Association between extracellular water, left ventricular mass and hypertension in haemodialysis patients
Riccardo Maria Fagugli1, Paolo Pasini, Giuseppe Quintaliani
1Department of Nephrology-Dialysis, Silvestrini Hospital, Perugia, Italy. rmfag@tin.it
Insights
Fluid overload, measured by extracellular water (ECW) using bioimpedance analysis (BIA), is linked to high blood pressure (BP) and left ventricular hypertrophy (LVH) in hemodialysis (HD) patients. This suggests BIA can help manage these common HD complications.
Area of Science:
- Nephrology
- Cardiology
- Medical Diagnostics
Background:
- Hypertension and left ventricular hypertrophy (LVH) are prevalent in hemodialysis (HD) patients.
- These conditions often persist post-dialysis initiation, necessitating pharmacological intervention.
- Assessing fluid overload, a key hypertension driver, is clinically challenging.
Purpose of the Study:
- To investigate the correlation between extracellular water (ECW) measured by bioimpedance analysis (BIA) and hypertension in HD patients.
- To determine the association between ECW and LVH in patients undergoing HD.
Main Methods:
- Studied 110 thrice-weekly HD patients.
- Assessed hypertension via WHO criteria and 24-hour blood pressure (BP) monitoring.
- Utilized bioimpedance spectroscopy (BIA) for ECW determination and echocardiography for LVH assessment.
Main Results:
- Hypertension affected 74.5% of patients; LVH was present in 61.8%.
- Elevated ECW% was observed in hypertensive patients and those with LVH (P=0.02 and P=0.01, respectively).
- ECW correlated significantly with systolic BP (r=0.35) and left ventricular mass index (LVMi) (r=0.49).
Conclusions:
- Hypertension and LVH are closely interrelated in the HD population.
- Fluid load, quantified by ECW via BIA, shows a significant association with both BP and LVH.
- BIA offers a valuable tool for assessing fluid status and its impact on cardiovascular health in HD patients.
Background:
Hypertension and left ventricular hypertrophy (LVH) are present in the majority of patients undergoing haemodialysis (HD). These two pathologies persist after dialysis onset, and pharmacological therapy is often required for adequate control of blood pressure (BP). Although fluid overload is a determinant of hypertension, clinical assessment of this parameter remains difficult and unsatisfactory. Bioimpedance analysis (BIA) spectroscopy and the relative determination of extracellular water (ECW%) may provide a simple and inexpensive tool for investigating fluid overload. We studied 110 patients on thrice-weekly HD to determine whether ECW body content correlates with hypertension and LVH in this patient population.
Methods:
Hypertension was determined according to the WHO criteria (office BP >/= 140/90 and/or the use of antihypertensive therapy). Twenty-four hour BP monitoring and echocardiography were performed on midweek inter-HD days. Blood chemistries, dialysis dose (spKt/V) and bioimpedance were analysed on midweek HD days.
Results:
Hypertension was present in 74.5% of patients. There were no differences for age, spKt/V, haemoglobin, serum creatinine and residual renal function between normotensive and hypertensive patients. Twenty-four hour systolic BP (SBP), 24 h diastolic BP and 24 h pulse pressure were higher in hypertensive patients, in spite of antihypertensive therapy. LVH was present in 61.8% of patients. BIA revealed that ECW% was increased in LVH+ patients (LVH+ = 47.5 +/- 7.9%, LVH- = 42.4 +/- 6.2%, P = 0.01) and in hypertensive patients compared with normotensives (46.5 +/- 7.7% vs 43 +/- 7.2%, P = 0.02). Dry body weights and inter-HD body weight increases did not differ between hypertensive and normotensive patients nor between patients with or without LVH. ECW was correlated with SBP (r = 0.35, P < 0.01) and with left ventricular mass index (LVMi(g/sqm)) (r = 0.49, P < 0.001). A stepwise multiple linear regression model revealed that LVMi(g/sqm) was significantly correlated with ECW%, SBP and male gender (r = 0.65, P < 0.001).
Conclusions:
LVH and hypertension are present in a majority of HD patients and they are closely correlated with one another. We found associations between fluid load, measured by BIA and expressed as ECW, and BP and LVM.
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