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Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
Mechanism of hypoalbuminemia in rodents
Maria Koltun1, Julijana Nikolovski, Kimberley Strong
1Dept. of Biochemistry and Molecular Biology, Monash University, Wellington Road, Clayton, Victoria 3800, Australia.
Abstract:
Normal albumin loss from the plasma is thought to be minimized by a number of mechanisms, including charge repulsion with the capillary wall and an intracellular rescue pathway involving the major histocompatibility complex-related Fc receptor (FcRn)-mediated mechanism. This study investigates how these factors may influence the mechanism of hypoalbuminemia. Hypoalbuminemia in rats was induced by treatment with puromycin aminonucleoside (PA). To test the effects of PA on capillary wall permeability, plasma elimination rates were determined for tritium-labeled tracers of different-sized Ficolls, negatively charged Ficolls, and (14)C-labeled tracer of albumin in control and PA-treated Sprague-Dawley rats. Urinary excretion and tissue uptake were also measured. Hypoalbuminemia was also examined in two strains of FcRn-deficient mice: beta(2)-microglobulin (beta(2)M) knockout (KO) mice and FcRn alpha-chain KO mice. The excretion rates of albumin and albumin-derived fragments were measured. PA-induced hypoalbuminemia was associated with a 2.5-fold increase in the plasma elimination rate of albumin. This increase could be completely accounted for by the increase in urinary albumin excretion. Changes in the permeability of the capillary wall were not apparent, inasmuch as there was no comparable increase in the plasma elimination rate of 36- to 85-A Ficoll or negatively charged 50- to 80-A Ficoll. In contrast, hypoalbuminemic states in beta(2)M and FcRn KO mice were associated with decreases in excretion of albumin and albumin-derived fragments. This demonstrates that the mechanism of hypoalbuminemia consists of at least two distinct forms: one specifically associated with the renal handling of albumin and the other mediated by systemic processes.
Insights
This study reveals two distinct causes of hypoalbuminemia: kidney albumin excretion and systemic processes involving the Fc receptor (FcRn). Understanding these mechanisms is key for treating low albumin levels.
Area of Science:
- Physiology
- Renal Physiology
- Immunology
Background:
- Normal plasma albumin levels are maintained by capillary wall interactions and Fc receptor (FcRn)-mediated rescue pathways.
- Hypoalbuminemia, or low albumin levels, can arise from disruptions in these protective mechanisms.
- Investigating the specific roles of capillary permeability and FcRn in hypoalbuminemia is crucial.
Purpose of the Study:
- To elucidate the mechanisms underlying hypoalbuminemia.
- To differentiate between renal and systemic contributions to low albumin levels.
- To assess the impact of puromycin aminonucleoside (PA) and FcRn deficiency on albumin homeostasis.
Main Methods:
- Induction of hypoalbuminemia in rats using puromycin aminonucleoside (PA).
- Measurement of plasma elimination rates for albumin and Ficoll tracers of varying sizes and charges.
- Analysis of albumin and albumin fragment excretion in PA-treated rats and FcRn-deficient mice (beta(2)M KO, FcRn alpha-chain KO).
Main Results:
- PA-induced hypoalbuminemia significantly increased albumin elimination, primarily due to enhanced urinary albumin excretion.
- No significant changes in capillary wall permeability were observed, as indicated by stable Ficoll tracer elimination rates.
- FcRn deficiency led to decreased albumin and albumin fragment excretion, suggesting a role in systemic albumin handling.
Conclusions:
- Hypoalbuminemia presents with at least two distinct mechanisms: one related to renal albumin handling and another mediated by systemic FcRn pathways.
- Capillary wall integrity appears less affected in PA-induced hypoalbuminemia than previously thought.
- FcRn plays a critical role in the systemic regulation of albumin levels.
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