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Quantifying Acute Changes in Renal Sympathetic Nerve Activity in Response to Central Nervous System Manipulations in Anesthetized Rats
Published on: September 11, 2018
The association between extracellular fluid volume and sympathetic nervous system activity in patients with chronic
Jinhee Jeong1,2, Kanokwan Bunsawat3,4,5,6, Jeann L Sabino-Carvalho1,2
1Division of Renal Medicine, Department of Medicine, Emory University School of Medicine, Atlanta, Georgia, United States.
Insights
In chronic kidney disease (CKD), extracellular fluid volume (ECFV) and sympathetic nervous system (SNS) activity are elevated. Contrary to expectations, higher ECFV in CKD patients correlates with increased SNS activity, not suppression.
Area of Science:
- Nephrology
- Cardiovascular Medicine
- Physiology
Background:
- Chronic kidney disease (CKD) is linked to hypervolemia and sympathetic nervous system (SNS) overactivity, increasing cardiovascular risk.
- Typically, increased extracellular fluid volume (ECFV) suppresses SNS activity; however, in CKD, both can be elevated.
- This study investigates the relationship between ECFV, SNS activity, and kidney function in CKD patients.
Purpose of the Study:
- To examine the clinical factors determining increased ECFV in CKD.
- To assess the association between ECFV and SNS activity in CKD.
- To determine if kidney function influences the relationship between ECFV and SNS activity.
Main Methods:
- Cross-sectional study of 104 patients with stage II-IV CKD.
- ECFV assessed using multifrequency bioimpedance (extracellular water/total body water ratio).
- Muscle sympathetic nerve activity (MSNA) measured in a subset (N=39).
- Multivariable regression analyses used to evaluate predictors of ECFV, including estimated glomerular filtration rate (eGFR) and MSNA.
Main Results:
- ECFV was inversely associated with eGFR and positively with age, systolic blood pressure, and pulse pressure.
- MSNA was significantly higher in patients with higher ECFV tertiles, even after adjusting for covariates.
- While eGFR predicted ECFV, MSNA did not show an independent association with ECFV in multivariable models.
Conclusions:
- The expected inverse relationship between ECFV and SNS activity is absent in stage II-IV CKD.
- Higher ECFV in CKD patients is associated with increased MSNA.
- Reduced kidney function's sympathoexcitatory effects may outweigh the sympathoinhibitory effects of increased ECFV in CKD.
Abstract:
Chronic kidney disease (CKD) is associated with hypervolemia and sympathetic nervous system (SNS) overactivity that both contribute to heightened cardiovascular risk. Classically, extracellular fluid volume (ECFV) is inversely related to SNS activity, whereby increased ECFV suppresses SNS activation. However, ECFV and SNS activity could be concomitantly elevated if there is failure to suppress SNS activity or if SNS activity plays a contributory role in ECFV expansion. Therefore, we examined the clinical determinants of increased ECFV, the association between ECFV and SNS activity, and whether kidney function accounts for this relationship in CKD. In this cross-sectional study, patients with stage II-IV CKD (62 ± 12 yr, 67% men, 90% with hypertension, n = 104) underwent an assessment of ECFV via extracellular water/total body water ratio, using multifrequency bioimpedance, and a subset had SNS activity via muscle sympathetic nerve activity (MSNA, n = 39). We examined linear associations between ECFV and clinical factors, including MSNA, and group comparisons of MSNA across ECFV tertiles. Multivariable regression analyses were used to assess the relative contribution of kidney function [i.e., estimated glomerular filtration rate (eGFR)] and MSNA to ECFV. ECFV was inversely associated with eGFR and positively associated with age, systolic blood pressure, and pulse pressure (P < 0.05 for all). MSNA was different across ECFV tertiles (P = 0.009), with higher MSNA in tertiles 2 and 3 compared with tertile 1 (41 ± 14 and 35 ± 12 vs. 26 ± 9 bursts/min, P = 0.002 and 0.081, respectively), even after adjusting for eGFR, age, sex, and antihypertensive medications. MSNA (r = -0.376, P = 0.018) was inversely associated with eGFR. In multivariable models, eGFR remained a significant predictor of ECFV (β = -0.341, P = 0.045), whereas MSNA showed no independent association with ECFV (β = 0.124, P = 0.457). An inverse relationship between ECFV and SNS activity is not observed in stage II-IV CKD; rather, MSNA is higher in patients with higher ECFV. These findings suggest that the sympathoexcitatory effects of reduced kidney function may override the sympathoinhibitory effects of increased ECFV in CKD.NEW & NOTEWORTHY Patients with chronic kidney disease (CKD) face high cardiovascular risk from both fluid overload and heightened sympathetic nervous activity. In healthy individuals, fluid expansion suppresses sympathetic tone; however, this inverse relationship was absent in our cohort with CKD stage II-IV. Using direct intraneural recordings and validated volume measures, we found that extracellular fluid and muscle sympathetic nerve activity increased in parallel, highlighting disrupted volume-autonomic interplay and underscoring the need to better understand neurogenic contributions to fluid dysregulation in CKD.
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