Search results for "INTESTINAL MICROBIOTA"

showing 10 items of 16 documents

Prebiotic Xylo-Oligosaccharides Ameliorate High-Fat-Diet-Induced Hepatic Steatosis in Rats

2020

Understanding the importance of the gut microbiota (GM) in non-alcoholic fatty liver disease (NAFLD) has raised the hope for therapeutic microbes. We have shown that high hepatic fat content associated with low abundance of Faecalibacterium prausnitzii in humans and, further, the administration of F. prausnitzii prevented NAFLD in mice. Here, we aimed at targeting F. prausnitzii by prebiotic xylo-oligosaccharides (XOS) to treat NAFLD. First, the effect of XOS on F. prausnitzii growth was assessed in vitro. Then, XOS was supplemented or not with high (HFD, 60% of energy from fat) or low (LFD) fat diet for 12 weeks in Wistar rats (n = 10/group). XOS increased F. prausnitzii growth, having onl…

MalesuolistomikrobistoPROGRESSIONBIFIDOBACTERIASTEATOHEPATITISNon-alcoholic Fatty Liver DiseaseCecumDiet Fat-RestrictedaineenvaihduntaFatty Acidsrasvamaksafood and beveragesmitochondriaLiverprebioticBody CompositionBIOPSIESFemaleOxidation-Reductionlcsh:Nutrition. Foods and food supplymitokondriotGlucuronateslcsh:TX341-641Diet High-Fatdigestive systemArticleDYSBIOSISprebiootitINFLAMMATIONLIVER-DISEASEINTESTINAL MICROBIOTAoligosaccharidesoligosakkariditAnimalsRats WistarTriglyceridesfatty livergut microbiotaFaecalibacterium prausnitziinutritional and metabolic diseasesLipid MetabolismGastrointestinal MicrobiomeRatsFAECALIBACTERIUM-PRAUSNITZIIGlucosePrebiotics416 Food Scienceaineenvaihduntatuotteet3111 BiomedicineEnergy IntakeEnergy MetabolismmetabolismNutrients
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Enterobacter cloacae administration induces hepatic damage and subcutaneous fat accumulation in high-fat diet fed mice.

2018

Accumulating evidence indicates that gut microbiota plays a significant role in obesity, insulin resistance and associated liver disorders. Family Enterobacteriaceae and especially Enterobacter cloacae strain B29 have been previously linked to obesity and hepatic damage. The underlying mechanisms, however, remain unclear. Therefore, we comprehensively examined the effects of E. cloacae subsp. cloacae (ATCC® 13047™) administration on host metabolism of mice fed with high-fat diet (HFD). C57BL/6N mice were randomly divided into HFD control, chow control, and E. cloacae treatment groups. The E. cloacae treatment group received live bacterial cells in PBS intragastrically twice a week, every ot…

rasvahapotPathology and Laboratory Medicinerasvat (orgaaniset yhdisteet)ruokavaliotBiochemistryMiceAnimal CellsFibrosislcsh:ScienceImmune ResponseConnective Tissue CellsChemical Reactionsta3141ta3142Lipids3. Good healthPhysical sciencesAdiponectinCellular Typesmedicine.medical_specialtyfatsLipolysisImmunologySubcutaneous FatrasvakudoksetMonomers (Chemistry)glycerolDiet High-Fatta311103 medical and health sciencesSigns and SymptomsEnterobacter cloacaeLipolysisPolymer chemistrylcsh:RBiology and Life SciencesHypertrophymedicine.diseaseReceptor InsulinMice Inbred C57BLBiological Tissue030104 developmental biologyEndocrinologylihavuuslcsh:QGlycerol0301 basic medicinePhysiologyLiver cytologysuolistomikrobistolcsh:MedicineAdipose tissueGut floraMedicine and Health SciencesAdipocytesenterobakteerit2. Zero hungerrasvatMultidisciplinarygastrointestinal microbiotatulehdusbiologyHydrolysisadipose tissueChemistryPhysiological ParametersLiverConnective Tissueembryonic structuresFemaleAnatomymedicine.symptomResearch Articleanimal structuresadipocytesInflammationInsulin resistanceEnterobacteriaceaeDiagnostic MedicineInternal medicinemedicineAnimalsObesityTriglyceridesNutritionurogenital systembusiness.industryBody WeightCell Biologybiology.organism_classificationDietToll-Like Receptor 5Gene Expression RegulationinflammationlipolysisdietbusinessEnterobacter cloacaePLoS ONE
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Therapeutic Opportunities in Intestinal Microbiota–Virus Interactions

2018

The host microbiota has emerged a third player in interactions between hosts and viral pathogens. This opens new possibilities to use different tools to modulate the intestinal microbial composition, aimed at reducing the risk of or treating viral enteric infections.

0301 basic medicineAdultRotavirusIntestinal microbiotavirusesMicrobiologiaHisto-blood group antigensBioengineeringBiologymedicine.disease_causeBiotecnologiaVirusRotavirus InfectionsMicrobiology03 medical and health sciences0302 clinical medicineImmune systemRotavirusmedicineAnimalsHumansSpecific Pathogen Free OrganismCaliciviridae InfectionsHost (biology)ProbioticsGastrointestinal MicrobiomeNorovirusGastrointestinal MicrobiomeSpecific Pathogen-Free OrganismsVirusGastrointestinal Tract030104 developmental biologyCaliciviridae InfectionsChild PreschoolImmune SystemHost-Pathogen InteractionsNorovirus030211 gastroenterology & hepatologyBiotechnology
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Intestinal microbiota mutualism and gastrointestinal diseases

2015

The purpose of this work is to investigate the link between an altered intestinal mcro-biota or dysbiosis and chronic inflammatory disorders, in particular inflammatory bowel disease (IBD). Along with probiotics, faecal microbiota transplantation (FMT) opts to be a promising therapeutic treatment for restoring the bacterial homeostasis of the hu-man intestine and reducing the risk of colorectal carcinogenesis. Microbiota is the com-plex microbial flora that resides in the gut establishing a mutually beneficial relation-ship. Alteration of the microbiota’s composition, termed as dysbiosis, may lead to pathological conditions. Treatment with probiotics can restore the normal commensal flora i…

intestinal microbiota IBD gastrointestinal diseasesSettore MED/18 - Chirurgia Generale
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Metagenomics of human microbiome: beyond 16s rDNA.

2012

Clin Microbiol Infect 2012; 18 (Suppl. 4): 4749 Abstract The gut microbiota presents a symbiotic relationship with the human host playing a beneficial role in human health. Since its establishment, the bacterial community is subjected to the influence of many different factors that shape its composition within each individual. However, an important convergence is observed at functional level in the gut microbiota. A metatranscriptomic study of healthy individuals showed homogeneity in the composition of the active microbiota that increased further at functional level.

Microbiology (medical)intestinal microbiotametabolic functionsBiologyGut floraevolutionary developmentdigestive systemDNA RibosomalHuman healthRNA Ribosomal 16SEpigenetic landscapeHumansmetatranscriptomicsEcologyHuman microbiomeGeneral MedicineSequence Analysis DNA16S ribosomal RNAbiology.organism_classificationInfectious DiseasesEvolutionary biologyMetagenomicsHealthy individualsMetagenomeMetagenomicsTranscriptomeClinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases
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Gut microbiota disturbance during antibiotic therapy: a multi-omic approach

2014

It is known that the gastrointestinal tract (GIT) microbiota responds to different antibiotics in different ways and that while some antibiotics do not induce disturbances of the community, others drastically influence the richness, diversity, and prevalence of bacterial taxa. However, the metabolic consequences thereof, independent of the degree of the community shifts, are not clearly understood. In a recent article, we used an integrative OMICS approach to provide new insights into the metabolic shifts caused by antibiotic disturbance. The study presented here further suggests that specific bacterial lineage blooms occurring at defined stages of antibiotic intervention are mostly associa…

MaleAnabolismAntibioticsGene ExpressionGut floraGastrointestinal FunctionBioinformaticsprokaryotesFecesRNA Ribosomal 16SSystems and Synthetic Biologyhuman fecal microbiota1506MetaproteomicGut Microbiotadatabase2. Zero hungerlong-term impactsGastrointestinal tract0303 health sciencesSysteem en Synthetische Biologiehuman intestinal microbiotabiologyMicrobiotaGastroenterologyBiodiversity3. Good healthAnti-Bacterial AgentsBacterial Typing TechniquesArticle AddendumRNA BacterialInfectious DiseasesMetabolomecommunitymetaproteomicsHuman gut microbiotaMicrobiology (medical)DNA BacterialDisturbance (geology)medicine.drug_classperturbationMetabolomicbeta-LactamsMicrobiologyMicrobiologyresistance03 medical and health sciencesMetagenomicAntibiotic therapyMetabolomemedicineHumans030304 developmental biologyAgedVLAGBacteria030306 microbiologyGene Expression ProfilingColonic MicrofloraAkkermansiaAntibiotic therapybiology.organism_classificationGastrointestinal TractEnterococcusGene Expression RegulationMetaproteomicsMetatranscriptomicGastrointestinal functionmetabolismMeta-Analysis
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Enterococcus hirae and Barnesiella intestinihominis Facilitate Cyclophosphamide-Induced Therapeutic Immunomodulatory Effects.

2016

International audience; The efficacy of the anti-cancer immunomodulatory agent cyclophosphamide (CTX) relies on intestinal bacteria. How and which relevant bacterial species are involved in tumor immunosurveillance, and their mechanism of action are unclear. Here, we identified two bacterial species, Enterococcus hirae and Barnesiella intestinihominis that are involved during CTX therapy. Whereas E. hirae translocated from the small intestine to secondary lymphoid organs and increased the intratumoral CD8/ Treg ratio, B. intestinihominis accumulated in the colon and promoted the infiltration of IFN-gamma-producing gamma delta Tau cells in cancer lesions. The immune sensor, NOD2, limited CTX…

0301 basic medicineRichnessNod2 Signaling Adaptor Proteinmedicine.disease_causeMice0302 clinical medicineEnterococcus hiraeNOD2NeoplasmsIntestine Small[ SDV.IMM ] Life Sciences [q-bio]/ImmunologyImmunology and AllergyGut MicrobiotaCancerbiology3. Good healthImmunosurveillanceInfectious Diseases030220 oncology & carcinogenesisBarnesiella intestinihominis[SDV.IMM]Life Sciences [q-bio]/ImmunologyImmunotherapymedicine.symptomInfectionmedicine.drugCyclophosphamideColonImmunologyTranslocationInflammation03 medical and health sciencesInterferon-gammaImmune systemMonitoring ImmunologicmedicineAnimalsImmunologic FactorsCyclophosphamideInflammationEnterococcus hiraeAntitumor ImmunityBacteriaDendritic CellsTh1 Cellsmedicine.diseasebiology.organism_classificationMice Inbred C57BL030104 developmental biologyIntestinal MicrobiotaImmunologyOvarian cancerImmunologic MemoryImmunity
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The Administration of Escherichia coli Nissle 1917 Ameliorates Development of DSS-Induced Colitis in Mice

2018

The beneficial effects of probiotics on immune-based pathologies such as inflammatory bowel disease (IBD) have been well reported. However, their exact mechanisms have not been fully elucidated. Few studies have focused on the impact of probiotics on the composition of the colonic microbiota. The aim of the present study was to correlate the intestinal anti-inflammatory activity of the probiotic Escherichia coli Nissle 1917 (EcN) in the dextran sodium sulfate (DSS) model of mouse colitis with the changes induced in colonic microbiota populations. EcN prevented the DSSinduced colonic damage, as evidenced by lower disease activity index (DAI) values and colonic weight/length ratio, when compa…

intestinal microbiota0301 basic medicineDSS colitisIntestinal microbiotaProbioticmedicine.disease_causeInflammatory bowel diseaselaw.invention03 medical and health sciencesProbioticImmune systemlawmicroRNAmedicinePharmacology (medical)ColitisEscherichia coliOriginal ResearchPharmacologymicroRNAbusiness.industrylcsh:RM1-950PyrosequencingMicroRNAmedicine.diseasepyrosequencinglcsh:Therapeutics. Pharmacology030104 developmental biologyMechanism of actionImmunologymedicine.symptombusinessDysbiosisprobioticFrontiers in Pharmacology
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Combined Analysis of the Effects of Exposure to Blue Light in Ducks Reveals a Reduction in Cholesterol Accumulation Through Changes in Methionine Met…

2021

Monochromatic light is widely used in industry, medical treatment, and animal husbandry. Green-blue light has been found to stimulate the proliferation of satellite cells and the results of studies on the effects of blue light on poultry vary widely. It would be worthwhile to study the effect of blue light on poultry growth and how exposure to blue light affects metabolism and the intestinal microbiota. In this study, we irradiated Cherry Valley ducks with 460 nm wavelength light (blue light) for 3 weeks to explore the effects of blue light in comparison to those of white light (combined wavelength light) on animal growth and development. Our results showed that, under exposure to blue ligh…

intestinal microbiotaTaurineAntioxidantmedicine.drug_classEndocrinology Diabetes and MetabolismMetabolitemedicine.medical_treatmentchemistry.chemical_compoundmedicinebile acidTX341-641Food scienceNutritionOriginal ResearchNutrition and DieteticsBile acidChemistryCholesterolNutrition. Foods and food supplycholesterolLipid metabolismMetabolismblue lightGlutaminemethionine metabolismFood ScienceFrontiers in Nutrition
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Past, Present, and Future of Gastrointestinal Microbiota Research in Cats

2020

The relationship between microbial community and host has profound effects on the health of animals. A balanced gastrointestinal (GI) microbial population provides nutritional and metabolic benefits to its host, regulates the immune system and various signaling molecules, protects the intestine from pathogen invasion, and promotes a healthy intestinal structure and an optimal intestinal function. With the fast development of next-generation sequencing, molecular techniques have become standard tools for microbiota research, having been used to demonstrate the complex intestinal ecosystem. Similarly to other mammals, the vast majority of GI microbiota in cats (over 99%) is composed of the pr…

Microbiology (medical)Agriculture and Food SciencesDOMESTIC CATFirmicutesPopulationlcsh:QR1-502PROTEINmicrobiomeDiseaseReviewGut floraMicrobiologylcsh:Microbiology03 medical and health sciencesImmunityINTESTINAL MICROBIOTAMicrobiomeBACTERIAL-FLORAfelineBacterial phylaeducation030304 developmental biology0303 health scienceseducation.field_of_studyHEALTHY CATSbiology030306 microbiologyGUT MICROBIOTAGENE-CENTRIC METAGENOMICSbiology.organism_classificationCHAIN FATTY-ACIDSImmunologyFECAL MICROBIOTAgastrointestinal tractProteobacteriaDIETARY SUPPLEMENTATIONnutrition and diseasesmolecular techniquesFrontiers in Microbiology
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