Search results for "Energy Metabolism"

showing 10 items of 331 documents

Moderate exercise in mice improves cancer plus chemotherapy-induced muscle wasting and mitochondrial alterations

2019

Cancer cachexia is a multifactorial syndrome characterized by anorexia, body wasting, and muscle and adipose tissue loss, impairing patient's tolerance to anticancer treatments and survival. The aim of the present study was to compare the effects induced in mice by tumor growth alone (C26) or in combination with chemotherapy [C26 oxaliplatin and 5-fluorouracil (oxfu)] and to evaluate the potential of moderate exercise. Oxfu administration to C26 mice exacerbated muscle wasting and triggered autophagy or mitophagy, decreased protein synthesis, and induced mitochondrial alterations. Exercise in C26 oxfu mice counteracted the loss of muscle mass and strength, partially rescuing autophagy and m…

0301 basic medicineMaleCachexiamedicine.medical_treatmentPGC-1αMitochondrionliikuntaBiochemistryMice0302 clinical medicineNeoplasmsMitophagyautophagy; cancer cachexia; mitochondria; PGC-1α; survival; Biotechnology; Biochemistry; Molecular Biology; Geneticsta315WastingMice Inbred BALB C3. Good healthmitochondriaMuscular AtrophyFemalemedicine.symptomBiotechnologycancer cachexiamedicine.medical_specialtyautophagyAntineoplastic AgentsAnorexiasurvivalCachexia03 medical and health sciencesInternal medicinePhysical Conditioning AnimalGeneticsmedicineAnimalsMuscle SkeletalMolecular BiologyChemotherapysyöpähoidotbusiness.industryAutophagyCancermedicine.diseaseta3122030104 developmental biologyEndocrinologyQuality of Lifekoe-eläinmallitbusinessEnergy Metabolismlihassurkastumasairaudet030217 neurology & neurosurgeryFASEB Journal
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Circadian and Dopaminergic Regulation of Fatty Acid Oxidation Pathway Genes in Retina and Photoreceptor Cells.

2016

The energy metabolism of the retina might comply with daily changes in energy demand and is impaired in diabetic retinopathy-one of the most common causes of blindness in Europe and the USA. The aim of this study was to investigate putative adaptation of energy metabolism in healthy and diabetic retina. Hence expression analysis of metabolic pathway genes was performed using quantitative polymerase chain reaction, semi-quantitative western blot and immunohistochemistry. Transcriptional profiling of key enzymes of energy metabolism identified transcripts of mitochondrial fatty acid β-oxidation enzymes, i.e. carnitine palmitoyltransferase-1α (Cpt-1α) and medium chain acyl-CoA dehydrogenase (A…

0301 basic medicineMalePhysiologyDopamineMice ObeseGene Expressionlcsh:MedicineBiochemistryAcyl-CoA DehydrogenaseMice0302 clinical medicineCatecholaminesEndocrinologyMedicine and Health SciencesAminesEnzyme Chemistrylcsh:ScienceBeta oxidationMice KnockoutMice Inbred C3HMultidisciplinaryOrganic CompoundsDopaminergicFatty AcidsNeurochemistryDiabetic retinopathyNeurotransmittersCircadian RhythmChemistryCircadian Oscillatorsmedicine.anatomical_structurePhysical SciencesFemaleAnatomyOxidation-Reductionmedicine.drugResearch Articlemedicine.medical_specialtyBiogenic AminesEndocrine DisordersOcular AnatomyBiologyRetinaEnzyme Regulation03 medical and health sciencesOcular SystemInternal medicinemedicineGeneticsDiabetes MellitusAnimalsPhotoreceptor CellsGene RegulationCircadian rhythmCarnitineACADMRetinaDiabetic RetinopathyCarnitine O-PalmitoyltransferaseReceptor Melatonin MT1Receptors Dopamine D4Organic Chemistrylcsh:RChemical CompoundsBiology and Life Sciencesmedicine.diseaseHormonesMice Inbred C57BLMetabolic pathwayDisease Models Animal030104 developmental biologyEndocrinologyMetabolismMicroscopy FluorescenceMetabolic DisordersEnzymologylcsh:Qsense organsEnergy MetabolismPhysiological ProcessesChronobiology030217 neurology & neurosurgeryNeurosciencePLoS ONE
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The gliotransmitter ACBP controls feeding and energy homeostasis via the melanocortin system

2019

International audience; Glial cells have emerged as key players in the central control of energy balance and etiology of obesity. Astrocytes play a central role in neural communication via the release of gliotransmitters. Acyl-CoA binding protein (ACBP)-derived endozepines are secreted peptides that modulate the GABAA receptor. In the hypothalamus, ACBP is enriched in arcuate nucleus (ARC) astrocytes, ependymocytes and tanycytes. Central administration of the endozepine octadecaneuropeptide (ODN) reduces feeding and improves glucose tolerance, yet the contribution of endogenous ACBP in energy homeostasis is unknown. We demonstrated that ACBP deletion in GFAP+ astrocytes, but not in Nkx2.1-l…

0301 basic medicineMalePro-OpiomelanocortinGliotransmitter[SDV]Life Sciences [q-bio][SDV.NEU.NB]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]/NeurobiologyHyperphagiaEnergy homeostasisCell Lineneuroscience03 medical and health sciencesEatingMice0302 clinical medicineProopiomelanocortinCentral melanocortin systemmedicine[SDV.MHEP.PHY]Life Sciences [q-bio]/Human health and pathology/Tissues and Organs [q-bio.TO]AnimalsObesityComputingMilieux_MISCELLANEOUSDiazepam Binding InhibitorMice KnockoutNeuronsArc (protein)biologyChemistryGABAA receptorGeneral MedicineViral rescue[SDV.MHEP.EM]Life Sciences [q-bio]/Human health and pathology/Endocrinology and metabolismCell biology030104 developmental biologymedicine.anatomical_structure030220 oncology & carcinogenesisAstrocytesbiology.proteinFemale[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]MelanocortinEnergy Metabolismmetabolism[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyResearch Article
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Mitochondrial Fatty Acid β-Oxidation Inhibition Promotes Glucose Utilization and Protein Deposition through Energy Homeostasis Remodeling in Fish.

2020

BACKGROUND: Fish cannot use carbohydrate efficiently and instead utilize protein for energy supply, thus limiting dietary protein storage. Protein deposition is dependent on protein turnover balance, which correlates tightly with cellular energy homeostasis. Mitochondrial fatty acid β-oxidation (FAO) plays a crucial role in energy metabolism. However, the effect of remodeled energy homeostasis caused by inhibited mitochondrial FAO on protein deposition in fish has not been intensively studied. OBJECTIVES: This study aimed to identify the regulatory role of mitochondrial FAO in energy homeostasis maintenance and protein deposition by studying lipid, glucose, and protein metabolism in fish. M…

0301 basic medicineMaleProtein metabolismMedicine (miscellaneous)MitochondrionEnergy homeostasis03 medical and health scienceschemistry.chemical_compoundNile tilapia0302 clinical medicineAdjuvants ImmunologicmedicineAnimalsHomeostasisInsulinCarnitineProtein kinase ACells CulturedZebrafishNutrition and DieteticsbiologyCarnitine O-PalmitoyltransferaseChemistryFatty AcidsProtein turnoverProteinsMetabolismCichlidsDNACytochromes bbiology.organism_classificationMitochondria030104 developmental biologyGlucoseBiochemistryMutationHepatocytesNutrient Physiology Metabolism and Nutrient-Nutrient InteractionsEnergy MetabolismOxidation-Reduction030217 neurology & neurosurgerymedicine.drugMethylhydrazinesThe Journal of nutrition
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Adipocyte cannabinoid receptor CB1 regulates energy homeostasis and alternatively activated macrophages.

2017

Dysregulated adipocyte physiology leads to imbalanced energy storage, obesity, and associated diseases, imposing a costly burden on current health care. Cannabinoid receptor type-1 (CB1) plays a crucial role in controlling energy metabolism through central and peripheral mechanisms. In this work, adipocyte-specific inducible deletion of the CB1 gene (Ati-CB1- KO) was sufficient to protect adult mice from diet-induced obesity and associated metabolic alterations and to reverse the phenotype in already obese mice. Compared with controls, Ati-CB1-KO mice showed decreased body weight, reduced total adiposity, improved insulin sensitivity, enhanced energy expenditure, and fat depot-specific cell…

0301 basic medicineMalemedicine.medical_specialtyCannabinoid receptorMacrophageAdipose Tissue WhiteAdipose tissueEnergy homeostasisMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineReceptor Cannabinoid CB1Internal medicineAdipocyteBrown adipose tissueHomeostasiCannabinoid receptor type 2medicineAdipocytesAnimalsHomeostasisObesityCannabisMice KnockoutAdipocyteAnimalMedicine (all)MacrophagesBody WeightGeneral MedicineMacrophage ActivationEndocannabinoid systemMice Inbred C57BL030104 developmental biologyEndocrinologymedicine.anatomical_structurechemistryOrgan SpecificityCommentaryEnergy IntakeEnergy MetabolismTranscriptome030217 neurology & neurosurgeryHomeostasisResearch ArticleThe Journal of clinical investigation
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Two different pathogenic mechanisms, dying-back axonal neuropathy and pancreatic senescence, are present in the YG8R mouse model of Friedreich ataxia

2016

Frataxin (FXN) deficiency causes Friedreich's ataxia (FRDA), a multisystem disorder with neurological and non-neurological symptoms. FRDA pathophysiology combines developmental and degenerative processes of dorsal root ganglia (DRG), sensory nerves, dorsal columns and other central nervous structures. A dying-back mechanism has been proposed to explain the peripheral neuropathy and neuropathology. In addition, affected individuals have non-neuronal symptoms such as diabetes mellitus or glucose intolerance. To go further in the understanding of the pathogenic mechanisms of neuropathy and diabetes associated with the disease, we have investigated the humanized mouse YG8R model of FRDA. By bio…

0301 basic medicineNervous systemAgingPathologylcsh:MedicineMedicine (miscellaneous)Mice0302 clinical medicineImmunology and Microbiology (miscellaneous)Ganglia SpinalInsulin-Secreting CellsInsulin SecretionInsulinMuscle spindleDorsal root gangliaCellular SenescenceDiabetisbiologyMusclesDiabetesAnatomyMitochondria3. Good healthmedicine.anatomical_structureSistema nerviós simpàticDying-back neuropathyPeripheral nervous systemCell senescencemedicine.symptomOxidation-Reductionlcsh:RB1-214Research ArticleSenescencemedicine.medical_specialtyAtaxiaNeuroscience (miscellaneous)Friedreich’s ataxiaNeuropathologyGeneral Biochemistry Genetics and Molecular BiologyPàncreesMalalties del sistema nerviós03 medical and health sciencesPeripheral Nervous Systemlcsh:PathologymedicineAnimalsHumansPancreasIslet of Langerhanslcsh:R302Friedreich's ataxiaNervous system Diseasesmedicine.diseaseAxonsMice Inbred C57BLDisease Models Animal030104 developmental biologyPeripheral neuropathyFriedreich AtaxiaSympathetic nervous systemMutationHumanized mouseFrataxinbiology.proteinEnergy Metabolism030217 neurology & neurosurgeryDisease Models & Mechanisms
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Lactate as a Metabolite and a Regulator in the Central Nervous System

2016

More than two hundred years after its discovery, lactate still remains an intriguing molecule. Considered for a long time as a waste product of metabolism and the culprit behind muscular fatigue, it was then recognized as an important fuel for many cells. In particular, in the nervous system, it has been proposed that lactate, released by astrocytes in response to neuronal activation, is taken up by neurons, oxidized to pyruvate and used for synthesizing acetyl-CoA to be used for the tricarboxylic acid cycle. More recently, in addition to this metabolic role, the discovery of a specific receptor prompted a reconsideration of its role, and lactate is now seen as a sort of hormone, even invol…

0301 basic medicineNervous systemlactate transporterCentral nervous systemReviewBiologyBlood–brain barrierlactate receptorsNeuroprotectionCatalysislcsh:ChemistryInorganic Chemistry03 medical and health sciences0302 clinical medicineSettore BIO/10 - Biochimicalactate receptormedicineAnimalsHumanslactate transportersPhysical and Theoretical ChemistryReceptorExerciselcsh:QH301-705.5Molecular BiologySpectroscopyOrganic ChemistryNeurodegenerationlactic acidBrainGeneral MedicineMetabolismblood-brain barriermedicine.diseaseComputer Science ApplicationsCitric acid cycle030104 developmental biologymedicine.anatomical_structurelcsh:Biology (General)lcsh:QD1-999Biochemistrybrain metabolismActic acidexercise and lactateEnergy MetabolismNeuroscience030217 neurology & neurosurgerySignal Transductionactic acid; brain metabolism; lactate transporters; blood-brain barrier; lactate receptors; exercise and lactate
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11 and 15-month-old infants do not compensate immediately for energy variation, and no further adjustment occurs 12 or 24 hours later

2021

International audience; Previously, we demonstrated that, in the short term, infants undercompensated for the energy from a preload given 25 min before an ad libitum meal. However, although not consistent, there is evidence in young children that caloric adjustment may occur over longer periods. We investigated the extent to which further energy adjustment occurs up to 24 h after a single meal preceded by preloads of varying energy density (ED) in infants that are 11 and 15 months old. Short-term caloric adjustment was measured in 11- and 15-month-old infants through a preload paradigm meal in the laboratory. To assess their caloric adjustment over longer periods (12 and 24 h), we used 24 h…

0301 basic medicinePediatricsmedicine.medical_specialtyAppetite controlCOMPXEnergy balanceAppetite030209 endocrinology & metabolism03 medical and health sciences0302 clinical medicineappetite controlpreload paradigmmedicineHumansChildMealsGeneral PsychologyMeal[SDV.MHEP.PED]Life Sciences [q-bio]/Human health and pathology/Pediatrics030109 nutrition & dieteticsNutrition and DieteticsAppetite Regulationbusiness.industrydigestive oral and skin physiologyInfantCaloric theoryDiet RecordsPreloadChild Preschooldietary recordEnergy densityEnergy variationenergy intakecaloric adjustmentmedicine.symptomEnergy MetabolismbusinessWeight gain[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Resveratrol shifts energy metabolism to increase lipid oxidation in healthy old mice.

2019

Abstract Objectives The objective of this work was to determine the specific mechanisms by which resveratrol inhibits lipogenesis and stimulates lipolysis. Methods Twelve male mice were individually introduced into a metabolic cage for 24 h to measure basal metabolic rate, prior to intervention. They were randomly divided into two groups, resveratrol (RSV) and control (C), and administered resveratrol intraperitoneally or vehicle, respectively, for two consecutive days. After 24 h, the metabolic energy expenditure was again determined for 24 h, before mice were sacrificed. Protein and gene expression of different enzymes related to metabolism in the hepatic tissue, adipose tissue and gastro…

0301 basic medicinePolyphenolMalemedicine.medical_specialtyAgingLipolysisAdipose tissueWhite adipose tissueRM1-950ResveratrolLipid catabolism03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineInternal medicinemedicineAnimalsCarnitineBeta oxidationFatty acid synthesisRespiratory quotientPharmacologyLipogenesisFatty AcidsGeneral MedicineMice Inbred C57BL030104 developmental biologyEndocrinologyMalonyl-CoAchemistryAdipose TissueCarnitine AcyltransferasesLiverResveratrol030220 oncology & carcinogenesisLipogenesisTherapeutics. PharmacologyEnergy MetabolismOxidation-Reductionmedicine.drugAcetyl-CoA CarboxylaseBiomedicinepharmacotherapy = Biomedecinepharmacotherapie
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Metabolic and inflammatory reprogramming of macrophages by ONC201 translates in a pro-inflammatory environment even in presence of glioblastoma cells

2020

Tumor-associated macrophages facilitate tumor progression and resistance to therapy. Their capacity for metabolic and inflammatory reprogramming represents an attractive therapeutic target. ONC201/TIC10 is an anticancer molecule that antagonizes the dopamine receptor D2 and affects mitochondria integrity in tumor cells. We examined whether ONC201 induces a metabolic and pro-inflammatory switch in primary human monocyte-derived macrophages that reactivates their antitumor activities, thus enhancing the onco-toxicity of ONC201. Contrary to glioblastoma cells, macrophages exhibited a low ratio of dopamine receptors D2/D5 gene expression and were resistant to ONC201 cytotoxicity. Macrophages re…

0301 basic medicinePyridinesImmunology610 MedizinGlutamic AcidAntineoplastic AgentsMitochondrionBiology570 Life sciences03 medical and health sciences0302 clinical medicineImmune systemCell Line TumorDopamine receptor D2610 Medical sciencesTumor MicroenvironmentHumansImmunology and AllergyMacrophageReceptors Dopamine D5Tumor microenvironmentReceptors Dopamine D2MacrophagesImidazolesMitochondriaCell biologyGene Expression Regulation NeoplasticPyrimidines030104 developmental biologyDrug Resistance NeoplasmTumor progressionDopamine receptorEnergy MetabolismGlioblastomaReprogrammingTranscription Factor CHOPSignal Transduction030215 immunology570 Biowissenschaften
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