Search results for "MICROBIOTA"

showing 10 items of 500 documents

Bronchial microbiome of severe COPD patients colonised by Pseudomonas aeruginosa

2014

The bronchial microbiome in severe COPD during stability and exacerbation in patients chronically colonised by Pseudomonas aeruginosa (PA), has not been defined. Our objective was to determine the characteristics of the bronchial microbiome of severe COPD patients colonised and not colonised by P. aeruginosa and its changes during exacerbation. COPD patients with severe disease and frequent exacerbations were categorised according to chronic colonisation by P. aeruginosa. Sputum samples were obtained in stability and exacerbation, cultured, and analysed by 16S rRNA gene amplification and pyrosequencing. Sixteen patients were included, 5 of them showing chronic colonisation by P. aeruginosa.…

DNA BacterialMaleMicrobiology (medical)ExacerbationMolecular Sequence DataBronchiBiologymedicine.disease_causeDNA RibosomalArticleMicrobiologyCohort StudiesPulmonary Disease Chronic ObstructiveRNA Ribosomal 16SHaemophilusmedicineCluster AnalysisHumansMicrobiomeMoraxellaPhylogenyAgedAged 80 and overStreptococcusPseudomonas aeruginosaMicrobiotaSputumGeneral MedicineSequence Analysis DNAMiddle Agedbiology.organism_classificationrespiratory tract diseasesColonisationInfectious DiseasesSputumFemalemedicine.symptomEuropean Journal of Clinical Microbiology & Infectious Diseases
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Analysis of microbiota in stable patients with chronic obstructive pulmonary disease

2014

To identify the bacterial diversity (microbiota) in expectorated sputum, a pyrosequencing method that investigates complex microbial communities of expectorated sputum was done in 19 stable chronic obstructive pulmonary disease patients (mean (SD) FEV1: 47 (18%) of predicted value). Using conventional culture, 3 phyla and 20 bacterial genera were identified, whereas the pyrosequencing approach detected 9 phyla and 43 genera (p < 0.001). In sputum the prevalent genera with pyrosequencing approach were Streptococcus, Actinomyces, Neisseria, Haemophilus, Rothia, Fusobacterium, Gemella, Granulicatella, Porphyromonas, Prevotella and Veillonella. Enterobacteriaceae, detected frequently in convent…

DNA BacterialMaleMicrobiology (medical)VeillonellaPolymerase Chain ReactionPathology and Forensic MedicineMicrobiologyPulmonary Disease Chronic ObstructiveRNA Ribosomal 16SHaemophilusPrevotellamedicineHumansImmunology and AllergyProspective StudiesMoraxellaAgedAged 80 and overBacteriabiologyMicrobiotaSputumGeneral MedicineMiddle Agedbiology.organism_classificationBacterial Typing TechniquesMolecular TypingRNA BacterialFusobacteriumGemellaImmunologyMetagenomeSputumFemalemedicine.symptomActinomycesAPMIS
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Sequencing ancient calcified dental plaque shows changes in oral microbiota with dietary shifts of the Neolithic and Industrial revolutions

2013

The importance of commensal microbes for human health is increasingly recognized, yet the impacts of evolutionary changes in human diet and culture on commensal microbiota remain almost unknown. Two of the greatest dietary shifts in human evolution involved the adoption of carbohydrate-rich Neolithic (farming) diets (beginning ∼10,000 years before the present) and the more recent advent of industrially processed flour and sugar (in ∼1850). Here, we show that calcified dental plaque (dental calculus) on ancient teeth preserves a detailed genetic record throughout this period. Data from 34 early European skeletons indicate that the transition from hunter-gatherer to farming shifted the oral m…

Dental PlaqueBiologyDental plaqueArticleCariogenic bacteriaOral MicrobiotaHuman healthGeneticsmedicineHumansIndustrybusiness.industryEcologyCalculus (dental)Mouth MucosaHigh-Throughput Nucleotide Sequencingmedicine.diseaseBiological EvolutionDietstomatognathic diseasesArchaeologyHuman evolutionAgricultureMetagenomicsMetagenomebusinessNature Genetics
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Oral colonization by Levilactobacillus brevis KABPTM-052 and Lactiplantibacillus plantarum KABPTM-051: A Randomized, Double-Blinded, Placebo-Controll…

2021

Background To determine the oral colonization capacity of the strains Levilactobacillus brevis KABPTM-052 (CECT 7480) and Lactiplantibacillus plantarum KABPTM-051 (CECT 7481) in healthy subjects. Material and methods This randomized, double-blinded, placebo-controlled study included 40 volunteers (22 females, 18 males; age range 18-55 years) with healthy gingiva or mild gingivitis, allocated to receiving probiotic chewing gum (n=20) or placebo (n=20) b.i.d for 6 weeks. At baseline and after 6 weeks of treatment, a periodontics specialist collected saliva samples to assess probiotic colonization by qPCR, and analysed dental plaque, gingival index and dental probing pocket depth in Community …

Dental plaque0301 basic medicinemedicine.medical_specialtySalivaPlaca dental030106 microbiologyPlacebo-controlled studyOdontología616.3PlaceboDental plaqueOdontologiaGastroenterologylaw.invention03 medical and health sciencesProbiotic0302 clinical medicinelawInternal medicinePeriodonciamedicineSalivaGeneral DentistryUNESCO:CIENCIAS MÉDICASbusiness.industryProbioticsProbióticos030206 dentistryPeriodontologyBuccal administrationMicrobiota oralmedicine.diseaseProbiòticsPeriodònciastomatognathic diseasesOral microbiotaDentistryPeriodonticsMild gingivitisbusinessJournal of Clinical and Experimental Dentistry
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Instability of the faecal microbiota in diarrhoea-predominant irritable bowel syndrome

2013

The irritable bowel syndrome (IBS) is a functional gastrointestinal disorder with a largely unknown aetiology and a wide range of symptoms. Most cross-sectional studies carried out so far suggest subtle alterations in the structure of the intestinal microbiota that are barely reproduced, partly because of the high inter-subject variation in the community composition and disorder-specific features. We performed a longitudinal study to explore the within-subject variation in the faecal microbiota in two patients with IBS classified into the diarrhoea subtype and the healthy spouse of one of them. Faecal communities were monitored over 6-8 weeks and analysed through metagenomic and metatranscr…

DiarrheaMaleLongitudinal studyColonPhysiologyBiologyApplied Microbiology and BiotechnologyMicrobiologyMicrobiologyIrritable Bowel SyndromeFecesYoung AdultFunctional gastrointestinal disordermedicineHumansMicrobiomeIntestinal MucosaIrritable bowel syndromeAcute diarrhoeaFecesAgedBacteriaEcologyTemporal instabilityMicrobiotaMiddle Agedmedicine.diseaseDiarrheaFemalemedicine.symptomFEMS Microbiology Ecology
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Advanced strategy to exploit wine-making waste by manufacturing antioxidant and prebiotic fibre-enriched vesicles for intestinal health.

2020

Grape extract-loaded fibre-enriched vesicles, nutriosomes, were prepared by combining antioxidant extracts obtained from grape pomaces and a prebiotic, soluble fibre (Nutriose®FM06). The nutriosomes were small in size (from ∼140 to 260 nm), homogeneous (polydispersity index < 0.2) and highly negative (∼ −79 mV). The vesicles were highly stable during 12 months of storage at 25 °C. When diluted with warmed (37 °C) acidic medium (pH 1.2) of high ionic strength, the vesicles only displayed an increase of the mean diameter and a low release of the extract, which were dependent on Nutriose concentration. The formulations were highly biocompatible and able to protect intestinal cells (Caco-2) fro…

Dietary FiberAntioxidantmedicine.medical_treatmentWine02 engineering and technologyGut flora01 natural sciencesAntioxidantsMiceColloid and Surface ChemistryPhospholipid vesiclesFood scienceMice Inbred BALB CSoluble fibre010304 chemical physicsbiologyChemistryVesiclefood and beveragesSurfaces and InterfacesGeneral Medicine021001 nanoscience & nanotechnologyGrape pomaceIntestinal cellsIntestinesHomogeneousFemale0210 nano-technologyBiotechnologyPhospholipid vesiclesCell SurvivalSurface PropertiesGut microbiotaIn vivo studiesAntioxidant activity0103 physical sciencesmedicineAnimalsHumansPrebiotic activityPhysical and Theoretical ChemistryParticle SizeWineWaste ProductsPrebioticfungibiology.organism_classificationGastrointestinal MicrobiomeOxidative StressPrebioticsNutriosomesCaco-2 CellsColloids and surfaces. B, Biointerfaces
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Functional implications of bound phenolic compounds and phenolics–food interaction: A review

2022

Sizeable scientific evidence indicates the health benefits related to phenolic compounds and dietary fiber. Various phenolic compounds-rich foods or ingredients are also rich in dietary fiber, and these two health components may interrelate via noncovalent (reversible) and covalent (mostly irreversible) interactions. Notwithstanding, these interactions are responsible for the carrier effect ascribed to fiber toward the digestive systemand canmodulate the bioaccessibility of phenolics, thus shaping health-promoting effects in vivo. On this basis, the present review focuses on the nature, occurrence, and implications of the interactions between phenolics and food components. Covalent and nonc…

Dietary FiberFood Handlingbound phenolicsAliments AnàlisibioaccessibilityGastrointestinal MicrobiomeAlimentacióBioaccessibility Bound phenolics Gut Microbial transformations MicrobiotaPhenolsmicrobial transformationsSettore AGR/13 - CHIMICA AGRARIASettore AGR/16 - MICROBIOLOGIA AGRARIAmicrobiotagutFood Science
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Soil microbial biomass and bacterial diversity in southern European regions vulnerable to desertification

2022

Abstract Soil functionality is strongly dependent on the soil microbiota, which in turn is affected by soil quality and climate. Among global change factors, desertification is the most threatening ecosystem change affecting southern Europe, but the effects on the soil microbiota are largely unknown. In this study, we investigated soil microbial biomass and bacterial diversity in regions of southern European countries (Spain, Portugal and Italy), most under desertification risk, and related to key soil chemical-physical indicators and land use. Soil microbial biomass was positively related, to soil organic carbon (SOC) but bacterial diversity was negatively correlated with it. pH was the mo…

EcologyGeneral Decision SciencesSemiarid soils Mediterranean Soil core microbiota Climate change Land cover Multi-extremophilic soil bacteriaSemiarid soilsMediterraneanSoil core microbiotaClimate changeLand coverMulti-extremophilic soil bacteriaSettore BIO/19 - Microbiologia Generalecomplex mixturesEcology Evolution Behavior and SystematicsEcological Indicators
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From microbiota toward gastro-enteropancreatic neuroendocrine neoplasms: Are we on the highway to hell?

2020

AbstractGut microbiota is represented by different microorganisms that colonize the intestinal tract, mostly the large intestine, such as bacteria, fungi, archaea and viruses. The gut microbial balance has a key role in several functions. It modulates the host’s metabolism, maintains the gut barrier integrity, participates in the xenobiotics and drug metabolism, and acts as protection against gastro-intestinal pathogens through the host’s immune system modulation. The impaired gut microbiota, called dysbiosis, may be the result of an imbalance in this equilibrium and is linked with different diseases, including cancer. While most of the studies have focused on the association between microb…

Endocrinology Diabetes and MetabolismTumor microenvironment.BiologyGut floraNeuroendocrine tumorsmedicine.disease_causedigestive systemArticle03 medical and health sciences0302 clinical medicineEndocrinologyImmune systemNeuroendocrine tumorGastro-medicineHumansCytokine030304 developmental biologyGastrointestinal NeoplasmsInflammation0303 health sciencesTumor microenvironmentMicrobiotadigestive oral and skin physiologymedicine.diseasebiology.organism_classificationCytokines; Inflammation; Microbiota; Neuroendocrine tumors; Tumor microenvironmentGastrointestinal MicrobiomeTumor microenvironment030220 oncology & carcinogenesisImmunologyDysbiosisCytokinesNeuroendocrine tumorsCarcinogenesisDysbiosisDrug metabolism
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Gut Microbiota, Microbial Metabolites and Human Physical Performance

2021

Trillions of microbes inhabiting the gut modulate the metabolism of the host. Cross-sectional studies have reported associations between physical performance and the gut microbiota (GM). Physical activity seems to increase GM diversity and the abundance of certain health-beneficial microbes. We reviewed the evidence from longitudinal studies on the connection between physically active lifestyle or long-term exercise interventions and the GM. We made literature searches using databases of Web of Science and PubMed Medline to collect human studies showing or not the associations between the GM and exercise. Many controversies exist in the studies. However, the longitudinal studies show that f…

Endocrinology Diabetes and MetabolismsuolistomikrobistoPhysical activityPhysiologyphysical activityReviewpitkittäistutkimusGut floraBiochemistryMicrobiology03 medical and health sciences0302 clinical medicineEndurance traininglongitudinal studieshumanMolecular BiologyBeneficial effectsaineenvaihdunta030304 developmental biology2. Zero hungersuorituskyky0303 health sciencesbiologyExercise interventionHuman studiesgut microbiotakuntoliikuntahealthbiology.organism_classificationQR1-5023. Good healthPhysical performancePopulation study030211 gastroenterology & hepatologyexercise trainingfyysinen aktiivisuusMetabolites
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