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AG-ARF.

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A L Linton. 1987. AG-ARF.. https://doi.org/10.3109/08860228709056319

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The identification of novel potential injury mechanisms and candidate biomarkers in renal allograft rejection by quantitative proteomics.

Early transplant dysfunction and failure because of immunological and nonimmunological factors still presents a significant clinical problem for transplant recipients. A critical unmet need is the noninvasive detection and prediction of immune injury such that acute injury can be reversed by proactive immunosuppression titration. In this study, we used iTRAQ -based proteomic discovery and targeted ELISA validation to discover and validate candidate urine protein biomarkers from 262 renal allograft recipients with biopsy-confirmed allograft injury. Urine samples were randomly split into a training set of 108 patients and an independent validation set of 154 patients, which comprised the clinical biopsy-confirmed phenotypes of acute rejection (AR) (n = 74), stable graft (STA) (n = 74), chronic allograft injury (CAI) (n = 58), BK virus nephritis (BKVN) (n = 38), nephrotic syndrome (NS) (n = 8), and healthy, normal control (HC) (n = 10). A total of 389 proteins were measured that displayed differential abundances across urine specimens of the injury types (p < 0.05) with a significant finding that SUMO2 (small ubiquitin-related modifier 2) was identified as a "hub" protein for graft injury irrespective of causation. Sixty-nine urine proteins had differences in abundance (p < 0.01) in AR compared with stable graft, of which 12 proteins were up-regulated in AR with a mean fold increase of 2.8. Nine urine proteins were highly specific for AR because of their significant differences (p < 0.01; fold increase >1.5) from all other transplant categories (HLA class II protein HLA-DRB1, KRT14, HIST1H4B, FGG, ACTB, FGB, FGA, KRT7, DPP4). Increased levels of three of these proteins, fibrinogen beta (FGB; p = 0.04), fibrinogen gamma (FGG; p = 0.03), and HLA DRB1 (p = 0.003) were validated by ELISA in AR using an independent sample set. The fibrinogen proteins further segregated AR from BK virus nephritis (FGB p = 0.03, FGG p = 0.02), a finding that supports the utility of monitoring these urinary proteins for the specific and sensitive noninvasive diagnosis of acute renal allograft rejection.

Acute Kidney Injury

[Acute renal failure in IgM plasmocytoma with hyperviscosity syndrome].

HISTORY AND CLINICAL FINDINGS: Two days after starting withdrawal treatment for alcohol and drug abuse a 56-year-old woman developed acute renal failure. The patient was in a poor general condition and disoriented as to time and place. She had uraemic oral fetor and leg oedema. She had previously fractured both arms 3 months before. INVESTIGATIONS: Biochemical tests indicated renal failure: creatine 1791 mumol/l, urea 51.7 mmol/l, potassium 5.3 mmol/l, phosphate 1.86 mmol/l. Serum protein electrophoresis suggested paraproteinaemia with M gradients in the gamma-fraction. Immune fixation electrophoresis demonstrated monoclonal IgM gammopathy of kappa-type (IgM 44.1 g/l). Haemoglobin level was reduced to 66 g/l. Bone marrow biopsy showed replacement of normal haematopoiesis by highly atypical plasma cells (> 30% of cell population). Magnetic resonance imaging revealed diffuse changes in the pelvis and vertebrae suggesting plasmacytoma, confirming the diagnosis of IgM plasmacytoma of kappa-type. TREATMENT AND COURSE: Focal neurological symptoms (e.g. intermittent anisocoria and visual disturbances) suggested a hyperviscosity syndrome, although the serum protein level was nearly normal. Plasma viscosity was 2.2 mPas (normal range 1.2-1.38 mPas), lowered to 1.5 mPas by plasmapheresis, after which the neuropsychiatric symptoms improved. Chemotherapy for the plasmacytoma in stage IIIB was initiated (VAD scheme) and dialysis became necessary for terminal renal failure. CONCLUSION: Due to the raised level of IgM protein level and its high molecular size a hyperviscosity syndrome with paraproteinemic coma may occur, even though total plasma protein is nearly normal.

Acute Kidney Injury