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November 1, 1993Journal of Clinical Investigation153 citationsOpen Access

Charge selectivity of the glomerular filtration barrier in healthy and nephrotic humans.

AGA. GuaschWDWilliam M. DeenBMBryan D. Myers

Key Points

  • To evaluate the electrostatic charge selectivity and size selectivity of the glomerular filtration barrier in healthy humans and patients with nephrotic syndrome.
  • Assessed charge selectivity by measuring the sieving coefficient (theta) of radiolabeled dextran sulfate (10–24 Å radius) using gel permeation chromatography in nonproteinuric controls (n = 11) and nephrotic patients (n = 11) with minimal change or membranous nephropathy.
  • Evaluated barrier size selectivity using uncharged dextrans (18–60 Å radius) in separate groups of nonproteinuric controls (n = 19), minimal change nephropathy patients (n = 20), and membranous nephropathy patients (n = 27).
  • The sieving coefficient (theta) for 15 Å dextran sulfate was 0.68 ± 0.03 in nonproteinuric subjects versus 0.95 ± 0.05 in nephrotic patients (P < 0.001).
  • Impaired size selectivity for uncharged dextrans failed to account fully for observed albuminuria in 9 of 20 minimal change patients and 12 of 27 membranous nephropathy patients.

Abstract

We used dextran sulfate (DS) to evaluate barrier charge selectivity in 11 nonproteinuric subjects and in 11 patients with the nephrotic syndrome due to either membranous nephropathy or minimal change nephropathy. The 3H-DS preparation spanned a molecular radius interval of 10-24 A and exhibited size-dependent protein binding in vitro. Urine and ultrafiltrates of plasma were separated by size into narrow fractions using gel permeation chromatography. The sieving coefficient (theta) for ultrafilterable DS of 15A radius averaged 0.68 +/- 0.03 in nonproteinuric vs. 0.95 +/- 0.05 in nephrotic subjects (P < 0.001). Uncharged dextrans of broad size distribution were used to evaluate barrier size-selectivity in separate groups of nonproteinuric subjects (n = 19) and nephrotic patients with either minimal change (n = 20) or membranous nephropathy (n = 27). The value of theta for an uncharged dextran of similarly small radius (approximately 18 A) was significantly larger than that observed for DS in nonproteinuric subjects, but was similar in nephrotic individuals. Further, impaired barrier size-selectivity, as assessed by the sieving profile for uncharged dextrans (18-60 A radius), failed to account fully for the observed level of albuminuria in almost half of the patients with either minimal change (9/20) or membranous nephropathy (12/27). Together these findings suggest that the human glomerular capillary wall normally provides an electrostatic barrier to filtration of negatively charged macromolecules such as albumin, and that impairment of this electrostatic barrier contributes to the magnitude of albuminuria in the nephrotic syndrome.

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Cite This Study

Guasch et al. (1993) studied this question.

synapsesocial.com/papers/69f8effe3508f54ec0a05c52https://doi.org/10.1172/jci116831
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