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Published on: May 31, 2022
Sympathetic nervous system function and dysfunction in chronic hemodialysis patients
Dvora Rubinger1, Rebecca Backenroth, Dan Sapoznikov
1Nephrology and Hypertension Services, Hadassah University, Medical Center, Jerusalem, Israel. rdvora@hadassah.org.il
Insights
Sympathetic nervous system overactivity is common in hemodialysis (HD) patients, contributing to hypertension and cardiovascular issues. Targeting this overactivity may improve outcomes for HD patients.
Area of Science:
- Nephrology
- Cardiovascular Physiology
- Autonomic Neuroscience
Background:
- Adequate sympathetic nervous system (SNS) activation is crucial for blood pressure regulation during hemodialysis (HD).
- Chronic SNS overactivity in HD patients is linked to hypertension and cardiovascular disease.
- Understanding SNS activity is key to managing cardiovascular risks in HD.
Purpose of the Study:
- To review recent findings on SNS activity in hemodialysis patients.
- To explore the role of SNS overactivity in intradialytic complications and long-term cardiovascular health.
- To discuss potential therapeutic strategies targeting SNS overactivity.
Main Methods:
- Review of recent literature on SNS activity in chronic renal disease and HD patients.
- Assessment of SNS activity through direct (muscle sympathetic nerve activity - MSNA) and indirect methods (heart rate variability, blood pressure variability, baroreflex function).
- Analysis of SNS response during HD procedures, intradialytic hypotension/hypertension, and post-renal transplantation.
Main Results:
- SNS overactivity is prevalent in HD patients, often assessed indirectly via decreased heart rate variability (HRV) and impaired baroreflex function.
- HD procedures and ultrafiltration enhance sympathetic activity and baroreflex responses.
- SNS overactivity is implicated in intradialytic hypertensive episodes and refractory hypertension, persisting even after renal transplantation.
Conclusions:
- Decreased HRV and baroreflex function in HD patients are associated with increased mortality and morbidity.
- Persistent sympathetic overactivity, even post-transplant, highlights the need for targeted interventions.
- Therapeutic strategies including optimized HD, pharmacotherapy, and renal sympathetic denervation show promise for improving cardiovascular outcomes.
Abstract:
Adequate sympathetic nervous system activation is essential for the compensatory mechanisms of blood pressure maintenance during the hemodialysis (HD) procedure. Chronic sympathetic nervous system overactivity, however, may lead to the development of hypertension and cardiovascular disease in HD patients. The present review focuses on recent findings on the sympathetic nervous system activity in these patients. Sympathetic overactivity has been demonstrated directly by muscle sympathetic nerve activity recordings (MSNA) in chronic renal disease, but only rarely in HD patients. In the latter, sympathetic activity has mostly been assessed using indirect methodology. Decreased heart rate variability, increased blood pressure variability (BPV), and suppressed baroreflex function are believed to represent chronic sympathetic overactivity in HD patients. The HD procedure and ultrafiltration are associated with enhanced sympathetic activity and baroreflex activation. During most episodes of intradialytic hypotension, the baroreflex is adequately activated; sympathetic withdrawal with bradycardia, however, has been reported during excessive hypovolemia. Sympathetic overactivity is also believed to be a mechanism associated with intradialytic hypertensive episodes and refractory hypertension. While successful renal transplantation is associated with improvement of heart rate variability (HRV), improvement and restoration of baroreflex function, persistent sympathetic overactivity has been documented in transplanted patients using MSNA recordings. Decreased HRV and baroreflex function have been reported to be associated with increased mortality and morbidity in HD patients. The predictive value of sympathetic outflow assessed by MSNA has yet to be determined. Optimization of HD treatment, pharmacological interventions, and renal sympathetic denervation are several approaches targeting sympathetic overactivity to improve cardiovascular morbidity and mortality.
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