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NAD+ homeostasis in human health and disease
by
Zapata‐Pérez, Rubén
, Wanders, Ronald J A
, van Karnebeek, Clara D M
, Houtkooper, Riekelt H
in
Adenine
/ Amino acids
/ Biosynthesis
/ Congenital defects
/ Disease
/ EMBO21
/ Encephalopathy
/ Enzymes
/ Etiology
/ Health
/ Homeostasis
/ Metabolism
/ Mutation
/ NAD
/ NAD+ homeostasis
/ Niacinamide
/ Nutrient deficiency
/ Phenotypes
/ Physiological aspects
/ Retinal degeneration
/ Review
/ Reviews
/ therapy
/ Vitamin B
2021
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NAD+ homeostasis in human health and disease
by
Zapata‐Pérez, Rubén
, Wanders, Ronald J A
, van Karnebeek, Clara D M
, Houtkooper, Riekelt H
in
Adenine
/ Amino acids
/ Biosynthesis
/ Congenital defects
/ Disease
/ EMBO21
/ Encephalopathy
/ Enzymes
/ Etiology
/ Health
/ Homeostasis
/ Metabolism
/ Mutation
/ NAD
/ NAD+ homeostasis
/ Niacinamide
/ Nutrient deficiency
/ Phenotypes
/ Physiological aspects
/ Retinal degeneration
/ Review
/ Reviews
/ therapy
/ Vitamin B
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
NAD+ homeostasis in human health and disease
by
Zapata‐Pérez, Rubén
, Wanders, Ronald J A
, van Karnebeek, Clara D M
, Houtkooper, Riekelt H
in
Adenine
/ Amino acids
/ Biosynthesis
/ Congenital defects
/ Disease
/ EMBO21
/ Encephalopathy
/ Enzymes
/ Etiology
/ Health
/ Homeostasis
/ Metabolism
/ Mutation
/ NAD
/ NAD+ homeostasis
/ Niacinamide
/ Nutrient deficiency
/ Phenotypes
/ Physiological aspects
/ Retinal degeneration
/ Review
/ Reviews
/ therapy
/ Vitamin B
2021
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Journal Article
NAD+ homeostasis in human health and disease
2021
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Overview
Depletion of nicotinamide adenine dinucleotide (NAD
+
), a central redox cofactor and the substrate of key metabolic enzymes, is the causative factor of a number of inherited and acquired diseases in humans. Primary deficiencies of NAD
+
homeostasis are the result of impaired biosynthesis, while secondary deficiencies can arise due to other factors affecting NAD
+
homeostasis, such as increased NAD
+
consumption or dietary deficiency of its vitamin B3 precursors. NAD
+
depletion can manifest in a wide variety of pathological phenotypes, ranging from rare inherited defects, characterized by congenital malformations, retinal degeneration, and/or encephalopathy, to more common multifactorial, often age‐related, diseases. Here, we discuss NAD
+
biochemistry and metabolism and provide an overview of the etiology and pathological consequences of alterations of the NAD
+
metabolism in humans. Finally, we discuss the state of the art of the potential therapeutic implications of NAD
+
repletion for boosting health as well as treating rare and common diseases, and the possibilities to achieve this by means of the different NAD
+
‐enhancing agents.
Graphical Abstract
This comprehensive review discusses pathological consequences of NAD
+
metabolism alterations and the therapeutic potential of NAD
+
enhancers.
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