Characteristics of Renal Handling of Human Immunoglobulin Light Chain by the Perfused Rat Kidney

Author:

Smith J. F. Falconer1,Van Hegan R. I.2,Esnouf M. P.3,Ross B. D.4

Affiliation:

1. 1Nuffield Department of Clinical Biochemistry and Gibson Laboratories, Radcliffe Infirmary, Oxford, U.K.

2. 2Nuffield Department of Clinical Biochemistry and Gibson Laboratories, Radcliffe Infirmary, Oxford, U.K.

3. 3Nuffield Department of Clinical Biochemistry and Gibson Laboratories, Radcliffe Infirmary, Oxford, U.K.

4. 4Nuffield Department of Clinical Biochemistry and Gibson Laboratories, Radcliffe Infirmary, Oxford, U.K.

Abstract

1. The renal handling of purified human immunoglobulin light chain has been studied with an isolated perfused rat kidney preparation. 2. Human immunoglobulin light chain was freely filtered and largely reabsorbed. Fractional reabsorption was characteristic for each of four light chains and varied between 56% and 86%. No renal tubular maximum for human light chain was obtained. 3. Light chains at concentrations up to 10 times those seen in human myeloma were without effect on glomerular filtration rate or sodium and potassium reabsorption in experiments lasting up to 2h. 4. Filtered and reabsorbed light chain returned ultimately to the perfusion medium, indicating a unique property of the tubular handling of this protein. None of the inhibitors tested (ouabain, frusemide, acetazolamide, probenicid) influenced light chain reabsorption. 5. The results are taken to indicate that light chain reaches the site of the transport enzyme, Na+, K+−dependent ATPase, at concentrations which vary with the nature of the light chain. This may provide a mechanism for renal damage in patients with myeloma, after prolonged exposure.

Publisher

Portland Press Ltd.

Subject

General Medicine

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1. Renal Handling of β-Trace Protein: Interpreting the Evidence;American Journal of Kidney Diseases;2015-06

2. Proximal Tubulopathies Associated With Monoclonal Light Chains: The Spectrum of Clinicopathologic Manifestations and Molecular Pathogenesis;Archives of Pathology & Laboratory Medicine;2014-10-01

3. Multiple Myeloma;Journal of the American Society of Nephrology;2006-08-02

4. The renal and hepatic distribution of Bence Jones proteins depends on glycosylation: a scintigraphic study in rats;Brazilian Journal of Medical and Biological Research;1997-07

5. Renal effects of in utero exposure to mercuric chloride in rats;Archives of Toxicology;1992-08

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