1.The Challenges of Diagnosing and Following Wilson Disease in the Presence of Proteinuria.
Soofia KHAN ; Michael SCHILSKY ; Gary SILBER ; Bruce MORGENSTERN ; Tamir MILOH
Pediatric Gastroenterology, Hepatology & Nutrition 2016;19(2):139-142
The coexistence of Wilson disease with Alport syndrome has not previously been reported. The diagnosis of Wilson disease and its ongoing monitoring is challenging when associated with an underlying renal disease such as Alport syndrome. Proteinuria can lead to low ceruloplasmin since it is among serum proteins inappropriately filtered by the damaged glomerulus, and can also lead to increased urinary loss of heavy metals such as zinc and copper. Elevated transaminases may be attributed to dyslipidemia or drug induced hepatotoxicity. The accurate diagnosis of Wilson disease is essential for targeted therapy and improved prognosis. We describe a patient with a diagnosis of Alport syndrome who has had chronic elevation of transaminases eventually diagnosed with Wilson disease based on liver histology and genetics.
Blood Proteins
;
Ceruloplasmin
;
Copper
;
Diagnosis
;
Dyslipidemias
;
Genetics
;
Hepatolenticular Degeneration*
;
Humans
;
Liver
;
Metals, Heavy
;
Nephritis, Hereditary
;
Prognosis
;
Proteinuria*
;
Transaminases
;
Zinc
2.Presentation of Progressive Familial Intrahepatic Cholestasis Type 3 Mimicking Wilson Disease: Molecular Genetic Diagnosis and Response to Treatment.
Salih BOGA ; Dhanpat JAIN ; Michael L SCHILSKY
Pediatric Gastroenterology, Hepatology & Nutrition 2015;18(3):202-208
Progressive familial intrahepatic cholestasis type 3 (PFIC3) is an autosomal recessive disorder of cholestasis of hepatocellular origin, typically seen in infancy or childhood caused by a defect in the ABCB4 located on chromosome 7. Here we report on an older patient, aged 15, who presented with biochemical testing that led to an initial consideration of a diagnosis of Wilson disease (WD) resulting in a delayed diagnosis of PFIC3. Diagnosis of PFIC3 was later confirmed by molecular studies that identified novel mutations in the ABCB4 gene. Cholestasis due to PFIC3 can cause elevated hepatic copper and increased urine copper excretion that overlap with current diagnostic criteria for WD. Molecular diagnostics are very useful for establishing the diagnosis of PFIC3. Ursodeoxycholic acid ameliorates cholestasis in PFIC3, and may help mediate a reduction in hepatic copper content in response to treatment.
Cholestasis
;
Cholestasis, Intrahepatic*
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Chromosomes, Human, Pair 7
;
Copper
;
Delayed Diagnosis
;
Diagnosis*
;
Hepatolenticular Degeneration*
;
Humans
;
Molecular Biology*
;
Pathology, Molecular
;
Ursodeoxycholic Acid