Identification of Amyloidogenic Light Chains Requires the Combination of Serum-Free Light Chain Assay with Immunofixation of Serum and Urine

Author:

Palladini Giovanni1,Russo Paola12,Bosoni Tiziana3,Verga Laura14,Sarais Gabriele1,Lavatelli Francesca12,Nuvolone Mario12,Obici Laura1,Casarini Simona1,Donadei Simona1,Albertini Riccardo3,Righetti Gabriella5,Marini Maddalena5,Graziani Maria Stella5,Melzi D'Eril Gian Vico6,Moratti Remigio3,Merlini Giampaolo1

Affiliation:

1. Center for Amyloidosis, Biotechnology Research Laboratories, Department of Biochemistry

2. Department of Internal Medicine

3. Clinical Chemistry Laboratory; and

4. Department of Pathology, Fondazione Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS) Policlinico San Matteo and University of Pavia, Pavia, Italy

5. Clinical Chemistry Laboratory, Ospedale Civile Maggiore, Verona, Italy

6. Department of Medicine and Surgery, University of Milan, Milan, Italy

Abstract

Abstract Background: The diagnosis of systemic immunoglobulin light-chain (AL) amyloidosis requires demonstration of amyloid deposits in a tissue biopsy and amyloidogenic monoclonal light chains. The optimal strategy to identify the amyloidogenic clone has not been established. We prospectively assessed the diagnostic sensitivity of the serum free light chain (FLC) κ/λ ratio, a commercial serum and urine agarose gel electrophoresis immunofixation (IFE), and the high-resolution agarose gel electrophoresis immunofixation (HR-IFE) developed at our referral center in patients with AL amyloidosis, in whom the amyloidogenic light chain was unequivocally identified in the amyloid deposits. Methods: The amyloidogenic light chain was identified in 121 consecutive patients with AL amyloidosis by immunoelectron microscopy analysis of abdominal fat aspirates and/or organ biopsies. We characterized the monoclonal light chain by using IFE and HR-IFE in serum and urine and the FLC κ/λ ratio in serum. We then compared the diagnostic sensitivities of the 3 assays. Results: The HR-IFE of serum and urine identified the amyloidogenic light chain in all 115 patients with a monoclonal gammopathy. Six patients with a biclonal gammopathy were omitted from the statistical analysis. The diagnostic sensitivity of commercial serum and urine IFE was greater than that of the FLC κ/λ ratio (96% vs 76%). The combination of serum IFE and the FLC assay detected the amyloidogenic light chain in 96% of patients. The combination of IFE of both serum and urine with the FLC κ/λ ratio had a 100% sensitivity. Conclusions: The identification of amyloidogenic light chains cannot rely on a single test and requires the combination of a commercially available FLC assay with immunofixation of both serum and urine.

Funder

Fondazione Cariplo

Ministero della Salute

Publisher

Oxford University Press (OUP)

Subject

Biochemistry (medical),Clinical Biochemistry

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