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A Review of the Biochemistry, Metabolism and Clinical Benefits of Thiamin(e) and Its Derivatives

Thiamin(e), also known as vitamin B1, is now known to play a fundamental role in energy metabolism. Its discovery followed from the original early research on the ‘anti-beriberi factor’ found in rice polishings. After its synthesis in 1936, it led to many years of research to find its action in trea...

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Detalles Bibliográficos
Autor principal: Lonsdale, Derrick
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1375232/
https://www.ncbi.nlm.nih.gov/pubmed/16550223
http://dx.doi.org/10.1093/ecam/nek009
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author Lonsdale, Derrick
author_facet Lonsdale, Derrick
author_sort Lonsdale, Derrick
collection PubMed
description Thiamin(e), also known as vitamin B1, is now known to play a fundamental role in energy metabolism. Its discovery followed from the original early research on the ‘anti-beriberi factor’ found in rice polishings. After its synthesis in 1936, it led to many years of research to find its action in treating beriberi, a lethal scourge known for thousands of years, particularly in cultures dependent on rice as a staple. This paper refers to the previously described symptomatology of beriberi, emphasizing that it differs from that in pure, experimentally induced thiamine deficiency in human subjects. Emphasis is placed on some of the more unusual manifestations of thiamine deficiency and its potential role in modern nutrition. Its biochemistry and pathophysiology are discussed and some of the less common conditions associated with thiamine deficiency are reviewed. An understanding of the role of thiamine in modern nutrition is crucial in the rapidly advancing knowledge applicable to Complementary Alternative Medicine. References are given that provide insight into the use of this vitamin in clinical conditions that are not usually associated with nutritional deficiency. The role of allithiamine and its synthetic derivatives is discussed. Thiamine plays a vital role in metabolism of glucose. Thus, emphasis is placed on the fact that ingestion of excessive simple carbohydrates automatically increases the need for this vitamin. This is referred to as high calorie malnutrition.
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spelling pubmed-13752322006-03-20 A Review of the Biochemistry, Metabolism and Clinical Benefits of Thiamin(e) and Its Derivatives Lonsdale, Derrick Evid Based Complement Alternat Med Reviews Thiamin(e), also known as vitamin B1, is now known to play a fundamental role in energy metabolism. Its discovery followed from the original early research on the ‘anti-beriberi factor’ found in rice polishings. After its synthesis in 1936, it led to many years of research to find its action in treating beriberi, a lethal scourge known for thousands of years, particularly in cultures dependent on rice as a staple. This paper refers to the previously described symptomatology of beriberi, emphasizing that it differs from that in pure, experimentally induced thiamine deficiency in human subjects. Emphasis is placed on some of the more unusual manifestations of thiamine deficiency and its potential role in modern nutrition. Its biochemistry and pathophysiology are discussed and some of the less common conditions associated with thiamine deficiency are reviewed. An understanding of the role of thiamine in modern nutrition is crucial in the rapidly advancing knowledge applicable to Complementary Alternative Medicine. References are given that provide insight into the use of this vitamin in clinical conditions that are not usually associated with nutritional deficiency. The role of allithiamine and its synthetic derivatives is discussed. Thiamine plays a vital role in metabolism of glucose. Thus, emphasis is placed on the fact that ingestion of excessive simple carbohydrates automatically increases the need for this vitamin. This is referred to as high calorie malnutrition. Oxford University Press 2006-03 2006-02-01 /pmc/articles/PMC1375232/ /pubmed/16550223 http://dx.doi.org/10.1093/ecam/nek009 Text en © The Author (2006). Published by Oxford University Press. All rights reserved
spellingShingle Reviews
Lonsdale, Derrick
A Review of the Biochemistry, Metabolism and Clinical Benefits of Thiamin(e) and Its Derivatives
title A Review of the Biochemistry, Metabolism and Clinical Benefits of Thiamin(e) and Its Derivatives
title_full A Review of the Biochemistry, Metabolism and Clinical Benefits of Thiamin(e) and Its Derivatives
title_fullStr A Review of the Biochemistry, Metabolism and Clinical Benefits of Thiamin(e) and Its Derivatives
title_full_unstemmed A Review of the Biochemistry, Metabolism and Clinical Benefits of Thiamin(e) and Its Derivatives
title_short A Review of the Biochemistry, Metabolism and Clinical Benefits of Thiamin(e) and Its Derivatives
title_sort review of the biochemistry, metabolism and clinical benefits of thiamin(e) and its derivatives
topic Reviews
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1375232/
https://www.ncbi.nlm.nih.gov/pubmed/16550223
http://dx.doi.org/10.1093/ecam/nek009
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