Key result
Low dialysate sodium reduces predialysis MAP but increases intradialytic hypotension ~58% and cramps vs higher sodium.
Why the study?
Cardiovascular disease is the leading cause of death in dialysis patients and is linked to fluid overload and hypertension; low dialysate sodium may reduce total body sodium, fluid overload, and hypertension.
Does low dialysate sodium concentration improve blood pressure and fluid status without increasing adverse events in maintenance haemodialysis patients?
Systematic Review
Does low dialysate sodium concentration improve blood pressure and fluid status without increasing adverse events in maintenance haemodialysis patients?
Relative Risk: 1.58 (95% CI 1.25–2.01)
In maintenance hemodialysis patients, using low dialysate sodium reduces blood pressure but significantly increases the risk of intradialytic hypotension and cramps.
Low dialysate sodium should not be used routinely in hemodialysis due to higher hypotension risk; challenges assumptions of net benefit for blood pressure control.
BACKGROUND: Cardiovascular (CV) disease is the leading cause of death in dialysis patients and is strongly associated with fluid overload and hypertension. It is plausible that low dialysate sodium ion concentration [Na+] may decrease total body sodium content, thereby reducing fluid overload and hypertension and ultimately reducing CV morbidity and death. This is an update of a review first published in 2019. OBJECTIVES: This review evaluated the harms and benefits of using a low (< 138 mM) dialysate [Na+] for maintenance haemodialysis (HD) patients. SEARCH METHODS: We searched the Cochrane Kidney and Transplant Register of Studies up to 1 October 2024 through contact with the Information Specialist using search terms relevant to this review. Studies in the Register are identified through searches of CENTRAL, MEDLINE, and EMBASE, conference proceedings, the International Clinical Trials Registry Platform (ICTRP) Search Portal and ClinicalTrials.gov. SELECTION CRITERIA: Randomised controlled trials (RCTs), both parallel and cross-over, of low (< 138 mM) versus neutral (138 to 140 mM) or high (> 140 mM) dialysate [Na+] for maintenance HD patients were included. DATA COLLECTION AND ANALYSIS: Two authors independently screened studies for inclusion and extracted data. Statistical analyses were performed using the random-effects model, and results expressed as risk ratios (RR) for dichotomous outcomes, and mean differences (MD) or standardised MD (SMD) for continuous outcomes, with 95% confidence intervals (CI). Confidence in the evidence was assessed using Grades of Recommendation, Assessment, Development and Evaluation (GRADE). MAIN RESULTS: , 95% CI -14.48 to -0.83; moderate certainty evidence), predialysis mean arterial pressure (MAP) (5 studies, 232 participants: MD -3.39 mm Hg, 95% CI -5.17 to -1.61; moderate certainty evidence), postdialysis MAP (5 studies, 226 participants: MD -3.17 mm Hg, 95% CI -4.68 to 1.67; moderate certainty evidence), predialysis serum [Na+] (11 studies, 435 participants: MD -1.26 mM, 95% CI -1.81 to -0.72; moderate certainty evidence) and postdialysis serum [Na+] (6 studies, 188 participants: MD -3.09 mM, 95% CI -4.29 to -1.88; moderate certainty evidence). Compared to neutral or high dialysate [Na+], low dialysate [Na+] probably increases intradialytic hypotension events (13 studies, 15,764 HD sessions: RR 1.58, 95% 1.25 to 2.01; moderate certainty evidence) and intradialytic cramps (10 studies, 14,559 HD sessions: RR 1.84, 95% 1.29 to 2.64; moderate certainty evidence). Effect size for important outcomes were generally greater with low dialysate [Na+] compared to high compared with neutral dialysate [Na+], although formal hypothesis testing identifies that the difference was only certain for postdialysis serum [Na+]. Compared to neutral or high dialysate [Na+], it is uncertain whether low dialysate [Na+] affects intradialytic or interdialytic MAP, and dietary salt intake. It is also uncertain whether low dialysate [Na+] changed extracellular fluid status, venous tone, arterial vascular resistance, left ventricular volumes, or fatigue. Studies did not examine CV or all-cause death, CV events, or hospitalisation. AUTHORS' CONCLUSIONS: Low dialysate [Na+] reduces intradialytic weight gain and probably blood pressure, which are effects directionally associated with improved outcomes. However, the intervention probably increases intradialytic hypotension and probably reduces serum [Na+], effects that are associated with an increased risk of death. The effect of the intervention on overall patient health and well-being is unknown. Further evidence is needed in the form of longer-term studies in contemporary settings, evaluating end-organ effects in small-scale mechanistic studies using optimal methods, and clinical outcomes in large-scale multicentre RCTs.
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Marshall et al. (2024) conducted a systematic review in Maintenance haemodialysis. Low dialysate sodium concentration vs. Neutral (138 to 140 mM) or high (> 140 mM) dialysate sodium concentration was evaluated on Intradialytic hypotension events (RR 1.58, 95% CI 1.25 to 2.01). Compared to neutral or high dialysate sodium, low dialysate sodium (<138 mM) reduces predialysis MAP but increases intradialytic hypotension (RR 1.58; 95% CI 1.25-2.01) and cramps.
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