL and 95% CIs: 1.073, 1.004-1.146) were independent determinants of reduced LV GLS. Kaplan-Meier analysis indicated that patients with reduced LV GLS had a significantly lower event-free survival rate compared to those with preserved GLS. The multivariate Cox regression analysis further demonstrated LV GLS as a significant predictor of adverse clinical events (hazard ratio per-1% and 95% CIs: 1.055, 1.002-1.110) after accounting for age, gender, and diabetes. Among the hemodialysis patients with preserved LVEF, LV GLS but not the conventional left ventricular functional indices were associated with long-term mortality and HHF. CAD could be a modifiable risk factor among the subjects with reduced LV GLS.
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