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Deranged Tyrosine Metabolism in Cirrhosis

In normal individuals, the main route for tyrosine degradation is the hepatic pathway tyrosine→4-hydroxyphenylpyruvic acid→homogentisic acid→CO(2). Quantitatively minor pathways, in large part extrahepatic, are: tyrosine→tyramine→octopamine and tyrosine→dopa→catecholamines. In cirrhosis, the main he...

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Autores principales: Fulenwider, J. Timothy, Nordlinger, Bernard M., Faraj, Bajhat A., Ivey, George L., Rudman, Daniel
Formato: Texto
Lenguaje:English
Publicado: 1978
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2595599/
https://www.ncbi.nlm.nih.gov/pubmed/36717
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author Fulenwider, J. Timothy
Nordlinger, Bernard M.
Faraj, Bajhat A.
Ivey, George L.
Rudman, Daniel
author_facet Fulenwider, J. Timothy
Nordlinger, Bernard M.
Faraj, Bajhat A.
Ivey, George L.
Rudman, Daniel
author_sort Fulenwider, J. Timothy
collection PubMed
description In normal individuals, the main route for tyrosine degradation is the hepatic pathway tyrosine→4-hydroxyphenylpyruvic acid→homogentisic acid→CO(2). Quantitatively minor pathways, in large part extrahepatic, are: tyrosine→tyramine→octopamine and tyrosine→dopa→catecholamines. In cirrhosis, the main hepatic pathway is blocked to varying degrees at the first three stages. This appears to be due to lack of activity of the enzymes tyrosine transaminase, PHPA oxidase, and HGA oxidase, the first step being rate limiting. Hypertyrosinemia and tyrosine intolerance result. With the main hepatic pathway partially blocked, an abnormally large amount of tyrosine passes into the normally minor extrahepatic pathway leading to the false neurotransmitters tyramine and octopamine. Overproduction of these amines ensues and they accumulate in the body fluid. The false neurotransmitters can displace catecholamines from their storage sites in the peripheral and central nervous system, and thereby disrupt adrenergic processes in arterioles, kidneys, and brain. Their accumulation in cirrhotic patients may play a role in the pathogenesis of hepatic encephalopathy, hepatorenal syndrome, and hyperdynamic circulation.
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spelling pubmed-25955992008-12-05 Deranged Tyrosine Metabolism in Cirrhosis Fulenwider, J. Timothy Nordlinger, Bernard M. Faraj, Bajhat A. Ivey, George L. Rudman, Daniel Yale J Biol Med Medical Reviews In normal individuals, the main route for tyrosine degradation is the hepatic pathway tyrosine→4-hydroxyphenylpyruvic acid→homogentisic acid→CO(2). Quantitatively minor pathways, in large part extrahepatic, are: tyrosine→tyramine→octopamine and tyrosine→dopa→catecholamines. In cirrhosis, the main hepatic pathway is blocked to varying degrees at the first three stages. This appears to be due to lack of activity of the enzymes tyrosine transaminase, PHPA oxidase, and HGA oxidase, the first step being rate limiting. Hypertyrosinemia and tyrosine intolerance result. With the main hepatic pathway partially blocked, an abnormally large amount of tyrosine passes into the normally minor extrahepatic pathway leading to the false neurotransmitters tyramine and octopamine. Overproduction of these amines ensues and they accumulate in the body fluid. The false neurotransmitters can displace catecholamines from their storage sites in the peripheral and central nervous system, and thereby disrupt adrenergic processes in arterioles, kidneys, and brain. Their accumulation in cirrhotic patients may play a role in the pathogenesis of hepatic encephalopathy, hepatorenal syndrome, and hyperdynamic circulation. 1978 /pmc/articles/PMC2595599/ /pubmed/36717 Text en
spellingShingle Medical Reviews
Fulenwider, J. Timothy
Nordlinger, Bernard M.
Faraj, Bajhat A.
Ivey, George L.
Rudman, Daniel
Deranged Tyrosine Metabolism in Cirrhosis
title Deranged Tyrosine Metabolism in Cirrhosis
title_full Deranged Tyrosine Metabolism in Cirrhosis
title_fullStr Deranged Tyrosine Metabolism in Cirrhosis
title_full_unstemmed Deranged Tyrosine Metabolism in Cirrhosis
title_short Deranged Tyrosine Metabolism in Cirrhosis
title_sort deranged tyrosine metabolism in cirrhosis
topic Medical Reviews
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2595599/
https://www.ncbi.nlm.nih.gov/pubmed/36717
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