Immunoglobulin light chain toxicity in a mouse model of monoclonal immunoglobulin light-chain deposition disease

Blood ◽  
2020 ◽  
Author(s):  
Sébastien Bender ◽  
Maria Victoria Ayala ◽  
Amélie Bonaud ◽  
Vincent Javaugue ◽  
Claire Carrion ◽  
...  

Light chain deposition disease (LCDD) is a rare disorder characterized by glomerular and peritubular amorphous deposits of a monoclonal immunoglobulin (Ig) light chain (LC), leading to nodular glomerulosclerosis and nephrotic syndrome. We developed a transgenic model using site-directed insertion of the variable domain of a pathogenic human LC gene into the mouse Ig kappa locus, ensuring its production by all plasma cells (PCs). High free LC levels were achieved after backcrossing with mice presenting increased PC differentiation and no Ig heavy chain (HC) production. Our mouse model recapitulates the characteristic features of LCDD, including progressive glomerulosclerosis, nephrotic-range proteinuria and finally, kidney failure. The variable domain of the LC bears alone the structural properties involved in its pathogenicity. RNA sequencing conducted on PCs demonstrated that LCDD LC induces endoplasmic reticulum stress, likely accounting for the high efficiency of proteasome inhibitor-based therapy. Accordingly, reduction of circulating pathogenic LC was efficiently achieved and not only preserved renal function, but partially reversed kidney lesions. Finally, transcriptome analysis of pre-sclerotic glomeruli revealed that proliferation and extracellular matrix remodelling represented the first steps of glomerulosclerosis, paving the way for future therapeutic strategies in LCDD and other kidney diseases featuring diffuse glomerulosclerosis, particularly diabetic nephropathy.

2019 ◽  
Author(s):  
Sébastien Bender ◽  
Maria Victoria Ayala ◽  
Amélie Bonaud ◽  
Vincent Javaugue ◽  
Claire Carrion ◽  
...  

AbstractLight chain deposition disease (LCDD) is a rare disorder characterized by glomerular and peritubular amorphous deposits of a monoclonal immunoglobulin (Ig) light chain (LC), leading to nodular glomerulosclerosis and nephrotic syndrome. We developed a transgenic model using site-directed insertion of the variable domain of a pathogenic human LC gene into the mouse Ig kappa locus, ensuring its production by all plasma cells. High free LC levels were achieved after backcrossing with mice presenting increased plasma cell differentiation and no Ig heavy chain (HC) production. Our mouse model recapitulates the characteristic features of LCDD, including progressive glomerulosclerosis, nephrotic-range proteinuria and finally, kidney failure. The variable domain of the LC bears alone the structural properties involved in its pathogenicity. RNA sequencing conducted on plasma cells demonstrated that LCDD LC induces endoplasmic reticulum stress, likely accounting for the high efficiency of proteasome inhibitor-based therapy. Accordingly, reduction of circulating pathogenic LC was efficiently achieved and not only preserved renal function, but partially reversed kidney lesions. Finally, transcriptome analysis of pre-sclerotic glomeruli revealed that proliferation and extracellular matrix remodelling represented the first steps of glomerulosclerosis, paving the way for future therapeutic strategies in LCDD and other kidney diseases featuring diffuse glomerulosclerosis, particularly diabetic nephropathy.


Author(s):  
Dirk R. J. Kuypers ◽  
Morie A. Gertz

Light-chain deposition disease (LCDD) is characterized by extracellular tissue deposition of non-amyloid monoclonal immunoglobulin light chains (predominantly kappa light chains) in various organs including kidneys, heart, and liver. It is a rare cause of renal insufficiency. In two-thirds of cases it is associated with multiple myeloma, while in the remainder their monoclonal B cell proliferation does not meet the criteria for that diagnosis.Renal involvement occurs almost invariably and dominates the clinical course of the disease: greater than 90% of patients with LCDD have renal functional impairment; acute or rapidly progressive kidney failure usually develops over a period of months. Nephrotic-range proteinuria is present in 40–50% of patients while approximately 20% of patients develop nephrotic syndrome. Arterial hypertension and microscopic haematuria can be present. Extrarenal symptoms are related to affected organs with cardiomyopathy, cachexia, haemorrhages, infections, and MM progression as main causes of death.The diagnosis of LCDD is often delayed and whilst bone marrow examination will often identify associated MM, renal biopsy frequently provides the final diagnostic proof. Abnormal light chains can be detected and quantified by serum or urine protein electrophoresis and immunofixation. Quantification of urine and serum free kappa/lambda light chains has proven a useful screening tool and might also plays a role in therapeutic monitoring.Treatment consists of chemotherapy directed against the monoclonal immunoglobulin-producing plasma cells.


2016 ◽  
Vol 25 (1) ◽  
pp. 99-103 ◽  
Author(s):  
Benoit Brilland ◽  
Johnny Sayegh ◽  
Anne Croue ◽  
Frank Bridoux ◽  
Jean-François Subra ◽  
...  

Light chain deposition disease (LCDD) is a rare multisystemic disorder associated with plasma cell proliferation. It mainly affects the kidney, but liver and heart involvement may occur, sometimes mimicking the picture of systemic amyloidosis. Liver disease in LCDD is usually asymptomatic and exceptionally manifests with severe cholestatic hepatitis. We report the case of a 66-year-old female with κ-LCDD and cast nephropathy in the setting of symptomatic multiple myeloma who, after a first cycle of bortezomib-dexamethasone chemotherapy, developed severe and rapidly worsening intrahepatic cholestasis secondary to liver κ-light chain deposition. Intrahepatic cholestasis was attributed to LCDD on the basis of the liver histology and exclusion of possible diagnoses. Chemotherapy was maintained and resulted in progressive resolution of cholestasis. We report here an uncommon presentation of LCDD, with prominent liver involvement that fully recovered with bortezomib-based chemotherapy, and briefly review the relevant literature. Abbreviations: AKI: Acute kidney injury; ALP: alkaline phosphatase; ALT: alanine aminotransferase; AST: aspartate aminotransferase; CMV: Cytomegalovirus; EBV: Epstein–Barr virus; GGT: gamma-glutamyl transferase; HSV: Herpes simplex virus; LC: light chain; LCDD: Light chain deposition disease; MIDD: Monoclonal immunoglobulin deposition disease; MM: Multiple myeloma.


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