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Wilson disease.

Abstract

Wilson disease is an inherited disorder of copper metabolism. Progress has been made in establishing the location of the gene on the long arm of chromosome 13, and in finding nearby probes that can be used to identify affected sibs of newly diagnosed patients. However, the gene has not been cloned, and the molecular nature of the defect remains unknown. The cause of the disease is a failure to excrete unneeded and excessive copper in the bile for loss in the stool. This may be due to a failure to excrete copper packaged in ceruloplasmin into the bile. Clinically, patients usually present during the second to fourth decades of life with liver, neurologic, or psychiatric disease, but the diagnosis is often missed or delayed. Once a diagnosis of Wilson disease is considered, reliable studies of copper variables can be carried out. After diagnosis, patients must receive anticopper treatment for the rest of their lives, to reduce copper levels and prevent copper reaccumulation. For life-long maintenance therapy, we recommend zinc acetate because of its complete efficacy and lack of toxicity; it acts by blocking copper absorption. For initial therapy of the acutely ill patient, no currently available therapy has proven to be ideal. A chelator-type drug, either penicillamine or trien, can be used for the initial therapy of patients who present with liver disease; transition to zinc acetate can then be made after a few months. For the initial therapy of acutely ill patients who present with neurologic disease, chelation should be avoided because neurologic worsening frequently occurs, probably due to redistribution of copper which temporarily raises the levels of copper in the brain. For initial treatment, zinc therapy is also not ideal because it is relatively slow-acting. A new experimental drug, tetrathiomolybdate, shows promise in the initial treatment of patients with Wilson disease. The major challenges ahead include closing the remaining therapeutic hiatuses, cloning and expressing the gene to understand its function, and improving clinical diagnosis so that therapy can be instituted as quickly as possible.

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BibTeXRIS

G J Brewer, V Yuzbasiyan-Gurkan. 1992. Wilson disease.. https://doi.org/10.1097/00005792-199205000-00004

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WilsonGenAI a deep learning approach to classify pathogenic variants in Wilson Disease.

BACKGROUND: Advances in Next Generation Sequencing have made rapid variant discovery and detection widely accessible. To facilitate a better understanding of the nature of these variants, American College of Medical Genetics and Genomics and the Association of Molecular Pathologists (ACMG-AMP) have issued a set of guidelines for variant classification. However, given the vast number of variants associated with any disorder, it is impossible to manually apply these guidelines to all known variants. Machine learning methodologies offer a rapid way to classify large numbers of variants, as well as variants of uncertain significance as either pathogenic or benign. Here we classify ATP7B genetic variants by employing ML and AI algorithms trained on our well-annotated WilsonGen dataset. METHODS: We have trained and validated two algorithms: TabNet and XGBoost on a high-confidence dataset of manually annotated, ACMG & AMP classified variants of the ATP7B gene associated with Wilson's Disease. RESULTS: Using an independent validation dataset of ACMG & AMP classified variants, as well as a patient set of functionally validated variants, we showed how both algorithms perform and can be used to classify large numbers of variants in clinical as well as research settings. CONCLUSION: We have created a ready to deploy tool, that can classify variants linked with Wilson's disease as pathogenic or benign, which can be utilized by both clinicians and researchers to better understand the disease through the nature of genetic variants associated with it.

Hepatolenticular Degeneration↗

[Wilson's disease].

Wilson's disease is an autosomal recessive disorder of copper excess. This illness results from mutations of the ATP7B gene chromosome 13. The discovery of the gene allowed a better understanding of cytosolic copper trafficking its relationship with ceruloplasmin synthesis. Symptomatic patients may present with hepatic, neurologic or psychiatric forms. Clinical and phenotypic evidences provide only presumptive arguments for this disease which can be routinely assessed by molecular analysis. This disease can be efficiently treated by chelation and zinc therapy. Liver transplantation is the therapy to patients with hepatic fulminant course, or in those with relentless progression of hepatic dysfunction in spite of medical therapy.

Hepatolenticular Degeneration↗

[Wilson's disease].

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Hepatolenticular Degeneration↗