Search results for "MICROBIOTA"

showing 10 items of 500 documents

Obesity-associated deficits in inhibitory control are phenocopied to mice through gut microbiota changes in one-carbon and aromatic amino acids metab…

2021

Gut: first published.

Male0301 basic medicine2312MicrobiologiaGut floraTranscriptomeMice0302 clinical medicineOverweight persons1506Gut MicrobiotaPrefrontal cortexhealth care economics and organizationsdigestive oral and skin physiologyGastroenterologyIntestins -- MalaltiesFecal Microbiota TransplantationMiddle AgedPersones obesesserotonin3. Good healthInhibition PsychologicalIntestins -- MicrobiologiaPhenotypemedicine.anatomical_structureintestinal microbiology ; microbiota ; obesity.ObesitatFemaleIntestines -- DiseasesdopamineperformanceAdultmedicine.medical_specialtytryptophan depletionPhysical exerciseBiologyIntestines -- Microbiologydigestive systemMicrobiologyAmino Acids Aromatic03 medical and health sciencesMetabolomicsInternal medicinemedicineAnimalsHumansObesityAnterior cingulate cortexAgedIntestinal microbiologyMetabolismbiology.organism_classificationCarbonGastrointestinal MicrobiomeFatty LiverCross-Sectional Studies030104 developmental biologyEndocrinologyTranscriptome030217 neurology & neurosurgeryStroop effect
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Pairing Binge Drinking and a High-Fat Diet in Adolescence Modulates the Inflammatory Effects of Subsequent Alcohol Consumption in Mice

2021

This article belongs to the Special Issue Gut Microbiota and Immunity.

Male0301 basic medicineChemokine CXCL1Self AdministrationBinge drinkingAlcoholStriatumGut floraMicechemistry.chemical_compound0302 clinical medicineBiology (General)BingeSpectroscopybiologyalcoholMicrobiotadigestive oral and skin physiologyAge Factorsfood and beveragesGeneral MedicineComputer Science ApplicationsChemistryHigh-fat diethigh-fat dietCytokinesbingemedicine.symptomAlcoholmedicine.medical_specialtyAlcohol DrinkingQH301-705.5Binge drinkingInflammationDiet High-Fatdigestive systemArticleCatalysisInorganic Chemistry03 medical and health sciencesInternal medicineAnimals Outbred StrainsmicrobiotamedicineAnimalsObesityPhysical and Theoretical ChemistryQD1-999Molecular BiologyNeuroinflammationInflammationEthanolEthanolInterleukin-6business.industryOrganic Chemistrybiochemical phenomena metabolism and nutritionbiology.organism_classificationmedicine.diseaseObesitybinge drinkingcytokinesstomatognathic diseases030104 developmental biologyEndocrinologychemistryinflammationbacteriabusiness030217 neurology & neurosurgeryInternational Journal of Molecular Sciences
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Sepsis in preterm infants causes alterations in mucosal gene expression and microbiota profiles compared to non-septic twins

2016

Sepsis is a life-threatening condition in preterm infants. Neonatal microbiota plays a pivotal role in the immune system maturation. Changes in gut microbiota have been associated to inflammatory disorders; however, a link with sepsis in the neonatal period has not yet been established. We aimed to analyze gut microbiota and mucosal gene expression using non-invasively obtained samples to provide with an integrative perspective of host-microbe interactions in neonatal sepsis. For this purpose, a prospective observational case-control study was conducted in septic preterm dizygotic twins and their non-septic twin controls. Fecal samples were used for both microbiota analysis and host genome-…

Male0301 basic medicineGene ExpressionInflammationGut floraModels Biologicaldigestive systemArticleTranscriptomesComputational biologySepsis03 medical and health sciencesfluids and secretions0302 clinical medicineImmune systemSepsis030225 pediatricsmedicineHumansGastrointestinal microbiomePrematureBifidobacteriumMucous MembraneMultidisciplinarybiologyNeonatal sepsisGene Expression ProfilingMicrobiotaInfant NewbornInfantMolecular Sequence AnnotationNewbornbiology.organism_classificationmedicine.diseaseBiological marker030104 developmental biologyGene Expression RegulationImmunologyMetagenomeFemaleMetagenomicsAnaerobic bacteriamedicine.symptomTranscriptomeDysbiosisBiomarkersInfant PrematureSignal TransductionScientific Reports
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Exercise and probiotics attenuate the development of Alzheimer's disease in transgenic mice: Role of microbiome

2018

Abstract It has been suggested that exercise training and probiotic supplementation could decelerate the progress of functional and biochemical deterioration in APP/PS1 transgenic mice (APP/PS1TG). APP/PS1TG mice were subjected to exercise training and probiotic treatments and functional, biochemical and microbiome markers were analyzed. Under these conditions the mice significantly outperformed controls on The Morris Maze Test, and the number of beta-amyloid plaques decreased in the hippocampus. B. thetaiotaomicron levels correlated highly with the results of the Morris Maze Test (p

Male0301 basic medicineGenetically modified mouseAgingalzheimer; exercise; microbiome; probioticsalzheimermicrobiomeMice TransgenicPlaque AmyloidDiseaseHippocampusBiochemistrylaw.inventionAmyloid beta-Protein PrecursorMice03 medical and health sciencesProbiotic0302 clinical medicineEndocrinologyAlzheimer DiseaselawPhysical Conditioning Animalmental disordersPresenilin-1GeneticsAnimalsHippocampus (mythology)MedicineMicrobiomeMolecular BiologyAmyloid beta-Peptidesexercisebusiness.industryMicrobiotaCell BiologyDisease Models Animal030104 developmental biologyprobioticsImmunologybusiness030217 neurology & neurosurgeryExperimental Gerontology
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Sequential BMP7/TGF-β1 signaling and microbiota instruct mucosal Langerhans cell differentiation

2018

Capucha et al. demonstrate that mucosal Langerhans cell (LC) differentiation from pre–dendritic cells and monocytes involves consecutive BMP7 and TGF-β1 signaling in separate anatomical locations. Moreover, mucosal microbiota regulates the development of LCs that in turn shape microbial and immunological homeostasis.

Male0301 basic medicineLangerhans cellBone Morphogenetic Protein 7ImmunologyReceptor Transforming Growth Factor-beta Type IBiologyArticle311Transforming Growth Factor beta1Mice03 medical and health sciencesDownregulation and upregulation319Langerhans cell differentiationmedicineAnimalsHumansImmunology and AllergyLectins C-TypeImmunity MucosalResearch ArticlesBone Morphogenetic Protein Receptors Type IMice KnockoutLamina propriaintegumentary systemMicrobiotaStem CellsMouth MucosaMucous membraneCell DifferentiationEpitheliumUp-RegulationCell biologyMice Inbred C57BLBone morphogenetic protein 7Mannose-Binding Lectins030104 developmental biologymedicine.anatomical_structureLangerhans CellsAntigens SurfaceSignal transductionTranscriptomeSignal TransductionJournal of Experimental Medicine
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The desert gerbil Psammomys obesus as a model for metformin-sensitive nutritional type 2 diabetes to protect hepatocellular metabolic damage: Impact …

2017

Introduction While metformin (MET) is the most widely prescribed antidiabetic drug worldwide, its beneficial effects in Psammomys obesus (P. obesus), a rodent model that mimics most of the metabolic features of human diabetes, have not been explored thoroughly. Here, we sought to investigate whether MET might improve insulin sensitivity, glucose homeostasis, lipid profile as well as cellular redox and energy balance in P. obesus maintained on a high energy diet (HED). Materials and methods P. obesus gerbils were randomly assigned to receive either a natural diet (ND) consisting of halophytic plants (control group) or a HED (diabetic group) for a period of 24 weeks. MET (50 mg/kg per os) was…

Male0301 basic medicinePhysiologymedicine.medical_treatment[SDV]Life Sciences [q-bio]Body-WeightRespiratory chainlcsh:MedicineMitochondria LiverBiochemistrychemistry.chemical_compoundLiver Parenchymal-CellsEndocrinologyGlucose MetabolismAnimal CellsKetogenesisMedicine and Health SciencesElectrochemistryGlucose homeostasisGut Microbiotalcsh:ScienceEnergy-Producing OrganellesComputingMilieux_MISCELLANEOUS2. Zero hungerMultidisciplinaryOrganic CompoundsMonosaccharidesFatty AcidsChemical ReactionsLipidsMetforminMitochondria3. Good healthChemistryPhysiological ParametersLiverPhysical SciencesCarbohydrate MetabolismCellular Structures and OrganellesCellular TypesAnatomyOxidation-ReductionResearch Articlemedicine.medical_specialtyIsolated Rat HepatocytesEndocrine DisordersCarbohydratesBioenergeticsBiologyCarbohydrate metabolism03 medical and health sciencesInsulin resistanceInternal medicineFood-IntakeDiabetes MellitusmedicineAnimalsHypoglycemic AgentsObesityRespiratory-Chain[ SDV ] Life Sciences [q-bio]Fatty acid metabolismInsulinBody WeightOrganic Chemistrylcsh:RChemical CompoundsGluconeogenesisBiology and Life SciencesCell Biologymedicine.diseaseGlucose-6-Phosphate HydrolysisDisease Models AnimalGlucoseMetabolism030104 developmental biologyEndocrinologyDiabetes Mellitus Type 2GluconeogenesischemistryMetabolic DisordersHepatocyteslcsh:QInsulin ResistanceGerbillinaeGlucose-ProductionFatty-Acid-MetabolismOxidation-Reduction Reactions
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Lean NAFLD: A Distinct Entity Shaped by Differential Metabolic Adaptation

2020

Background and Aims: Nonalcoholic fatty liver disease (NAFLD) affects a quarter of the adult population. A significant subset of patients are lean, but their underlying pathophysiology is not well understood. Approach and Results: We investigated the role of bile acids (BAs) and the gut microbiome in the pathogenesis of lean NAFLD. BA and fibroblast growth factor (FGF) 19 levels (a surrogate for intestinal farnesoid X receptor [FXR] activity), patatin-like phospholipase domain containing 3 (PNPLA3), and transmembrane 6 superfamily member 2 (TM6SF2) variants, and gut microbiota profiles in lean and nonlean NAFLD were investigated in a cohort of Caucasian patients with biopsy-proven NAFLD (n …

Male0301 basic medicineReceptors Cytoplasmic and NuclearGut floraMice0302 clinical medicineNon-alcoholic Fatty Liver DiseaseFibrosisNonalcoholic fatty liver diseasebiologyMiddle AgedNAFLD; bile acids; fibrosis; gut microbiota; leanPhospholipases A2 Calcium-IndependentFemale030211 gastroenterology & hepatologyfibrosiAdultmedicine.medical_specialtydigestive systemBile Acids and SaltsCyclic N-Oxides03 medical and health sciencesThinnessInternal medicineNAFLDmedicinebile acidAnimalsHumansbile acidsHepatologygut microbiotabusiness.industryFGF15fibrosisnutritional and metabolic diseasesFGF19leanmedicine.diseasebiology.organism_classificationNAFLD fibrosis lean bile acids gut microbiotadigestive system diseasesGastrointestinal MicrobiomeFibroblast Growth FactorsMice Inbred C57BLDisease Models Animal030104 developmental biologyEndocrinologyFarnesoid X receptorSteatohepatitisbusinessTropanesTM6SF2
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Effect of a Prebiotic Formulation on Frailty Syndrome

2016

Aging can result in major changes in the composition and metabolic activities of bacterial populations in the gastrointestinal system and result in impaired function of the immune system. We assessed the efficacy of prebiotic Darmocare Pre (R) (Bonusan Besloten Vennootschap (BV), Numansdorp, The Netherlands) to evaluate whether the regular intake of this product can improve frailty criteria, functional status and response of the immune system in elderly people affected by the frailty syndrome. The study was a placebo-controlled, randomized, double blind design in sixty older participants aged 65 and over. The prebiotic product was composed of a mixture of inulin plus fructooligosaccharides …

Male0301 basic medicineSarcopeniamedicine.medical_treatmentDiseaseGut floraDISEASElcsh:Chemistrychemistry.chemical_compoundCognition0302 clinical medicineleucocytesMedicinelcsh:QH301-705.5SpectroscopyAged 80 and overfatigue; biomarker; leucocytes; inflammation; agingHand StrengthbiologyGUT MICROBIOTAInulinPHYSICAL-ACTIVITY QUESTIONNAIREGeneral MedicineComputer Science ApplicationsBiomarker (medicine)biomarkerPOPULATIONSFemaleHEALTHmedicine.medical_specialtyFrail ElderlyInulinFrailty syndromePlaceboArticleCatalysisVALIDATIONDIETInorganic Chemistry03 medical and health sciencesDouble-Blind MethodINTESTINAL MICROBIOTAInternal medicineHumansOLDER ADULTSPhysical and Theoretical ChemistryGeriatric AssessmentMolecular BiologyAgedbusiness.industryPrebioticOrganic ChemistryagingCONSUMPTIONbiology.organism_classificationmedicine.diseaseClinical trialPrebiotics030104 developmental biologylcsh:Biology (General)lcsh:QD1-999chemistryinflammationPhysical therapyfatigueSleepbusiness030217 neurology & neurosurgeryInternational Journal of Molecular Sciences
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Levels of predominant intestinal microorganisms in 1 month-old full-term babies and weight gain during the first year of life

2021

The early life gut microbiota has been reported to be involved in neonatal weight gain and later infant growth. Therefore, this early microbiota may constitute a target for the promotion of healthy neonatal growth and development with potential consequences for later life. Unfortunately, we are still far from understanding the association between neonatal microbiota and weight gain and growth. In this context, we evaluated the relationship between early microbiota and weight in a cohort of full-term infants. The absolute levels of specific fecal microorganisms were determined in 88 vaginally delivered and 36 C-section-delivered full-term newborns at 1 month of age and their growth up to 12 …

Male0301 basic medicineStaphylococcusPhysiology<i>Staphylococcus</i>First year of lifeGut flora<i>Enterococcus</i>FecesChild Development0302 clinical medicineMedicineTX341-641Nutrition and DieteticsbiologyinfantsMicrobiotaAge Factorsweight gain3. Good healthIntestinesCohortFemalemedicine.symptomInfantsTerm BirthContext (language use)Article03 medical and health sciences030225 pediatricsmicrobiotaHumansWeight gainFecesFull TermIntestinal microorganismsBacteriaNutrition. Foods and food supplyCesarean Sectionbusiness.industry<i>Bifidobacterium</i>Infant NewbornInfantbiology.organism_classificationGastrointestinal Microbiome030104 developmental biologySpainBifidobacteriumbusinessWeight gainEnterococcusFood Science
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Effect on gut microbiota of a 1-y lifestyle intervention with Mediterranean diet compared with energy-reduced Mediterranean diet and physical activit…

2021

ABSTRACT Background The Mediterranean diet is a well-recognized healthy diet that has shown to induce positive changes in gut microbiota. Lifestyle changes such as diet along with physical activity could aid in weight loss and improve cardiovascular risk factors. Objectives To investigate the effect of an intensive lifestyle weight loss intervention on gut microbiota. Methods This is a substudy of the PREDIMED-Plus (Prevención con Dieta Mediterránea-Plus), a randomized controlled trial conducted in overweight/obese men and women (aged 55–75 y) with metabolic syndrome. The intervention group (IG) underwent an intensive weight loss lifestyle intervention based on an energy-restricted Mediterr…

Male0301 basic medicineWeight lossMediterranean dietNutritional Status Dietary Intake and Body CompositionMedicine (miscellaneous)PhysiologyOverweightGut floraDiet MediterraneanAcademicSubjects/MED00160Feceschemistry.chemical_compound0302 clinical medicineWeight lossRNA Ribosomal 16SMedicinePhylogenyMetabolic SyndromeNutrition and DieteticsbiologyMiddle AgedOriginal Research CommunicationsRNA BacterialFemalemedicine.symptomEnergy restriction030209 endocrinology & metabolismGut microbiotaAcademicSubjects/MED0006003 medical and health sciencesMediterranean dietHumansObesityExerciseLife StyleAgedCaloric RestrictionBacteriabusiness.industryLachnospiraceaemedicine.diseasebiology.organism_classificationObesityGastrointestinal Microbiome030104 developmental biologychemistryGlycated hemoglobinMetabolic syndromeEnergy IntakebusinessThe American Journal of Clinical Nutrition
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