Abstract / Summary
Background: Dietary sodium intake is a modifiable determinant of blood pressure, and impaired renal sodium handling is implicated in the pathogenesis of hypertension. Whether dietary sodium intake modulates renal tubular sodium transporter abundance among normotensive adults at risk for hypertension is unknown. Methods: Forty-six normotensive adults with normal kidney function at risk of developing hypertension were prospectively enrolled to complete a very low sodium (LS) diet followed by a high sodium (HS) diet. Urinary extracellular vesicle (uEV) proteins were quantified from a 24-hour urine collection at the end of each diet. We compared normalized uEV protein concentrations between diets and tested whether diet modified uEV protein associations with serum aldosterone, urinary aldosterone, and serum cortisol-cortisone ratio under either diet using Wilcoxon rank sums and linear mixed effects models, respectively. Results: Participants achieved median [IQR] urine sodium 13.2 [7.7-19.9] mEq/24h on the LS diet and 244.0 [197.1-297.0] mEq/24h on the HS diet. LS intake induced greater renin activity, greater plasma and urinary aldosterone, and lower urinary cortisol, when compared to HS intake. In parallel, NCC, ENaC, SGLT2, OXSR1, and Pendrin uEV concentrations were significantly higher during LS intake than HS intake (p<0.05 for all), whereas TRPV5 and AQP2 uEV concentrations were lower during LS intake than HS intake (p<0.001 for both). Conclusions: Controlled dietary sodium modulation induced nephron-segment specific changes in uEV protein abundance. These findings demonstrate the ability of uEVs to serve as a non-invasive tool to probe in vivo renal sodium, water, and electrolyte handling.