Search results for "Butyrates"

showing 10 items of 78 documents

Priming: getting ready for battle

2006

International audience; Infection of plants by necrotizing pathogens or colonization of plant roots with certain beneficial microbes causes the induction of a unique physiological state called “priming.” The primed state can also be induced by treatment of plants with various natural and synthetic compounds. Primed plants display either faster, stronger, or both activation of the various cellular defense responses that are induced following attack by either pathogens or insects or in response to abiotic stress. Although the phenomenon has been known for decades, most progress in our understanding of priming has been made over the past few years. Here, we summarize the current knowledge of p…

0106 biological sciencesInsectaPhysiology[SDV]Life Sciences [q-bio]beta-Aminobutyric acidPriming (agriculture)01 natural sciencesPlant Physiological Phenomenachemistry.chemical_compoundsalicylic acid.ethylenePlant biology (Botany)0303 health sciencesAminobutyratesJasmonic acidfood and beveragesGeneral MedicinePlantsLife sciencesmycorrhizal fungimycorhizeBiologieSignal Transductionacide jasmoniquesalicylic acidBiologyMicrobiology03 medical and health sciencesβ-aminobutyric acidMycorrhizal fungiAnimalsβ-aminobutyric acid;bacterial lipopolysaccharides;ethylene;jasmonic acid;mycorrhizal fungi;salicylic acid.Plant Physiological Phenomena030304 developmental biologyacide aminobutyriquePlant rootsAbiotic stressjasmonic acidfungiEthylenesCellular defenseImmunity Innateß-aminobutyric acidbacterial lipopolysaccharideschemistryéthylènefungiAgronomy and Crop Science010606 plant biology & botanyMolecular Plant-Microbe Interactions
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Electrospun poly(hydroxybutyrate) scaffolds promote engraftment of human skin equivalents via macrophage M2 polarization and angiogenesis.

2018

Human dermo-epidermal skin equivalents (DE) comprising in vitro expanded autologous keratinocytes and fibroblasts are a good option for massive burn treatment. However, the lengthy expansion time required to obtain sufficient surface to cover an extensive burn together with the challenging surgical procedure limits their clinical use. The integration of DE and biodegradable scaffolds has been proposed in an effort to enhance their mechanical properties. Here, it is shown that poly(hydroxybutyrate) electrospun scaffolds (PHB) present good biocompatibility both in vitro and in vivo and are superior to poly-epsilon-caprolactone electrospun scaffolds as a substrate for skin reconstruction. Impl…

0301 basic medicineKeratinocytesMaleBiocompatibilityAngiogenesisPolymersBiomedical EngineeringMedicine (miscellaneous)HydroxybutyratesNeovascularization PhysiologicHuman skinhuman skin xenograftBiocompatible Materials02 engineering and technologyNodMice SCIDpoly(hydroxybutyrate)Biomaterials03 medical and health sciencesIn vivoMice Inbred NODProhibitinsHuman Umbilical Vein Endothelial CellsAnimalsHumansRats WistarelectrospinningCell ProliferationSkin ArtificialTissue EngineeringTissue ScaffoldsChemistryMacrophagestechnology industry and agricultureCell PolarityCell DifferentiationM2 polarizationDermisSkin Transplantation021001 nanoscience & nanotechnologyM2 MacrophageIn vitro030104 developmental biologyskin equivalentsEpidermis0210 nano-technologyBiomedical engineeringJournal of tissue engineering and regenerative medicine
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Infant gut microbiota modulation by human milk disaccharides in humanized microbiome mice

2021

Human milk glycans present a unique diversity of structures that suggest different mechanisms by which they may affect the infant microbiome development. A humanized mouse model generated by infant fecal transplantation was utilized here to evaluate the impact of fucosyl-α1,3-GlcNAc (3FN), fucosyl-α1,6-GlcNAc, lacto-N-biose (LNB) and galacto-N-biose on the fecal microbiota and host–microbiota interactions. 16S rRNA amplicon sequencing showed that certain bacterial genera significantly increased (Ruminococcus and Oscillospira) or decreased (Eubacterium and Clostridium) in all disaccharide-supplemented groups. Interestingly, cluster analysis differentiates the consumption of fucosyl-oligosacc…

0301 basic medicineMaleBifidobacterium longuminfant fecal microbiotaMicrobiologiaRC799-869Gut floraAcetatesDisaccharidesFecesMice0302 clinical medicinelacto-n-biosefluids and secretionsRuminococcus gnavusRNA Ribosomal 16SEubacteriumgalacto-n–bioseBifidobacteriumbiologyGastroenterologyDiseases of the digestive system. Gastroenterologylacto-N-biosegalacto-N–biosefucosyl-α-1ButyratesInfectious Diseases030211 gastroenterology & hepatologyFemaleResearch ArticleResearch PaperMicrobiology (medical)AdultDNA Bacterialhumanized mouse modelInfants Malaltiesshort-chain fatty acidsMicrobiologyMicrobiology03 medical and health sciencesfucosyl-α-16-N-acetylglucosamineYoung AdultAnimalsHumans6-n-acetylglucosamineMicrobiomeBacteriaMilk HumanRuminococcusInfant NewbornInfantAkkermansiafucosyl-α-13-N-acetylglucosaminebiology.organism_classificationcytokinesGastrointestinal Microbiome3-n-acetylglucosamineMice Inbred C57BL030104 developmental biologyshort-chain fatty acidscytokineshuman milk oligosaccharides
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New waves underneath the purple strain.

2016

Summary Successful merging of chemical and biotechnological operations is essential to achieve cost‐efficient industrialization of bio‐based processes. The demonstration of the use of syngas, derived from microwave assisted pyrolysis of municipal solid waste, for the improved growth and poly‐3‐hydroxybutyrate production in Rhodospirillium rubrum, stands out as an example of the synergistic contribution of chemical engineering and applied microbiology to sustainable biomaterial manufacturing, paving the way to similar applications for other syngas derived bioproducts.

0301 basic medicineMunicipal solid wastelcsh:Biotechnology030106 microbiologyHydroxybutyratesBioengineeringRhodospirillum rubrumSolid WasteApplied Microbiology and BiotechnologyBiochemistryMicrowave assisted12. Responsible consumption03 medical and health sciencesBioproductslcsh:TP248.13-248.65Process engineeringHighlightbusiness.industryBiotechnology030104 developmental biologyBiodegradation EnvironmentalEnvironmental sciencebusinessPyrolysisSyngasBiotechnologyMicrobial biotechnology
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Herbicide glufosinate inhibits yeast growth and extends longevity during wine fermentation.

2017

Glufosinate ammonium (GA) is a widely used herbicide that inhibits glutamine synthetase. This inhibition leads to internal amino acid starvation which, in turn, causes the activation of different nutrient sensing pathways. GA also inhibits the enzyme of the yeast Saccharomyces cerevisiae in such a way that, although it is not used as a fungicide, it may alter yeast performance in industrial processes like winemaking. We describe herein how GA indeed inhibits the yeast growth of a wine strain during the fermentation of grape juice. In turn, GA extends longevity in a variety of growth media. The biochemical analysis indicates that GA partially inhibits the nutrient sensing TORC1 pathway, whic…

0301 basic medicineSaccharomyces cerevisiae ProteinsSaccharomyces cerevisiaelcsh:MedicineWineSaccharomyces cerevisiaeProtein Serine-Threonine KinasesArticle03 medical and health scienceschemistry.chemical_compoundGlutamine synthetaselcsh:ScienceAmino acid synthesisWinemakingchemistry.chemical_classificationFermentation in winemakingMultidisciplinarybiologyHerbicidesAminobutyrateslcsh:Rbiology.organism_classificationYeast030104 developmental biologychemistryBiochemistryGlufosinateFermentationlcsh:QFermentationTranscription FactorsScientific reports
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Regeneration of herbicide-tolerant black locust transgenic plants by SAAT

2003

A protocol based on SAAT (sonication-assisted Agrobacterium-mediated transformation) has been developed to obtain herbicide-resistant transgenic black locust (Robinia pseudoacacia L.) plants. Cotyledon explants were co-cultivated with Agrobacterium AGL1 strain carrying the pTAB16 plasmid (bar and gusA genes). The effects of bacterial concentration (OD550 of 0.3, 0.6, 0.8) and method of infection (sonication vs immersion) on bacterial delivery were determined by assaying cotyledons for transient beta-glucuronidase expression 3 days after infection. SAAT increases transient expression efficiency especially at an OD550 of 0.6. After determining bacterial concentration and infection method, oth…

Acetosyringonefood.ingredientAgrobacteriumPlant ScienceGenetically modified cropsBiologySonicationchemistry.chemical_compoundTransformation GeneticfoodBotanyRegenerationGlucuronidaseAminobutyratesRobiniafood and beveragesGeneral MedicinePlants Genetically Modifiedbiology.organism_classificationCulture MediaPlant LeavesTransformation (genetics)chemistryShootCotyledonAgronomy and Crop ScienceCotyledonRhizobiumExplant cultureTransformation efficiencyPlant Cell Reports
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Effect of gut-derived acetate on glucose turnover in man

1988

1. The effect of acetate absorbed from the gut on glucose turnover has been determined in four healthy subjects during both fasting and an intravenous glucose infusion by using [U-13C]glucose. 2. In the first part of the study, after an overnight fast, a tracer dose of [U-13C]glucose was infused at a constant rate along with an infusion of saline for 7 h. In the second part the saline infusion was replaced by glucose at 4.25 mg min−1 kg−1. In both studies 15 mmol of sodium acetate was given by mouth at 15 min intervals from the fourth to the sixth hour. Glucose turnover, respiratory quotient, metabolic rate and blood levels of acetate, 3-hydroxybutyrate, lactate, insulin, glucagon and gastr…

AdultDietary FiberGlycerolMalemedicine.medical_specialtymedicine.medical_treatmentHydroxybutyratesGastric Inhibitory PolypeptideAcetatesFatty Acids NonesterifiedCarbohydrate metabolismGlucagonAcetic acidchemistry.chemical_compoundGastric inhibitory polypeptideLipid oxidationInternal medicinemedicineHumansInsulinCarbon RadioisotopesAcetic Acid3-Hydroxybutyric AcidChemistryRespirationInsulinGeneral MedicineMetabolismCarbon DioxideGlucagonRespiratory quotientGlucoseEndocrinologyLactatesFemaleClinical Science
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Effect of gut-derived acetate on oral glucose tolerance in man.

1988

1. Dietary fibre has a moderating impact on glucose metabolism. To test the hypothesis that this effect of fibre may be mediated by its breakdown product acetate, oral glucose tolerance tests were carried out in healthy volunteers with and without acetate. 2. Five subjects received 50 g of glucose orally while taking either acetate (15 mmol every 15 min) by mouth or chloride as control. Oral acetate made no detectable difference to glucose tolerance or to levels of free fatty acids, 3-hydroxybutyrate, lactate, insulin, glucagon and gastric inhibitory polypeptide. 3. The 50 g dose of glucose temporarily depressed acetate levels in blood. This was probably due to an interaction between glucos…

AdultDietary FiberMalemedicine.medical_specialtyTime Factorsmedicine.medical_treatmentLumen (anatomy)HydroxybutyratesGastric Inhibitory PolypeptideXyloseCarbohydrate metabolismAcetatesFatty Acids NonesterifiedGlucagonchemistry.chemical_compoundGastric inhibitory polypeptideInternal medicinemedicine3-Hydroxybutyric AcidHumansInsulinGlucose tolerance testmedicine.diagnostic_test3-Hydroxybutyric AcidInsulinGeneral MedicineGlucose Tolerance TestGlucagonEndocrinologyGlucosechemistryLactatesFemaleClinical science (London, England : 1979)
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The effects of prebiotics on microbial dysbiosis, butyrate production and immunity in HIV-infected subjects

2017

Altered interactions between the gut mucosa and bacteria during HIV infection seem to contribute to chronic immune dysfunction. A deeper understanding of how nutritional interventions could ameliorate gut dysbiosis is needed. Forty-four subjects, including 12 HIV+ viremic untreated (VU) patients, 23 antiretroviral therapy-treated (ART(+)) virally suppressed patients (15 immunological responders and 8 non-responders) and 9 HIV- controls (HIV-), were blindly randomized to receive either prebiotics (scGOS/lcFOS/glutamine) or placebo (34/10) over 6 weeks in this pilot study. We assessed fecal microbiota composition using deep 16S rRNA gene sequencing and several immunological and genetic marker…

AdultMale0301 basic medicine030106 microbiologyImmunologyHIV InfectionsInflammationButyrateBiologyGut floraMicrobiologyFeces03 medical and health sciencesIntestinal mucosaImmunityRNA Ribosomal 16SmedicineHumansImmunology and AllergyIntestinal MucosaBacteriaImmunityMiddle AgedPlacebo Effectmedicine.diseasebiology.organism_classificationGastrointestinal MicrobiomeGlutamineButyratesPrebiotics030104 developmental biologyMucosal immunologyDietary SupplementsHost-Pathogen InteractionsImmunologyHIV-1DysbiosisFemalemedicine.symptomDysbiosisMucosal Immunology
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Metabolic adaptation in the human gut microbiota during pregnancy and the first year of life

2018

Abstract Background The relationship between the gut microbiome and the human host is dynamic and we may expect adjustments in microbiome function if host physiology changes. Metatranscriptomic approaches should be key in unraveling how such adjustments occur. Methods We employ metatranscriptomic sequencing analyses to study gene expression in the gut microbiota of infants through their first year of life, and of their mothers days before delivery and one year afterwards. Findings In infants, hallmarks of aerobic metabolism disappear from the microbial metatranscriptome as development proceeds, while the expression of functions related to carbohydrate transport and metabolism increases and …

AdultMale0301 basic medicineResearch paperCarbohydrate transportPregnancy Trimester ThirdPhysiologyFirst year of lifeButyrateGut floraGeneral Biochemistry Genetics and Molecular BiologyFeces03 medical and health sciences0302 clinical medicineBacterial ProteinsPregnancymedicineHumansGutMicrobiomeMetatranscriptomicsPregnancyBacteriabiologySequence Analysis RNAGene Expression ProfilingMicrobiotaInfant NewbornInfantGene Expression Regulation BacterialGeneral MedicineMetabolismLipid Metabolismbiology.organism_classificationmedicine.diseaseIntestinal epitheliumGastrointestinal MicrobiomeButyratesMetabolism030104 developmental biology030220 oncology & carcinogenesisFemaleMaternal AgeEBioMedicine
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