Effects of pediatric chronic kidney disease and its etiology on tissue sodium concentration: a pilot study

Fabio R Salerno1,2, Alireza Akbari3,4, Sandrine Lemoine3,5

  • 1Department of Medical Biophysics, Schulich School of Medicine and Dentistry, Western University, London, ON, Canada. fabior.salerno@gmail.com.

Insights

Pediatric chronic kidney disease (CKD) shows varied tissue sodium levels. Glomerular disease increased sodium, while tubular disorders reduced it, differing from healthy children.

Area of Science:

  • Medical imaging and diagnostics
  • Nephrology and pediatric kidney health
  • Biomarkers and physiological measurements

Background:

  • Sodium-23 magnetic resonance imaging (23Na MRI) non-invasively measures tissue sodium concentration ([Na+]).
  • Adults with advanced age or chronic kidney disease (CKD) exhibit elevated tissue [Na+].
  • Limited data exists on tissue [Na+] in pediatric CKD patients compared to healthy children.

Purpose of the Study:

  • To investigate if pediatric CKD is associated with altered tissue [Na+] compared to healthy pediatric controls.
  • To explore the relationship between tissue [Na+] and kidney function in pediatric CKD.
  • To compare tissue [Na+] in pediatric CKD patients with healthy children and adults.

Main Methods:

  • A case-control study involving healthy children/adults and pediatric CKD patients.
  • 23Na MRI was used to quantify tissue [Na+] in the whole leg, skin, and soleus muscle.
  • Tissue [Na+] Z-scores were calculated and compared to healthy controls; correlations with kidney function markers were assessed.

Main Results:

  • Healthy adults had higher tissue [Na+] than pediatric groups.
  • No significant overall difference in tissue [Na+] was found between healthy children and pediatric CKD patients.
  • Elevated whole-leg [Na+] Z-scores were observed in glomerular disease and post-transplant patients; reduced Z-scores were seen in tubular disorders. All measures correlated with proteinuria and hypoalbuminemia.

Conclusions:

  • Pediatric CKD impacts tissue [Na+] differently based on etiology: increased in glomerular disease, decreased in tubular disorders.
  • These findings highlight the potential of 23Na MRI as a tool to assess specific manifestations of pediatric CKD.
  • Tissue [Na+] alterations in pediatric CKD are linked to proteinuria and hypoalbuminemia, underscoring the systemic effects of kidney disease.
Abstract

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