Search results for " homeostasis"

showing 10 items of 312 documents

Postnatal Overfeeding in Rodents by Litter Size Reduction Induces Major Short- and Long-Term Pathophysiological Consequences

2013

Numerous studies have demonstrated that the early postnatal environment can influence body weight and energy homeostasis into adulthood. Rodents raised in small litters have been shown to be a useful experimental model to study the short- and long-term consequences of early overnutrition, which can lead to modifications not only in body weight but also of several metabolic features. Postnatal overfeeding (PNOF) induces early malprogramming of the hypothalamic system, inducing acquired persisting central leptin and insulin resistance and an increase in orexigenic signals. Visceral white adipose tissue, lipogenic activity, and inflammatory status are increased in PNOF rodents, while brown adi…

medicine.medical_specialtyLitter Sizemedia_common.quotation_subjectHypothalamusAppetiteMedicine (miscellaneous)White adipose tissueHyperphagiaBiologyEnergy homeostasisToxicology03 medical and health scienceschemistry.chemical_compoundOvernutrition0302 clinical medicineInsulin resistanceCorticosteroneInternal medicineBrown adipose tissuemedicineAnimalsHumansHormone metabolismObesityInfant Nutritional Physiological Phenomena030304 developmental biologymedia_common2. Zero hunger0303 health sciencesNutrition and DieteticsLeptinInfantAppetitemedicine.diseaseHormonesEndocrinologymedicine.anatomical_structureAdipose TissuechemistryCardiovascular DiseasesInsulin ResistanceEnergy Intake030217 neurology & neurosurgeryThe Journal of Nutrition
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Low-protein vegetarian diet does not have a short-term effect on blood acid–base status but raises oxygen consumption during submaximal cycling

2012

Abstract Background Acid–base balance refers to the equilibrium between acids and bases in the human body. Nutrition may affect acid–base balance and further physical performance. With the help of PRAL (potential renal acid load), a low-protein vegetarian diet (LPVD) was designed to enhance the production of bases in body. The aim of this study was to investigate if LPVD has an effect on blood acid–base status and performance during submaximal and maximal aerobic cycling. Methods Nine healthy, recreationally active men (age 23.5 ± 3.4 yr) participated in the study and were randomly divided into two groups in a cross-over study design. Group 1 followed LPVD for 4 days and group 2 ate normall…

medicine.medical_specialtyLow proteinAcid–base balancechemistry.chemical_elementlcsh:TX341-641Clinical nutritionAcid–base homeostasisOxygenMedicineTerm effectFood sciencelcsh:Sports medicineNutritionNutrition and Dieteticsbusiness.industryAerobic performanceAcid loadchemistryPhysical therapyAcid–base reactionlcsh:RC1200-1245businessCyclinglcsh:Nutrition. Foods and food supplyFood ScienceResearch ArticleJournal of the International Society of Sports Nutrition
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Relationships between adipose tissues and brain: what do we learn from animal studies?

2010

International audience; Over the last decades, more and more data supporting the importance of the relationships between the brain and adipose tissues (white and brown) in regards of body weight regulation and energy homeostasis have been published. Indeed the brain via the autonomic nervous system participates to the regulation of different parameters such as the metabolic (lipolysis, lipogenesis and thermogeneis), and secretory (leptin and other adipokines) activities but also plasticity (proliferation differentiation and apoptosis) of adipose tissues. In turn the various fat pads will send information via sensory innervation of white adipose tissue as well as metabolic and hormonal signa…

medicine.medical_specialtyMESH: Mice Transgenic[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionEndocrinology Diabetes and MetabolismCentral nervous systemAdipokineAdipose tissueMice TransgenicWhite adipose tissueBiologyMESH : Adipose TissueEnergy homeostasisMiceMESH: BrainEndocrinologyMESH : Lipid MetabolismInternal medicineMESH : MiceBrown adipose tissueInternal MedicinemedicineAnimalsHumansLipolysisMESH: AnimalsMESH: MiceMESH: Lipid MetabolismMESH: HumansLeptinMESH : HumansBrainGeneral MedicineLipid MetabolismMESH : Mice TransgenicMESH : Models Animalmedicine.anatomical_structureEndocrinologyAdipose TissueMESH : BrainMESH: Models AnimalModels AnimalMESH : AnimalsNeuroscience[SDV.AEN]Life Sciences [q-bio]/Food and NutritionMESH: Adipose Tissue
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Base Excess and Lactate Concentration in Infusion Solutions and Blood Products

2002

medicine.medical_specialtyMetabolic alkalosisBlood Component TransfusionAcid–base homeostasisCritical Care and Intensive Care MedicineBlood productInternal medicinemedicineHumansInfusions ParenteralInfusions IntravenousAcidosisChemistryMetabolic disorderGeneral MedicineHydrogen-Ion ConcentrationWater-Electrolyte Balancemedicine.diseaseDilutionSurgeryAnesthesiology and Pain MedicineEndocrinologyHematocritLiverLactatesEmergency MedicineAcidosis LacticBase excessmedicine.symptomPerfusionains · Anästhesiologie · Intensivmedizin · Notfallmedizin · Schmerztherapie
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Glucose homeostasis is impaired in mice deficient for the neuropeptide 26RFa (QRFP)

2019

AbstractIntroduction26RFa (QRFP) is a biologically active peptide that has been found to control feeding behaviour by stimulating food intake, and to regulate glucose homeostasis by acting as an incretin. The aim of the present study was thus to investigate the impact of 26RFa gene knockout on the regulation of energy and glucose metabolism.Research design and methods26RFa mutant mice were generated by homologous recombination, in which the entire coding region of prepro-26RFa was replaced by the iCre sequence. Energy and glucose metabolism was evaluated through measurement of complementary parameters. Morphological and physiological alterations of the pancreatic islets were also investigat…

medicine.medical_specialtyPancreatic isletsInsulinmedicine.medical_treatmentQRFPIncretinCarbohydrate metabolismBiologymedicine.diseaseEndocrinologymedicine.anatomical_structureDiabetes mellitusInternal medicinemedicineGlucose homeostasisPancreas
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Are skeletal muscleFNDC5gene expression and irisin release regulated by exercise and related to health?

2013

Recently, contradictory findings have been reported concerning the function of irisin and its precursor gene, skeletal muscle FNDC5, in energy homeostasis, and the associated regulatory role of exercise and PGC-1α. We therefore evaluated whether muscle FNDC5 mRNA and serum irisin are exercise responsive and whether PGC-1α expression is associated with FNDC5 expression. The male subjects in the study performed single exercises: (1) 1 h low-intensity aerobic exercise (AE) (middle-aged, n = 17), (2) a heavy-intensity resistance exercise (RE) bout (young n = 10, older n = 11) (27 vs. 62 years), (3) long-term 21 weeks endurance exercise (EE) training alone (twice a week, middle-aged, n = 9), or …

medicine.medical_specialtyPhysiologybusiness.industrySkeletal muscleOverweightFNDC5Energy homeostasisEndocrinologyReal-time polymerase chain reactionmedicine.anatomical_structureEndurance trainingInternal medicineGene expressionmedicineAerobic exercisemedicine.symptombusinessThe Journal of Physiology
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Agouti-related peptide-expressing neurons are mandatory for feeding.

2005

Multiple hormones controlling energy homeostasis regulate the expression of neuropeptide Y (NPY) and agouti-related peptide (AgRP) in the arcuate nucleus of the hypothalamus. Nevertheless, inactivation of the genes encoding NPY and/or AgRP has no impact on food intake in mice. Here we demonstrate that induced selective ablation of AgRP-expressing neurons in adult mice results in acute reduction of feeding, demonstrating direct evidence for a critical role of these neurons in the regulation of energy homeostasis.

medicine.medical_specialtyPro-OpiomelanocortinTime FactorsPeptideCell CountBiologyEnergy homeostasisEatingMiceArcuate nucleusInternal medicinemedicineAnimalsAgouti-Related ProteinDiphtheria ToxinNeuropeptide YRegulation of gene expressionchemistry.chemical_classificationMice KnockoutNeuronsGeneral Neurosciencedigestive oral and skin physiologyBody WeightArcuate Nucleus of HypothalamusProteinsFeeding BehaviorNeuropeptide Y receptorbeta-GalactosidaseAnorexiaEndocrinologynervous systemchemistryGene Expression RegulationHypothalamusIntercellular Signaling Peptides and ProteinsAgouti-related peptidehormones hormone substitutes and hormone antagonistsHormoneNature neuroscience
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Impact of chronic diuretic treatment on glucose homeostasis

2013

Background The use of diuretics for hypertension has been associated with unfavorable changes in cardiovascular risk factors, such as uric acid and glucose tolerance, though the findings in the literature are contradictory. Methods This study investigated whether diuretic use is associated with markers of metabolic and cardiovascular risk, such as insulin-resistance and uric acid, in a cohort of adults without known diabetes and/or atherosclerotic cardiovascular disease. Nine hundred sixty-nine randomly selected participants answered a questionnaire on clinical history and dietary habits. Laboratory blood measurements were obtained in 507 participants. Results Previously undiagnosed type 2 …

medicine.medical_specialtySettore MED/09 - Medicina InternaEndocrinology Diabetes and Metabolismmedicine.medical_treatmentSettore MED/50 - Scienze Tecniche Mediche ApplicateType 2 diabetesGastroenterologySettore MED/13 - Endocrinologiachemistry.chemical_compoundInsulin resistanceDiabetes mellitusInternal medicineInternal MedicinemedicineGlucose homeostasisSettore MED/49 - Scienze Tecniche Dietetiche ApplicateDiureticsbusiness.industryResearchInsulin resistanceType 2 diabetesmedicine.diseaseDiuretics Hypertension Insulin resistance Type 2 diabetes Uric acidEndocrinologychemistryHypertensionCohortUric acidDiureticbusinessUric acidBody mass index
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Identification of a discrete neuronal circuit that relays insulin signaling into the brain to regulate glucose homeostasis

2021

Abstract26RFa (QRFP) is a biologically active peptide that regulates glucose homeostasis by acting as an incretin and by increasing insulin sensitivity at the periphery. 26RFa is also produced by a neuronal population localized in the hypothalamus. In the present study, we have investigated whether the 26RFa neurons may be involved in the hypothalamic regulation of glucose homeostasis. Our data indicate that 26RFa, i.c.v. injected, induces a robust antihyperglycemic effect associated with an increase of insulin production by the pancreatic islets. In addition, we found that insulin strongly stimulates 26RFa expression and secretion by the hypothalamus. RNAscope experiments revealed that neu…

medicine.medical_specialtybiologyChemistryInsulinmedicine.medical_treatmentQRFPIncretinCarbohydrate metabolismInsulin receptorEndocrinologyHypothalamusInternal medicinemedicinebiology.proteinGlucose homeostasisHormone
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Precapillary Servo Control of Blood Pressure and Postcapillary Adjustment of Flow to Tissue Metabolic Status

1996

Background There are several shortcomings in current understanding of how the microvasculature maintains tissue homeostasis. Presently unresolved issues include (1) integration of the potentially conflicting needs for capillary perfusion and hydrostatic pressure regulation, (2) an understanding of signal transmission pathways for conveying information about tissue energetic status from undersupplied tissue sites to the arterioles, (3) accounting for the experimentally observed interrelations between precapillary and postcapillary resistances, and (4) an explanation of how precise local adjustment of perfusion to metabolic demands is achieved. Methods and Results A novel conceptualization o…

medicine.medical_specialtybusiness.industryHydrostatic pressureModels CardiovascularHemodynamicsBlood PressureVasodilationAnatomyBlood flowCapillariesMicrocirculationMetabolismRegional Blood FlowPhysiology (medical)Internal medicineBlood CirculationCatsmedicineCardiologyAnimalsCardiology and Cardiovascular MedicinebusinessPerfusionMicrovesselTissue homeostasisCirculation
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