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Kidney disease and plasma cell dyscrasias: ambiguous cases solved by serum free light chain dimerization analysis
by
Ben-Zvi, Ilan
, Livneh, Avi
, Kaplan, Batia
, Kukuy, Olga
, Volkov, Alexander
, Duek, Adrian
, Leiba, Merav
, Golderman, Sizilia
in
Benign
/ Biochemical analysis
/ Biopsy
/ Diagnosis
/ Dimerization
/ Kidney diseases
/ Laboratories
/ Light chains
/ Paraproteinemia
/ Patients
/ Typing
2019
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Kidney disease and plasma cell dyscrasias: ambiguous cases solved by serum free light chain dimerization analysis
by
Ben-Zvi, Ilan
, Livneh, Avi
, Kaplan, Batia
, Kukuy, Olga
, Volkov, Alexander
, Duek, Adrian
, Leiba, Merav
, Golderman, Sizilia
in
Benign
/ Biochemical analysis
/ Biopsy
/ Diagnosis
/ Dimerization
/ Kidney diseases
/ Laboratories
/ Light chains
/ Paraproteinemia
/ Patients
/ Typing
2019
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Kidney disease and plasma cell dyscrasias: ambiguous cases solved by serum free light chain dimerization analysis
by
Ben-Zvi, Ilan
, Livneh, Avi
, Kaplan, Batia
, Kukuy, Olga
, Volkov, Alexander
, Duek, Adrian
, Leiba, Merav
, Golderman, Sizilia
in
Benign
/ Biochemical analysis
/ Biopsy
/ Diagnosis
/ Dimerization
/ Kidney diseases
/ Laboratories
/ Light chains
/ Paraproteinemia
/ Patients
/ Typing
2019
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Kidney disease and plasma cell dyscrasias: ambiguous cases solved by serum free light chain dimerization analysis
Journal Article
Kidney disease and plasma cell dyscrasias: ambiguous cases solved by serum free light chain dimerization analysis
2019
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Overview
BackgroundPlasma cell dyscrasias (PCD) comprise a wide spectrum of disorders, which may adversely affect the kidney. However, in some PCD cases associated with kidney disease, the routine laboratory tests may be incapable to determine precisely the form of PCD, i.e., benign or malignant. Moreover, the kidney biopsy needed for precise diagnosis may be risky or declined. To overcome these limitations, we have developed and reported a new non-invasive technique based on serum free light chains (FLC) monomer (M) and dimer (D) pattern analysis (FLC MDPA), which allowed differentiation between malignant and benign PCD forms. The objective of our retrospective study was to demonstrate the utility of FLC MDPA in solving ten puzzling PCD cases complicated with kidney disease (patients 1–10).MethodsTen patients with uncertain form of PCD or with a questionable response to treatment were studied. In addition to routine laboratory tests and clinical evaluation of the PCD patients, our previously developed FLC MDPA in sera and biochemical amyloid typing in biopsy tissues were applied.ResultsThe FLC MDPA aided the diagnosis of the PCD underlying or accompanying the kidney disease in patients 1–5, and helped to interpret properly the response to treatment in patients 1, 6–10. The FLC MDPA findings were confirmed by a biochemical analysis of tissue amyloid deposits and subsequently by the outcome of these patients.ConclusionsFLC MDPA is a non-invasive diagnostic test useful in the management of ambiguous cases of PCD associated with kidney disease.
Publisher
Springer Nature B.V
Subject
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