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1.
J. physiol. biochem ; 68(1): 141-151, mar. 2012.
Article in English | IBECS | ID: ibc-122386

ABSTRACT

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Ketogenesis is the branch of mammalian metabolism concerned with the synthesis of ketone bodies. In this process, the small, water-soluble compounds acetoacetate, D-3-Beta-hydroxybutyrate and propanone are produced by the liver in response to reduced glucose availability. Although ketone bodies are always present at a low level in healthy individuals, dietary manipulation and certain pathological conditions can increase the levels of these compounds in vivo. In some instances, such as in refractory epilepsy, high levels of ketone bodies can be beneficial-in this instance, by exerting an anticonvulsant effect. Conversely, if the levels of ketones rise to supraphysiological levels, as can occur in diabetes mellitus, a state of ketoacidosis can occur, which has serious consequences for cellular function. More recently, research has identified a possible link between ketogenesis and free radical-mediated pathologies, highlighting the potential application of ketogenic diets to the treatment of conditions such as Alzheimer's disease. Overall, an understanding of ketone body metabolism and its links to human disease may prove to be vital in developing new regimens for the treatment of human disease (AU)


Subject(s)
Humans , Ketone Bodies/metabolism , Free Radicals/adverse effects , 3-Hydroxybutyric Acid/physiology , Glucose/metabolism
2.
J Physiol Biochem ; 68(1): 141-51, 2012 Mar.
Article in English | MEDLINE | ID: mdl-21983804

ABSTRACT

Ketogenesis is the branch of mammalian metabolism concerned with the synthesis of ketone bodies. In this process, the small, water-soluble compounds acetoacetate, D-3-ß-hydroxybutyrate and propanone are produced by the liver in response to reduced glucose availability. Although ketone bodies are always present at a low level in healthy individuals, dietary manipulation and certain pathological conditions can increase the levels of these compounds in vivo. In some instances, such as in refractory epilepsy, high levels of ketone bodies can be beneficial-in this instance, by exerting an anticonvulsant effect. Conversely, if the levels of ketones rise to supraphysiological levels, as can occur in diabetes mellitus, a state of ketoacidosis can occur, which has serious consequences for cellular function. More recently, research has identified a possible link between ketogenesis and free radical-mediated pathologies, highlighting the potential application of ketogenic diets to the treatment of conditions such as Alzheimer's disease. Overall, an understanding of ketone body metabolism and its links to human disease may prove to be vital in developing new regimens for the treatment of human disease.


Subject(s)
Ketone Bodies/biosynthesis , Nervous System Diseases/metabolism , Oxidative Stress , Animals , Diet, Ketogenic , Diet, Reducing , Energy Metabolism , Fasting/metabolism , Humans , Ketone Bodies/blood , Ketone Bodies/metabolism , Metabolic Diseases/metabolism , Oxidation-Reduction
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