The kynurenine pathway (KP) is the main route of tryptophan degradation whose final product is NAD+. The metabolism of tryptophan can be altered in ageing and with neurodegenerative process, leading to decreased biosynthesis of nicotinamide. This fact is very relevant considering that tryptophan is the major source of body stores of the nicotinamide-containing NAD+ coenzymes, which is involved in almost all the bioenergetic and biosynthetic metabolism. Recently, it has been proposed that endogenous tryptophan and its metabolites can interact and/or produce reactive oxygen species in tissues and cells. This subject is of great importance due to the fact that oxidative stress, alterations in KP metabolites, energetic deficit, cell death, and...
Aging is a physiological decline process. The number of older adults is growing around the world; th...
Efficient synthesis of NAD+ is critical to maintaining cell viability in all organs of the body. How...
Efficient synthesis of NAD+ is critical to maintaining cell viability in all organs of the body. How...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Neuroactive metabolites of the kynurenine pathway (KP) of tryptophan degradation have been closely l...
Neuroactive metabolites of the kynurenine pathway (KP) of tryptophan degradation have been closely l...
Neurodegenerative disorders are chronic and life-threatening conditions negatively affecting the qua...
The catabolism of tryptophan has gained great importance in recent years due to the fact that the me...
The kynurenine pathway of tryptophan catabolism plays an important role in several biological system...
Tryptophan is an essential amino acid that can be metabolised through different pathways, a major ro...
Tryptophan is an essential amino acid that can be metabolised through different pathways, a major ro...
Kynurenines are the products of tryptophan metabolism. Among them, kynurenine and kynurenic acid are...
Because we are getting older the number of patients with neurodegenerative diseases such as Alzheime...
The kynurenine pathway (KP) is the principle route of L-Tryptophan (TRP) metabolism, producing sever...
The mitochondria have several important functions in the cell. A mitochondrial dysfunction causes an...
Aging is a physiological decline process. The number of older adults is growing around the world; th...
Efficient synthesis of NAD+ is critical to maintaining cell viability in all organs of the body. How...
Efficient synthesis of NAD+ is critical to maintaining cell viability in all organs of the body. How...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
Neuroactive metabolites of the kynurenine pathway (KP) of tryptophan degradation have been closely l...
Neuroactive metabolites of the kynurenine pathway (KP) of tryptophan degradation have been closely l...
Neurodegenerative disorders are chronic and life-threatening conditions negatively affecting the qua...
The catabolism of tryptophan has gained great importance in recent years due to the fact that the me...
The kynurenine pathway of tryptophan catabolism plays an important role in several biological system...
Tryptophan is an essential amino acid that can be metabolised through different pathways, a major ro...
Tryptophan is an essential amino acid that can be metabolised through different pathways, a major ro...
Kynurenines are the products of tryptophan metabolism. Among them, kynurenine and kynurenic acid are...
Because we are getting older the number of patients with neurodegenerative diseases such as Alzheime...
The kynurenine pathway (KP) is the principle route of L-Tryptophan (TRP) metabolism, producing sever...
The mitochondria have several important functions in the cell. A mitochondrial dysfunction causes an...
Aging is a physiological decline process. The number of older adults is growing around the world; th...
Efficient synthesis of NAD+ is critical to maintaining cell viability in all organs of the body. How...
Efficient synthesis of NAD+ is critical to maintaining cell viability in all organs of the body. How...