Starvation elicits a complex adaptive response in an organism. No information on transcriptional regulation of metabolic adaptations is available. We, therefore, studied the gene expression profiles of brain, small intestine, kidney, liver, and skeletal muscle in mice that were subjected to 0-72 h of fasting. Functional-category enrichment, text mining, and network analyses were employed to scrutinize the overall adaptation, aiming to identify responsive pathways, processes, and networks, and their regulation. The observed transcriptomics response did not follow the accepted "carbohydrate-lipid-protein" succession of expenditure of energy substrates. Instead, these processes were activated simultaneously in different organs during the entir...
Background: Tissues may respond differently to a particular stimulus if they have been previously ex...
Background & Aims: Starvation induces massive perturbations in metabolic pathways involved in en...
Organisms adapt their metabolism and draw on reserves as a consequence of food deprivation. The cent...
Starvation elicits a complex adaptive response in an organism. No information on transcriptional reg...
Objective: Fasting regimens can promote health, mitigate chronic immunological disorders, and improv...
BACKGROUND: The contribution of individual organs to the whole-body adaptive response to fasting has...
ABSTRACT: BACKGROUND: The gut is a major energy consumer, but a comprehensive overview of the adapti...
AbstractDietary or caloric restriction confers various clinical benefits. Short-term fasting of mice...
Dietary or caloric restriction confers various clinical benefits. Short‐term fasting of mice is a co...
International audienceAbstract: Food deprivation resulting in muscle atrophy may be detrimental to h...
Tissues may respond differently to a particular stimulus if they have been previously exposed to tha...
Nutrient deprivation (starvation) induced by fasting and hypercaloric regimens are stress factors th...
BACKGROUND & AIMS: Starvation induces massive perturbations in metabolic pathways involved in en...
Organisms adapt their metabolism and draw on reserves as a consequence of food deprivation. The cent...
Background: Tissues may respond differently to a particular stimulus if they have been previously ex...
Background & Aims: Starvation induces massive perturbations in metabolic pathways involved in en...
Organisms adapt their metabolism and draw on reserves as a consequence of food deprivation. The cent...
Starvation elicits a complex adaptive response in an organism. No information on transcriptional reg...
Objective: Fasting regimens can promote health, mitigate chronic immunological disorders, and improv...
BACKGROUND: The contribution of individual organs to the whole-body adaptive response to fasting has...
ABSTRACT: BACKGROUND: The gut is a major energy consumer, but a comprehensive overview of the adapti...
AbstractDietary or caloric restriction confers various clinical benefits. Short-term fasting of mice...
Dietary or caloric restriction confers various clinical benefits. Short‐term fasting of mice is a co...
International audienceAbstract: Food deprivation resulting in muscle atrophy may be detrimental to h...
Tissues may respond differently to a particular stimulus if they have been previously exposed to tha...
Nutrient deprivation (starvation) induced by fasting and hypercaloric regimens are stress factors th...
BACKGROUND & AIMS: Starvation induces massive perturbations in metabolic pathways involved in en...
Organisms adapt their metabolism and draw on reserves as a consequence of food deprivation. The cent...
Background: Tissues may respond differently to a particular stimulus if they have been previously ex...
Background & Aims: Starvation induces massive perturbations in metabolic pathways involved in en...
Organisms adapt their metabolism and draw on reserves as a consequence of food deprivation. The cent...