Search results for "Intestinal"

showing 10 items of 2024 documents

Review: Effect of Some Components of Milk- and Soy-Based Infant Formulas on Mineral Bioavailability

2001

Infants' high nutritional needs are fulfilled by mother's milk or infant formulas to provide all the necessary nutrients, among them minerals. Minerals uptake depends not only on mineral content but also on their bioavailability which, in turn, is affected by the different components of the infant formulas. An understanding of these effects would help to improve mineral bioavailability. This work reviews the influence of endogenous (proteins and phytates) and added (ascorbic and citric acid) components in infant formulas on the bioavailability of nutritionally important mineral elements (calcium, zinc, iron and copper) and their interactions. Special attention is given to the influence of p…

0301 basic medicinePhytic acid030109 nutrition & dieteticsGeneral Chemical Engineeringchemistry.chemical_element04 agricultural and veterinary sciencesZincCalciumAscorbic acidIndustrial and Manufacturing EngineeringIntestinal absorptionBioavailability03 medical and health scienceschemistry.chemical_compoundNutrientchemistryBiochemistryFood science0405 other agricultural sciencesCitric acid040502 food scienceFood ScienceFood Science and Technology International
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Protease‐activated receptor signaling in intestinal permeability regulation

2019

Protease-activated receptors (PARs) are a unique class of G-protein-coupled transmembrane receptors, which revolutionized the perception of proteases from degradative enzymes to context-specific signaling factors. Although PARs are traditionally known to affect several vascular responses, recent investigations have started to pinpoint the functional role of PAR signaling in the gastrointestinal (GI) tract. This organ is exposed to the highest number of proteases, either from the gut lumen or from the mucosa. Luminal proteases include the host's digestive enzymes and the proteases released by the commensal microbiota, while mucosal proteases entail extravascular clotting factors and the enzy…

0301 basic medicineProteasesCell typeProtease-activated receptorReceptors Proteinase-ActivatedBiologyBiochemistryPermeabilityEpitheliumInflammatory bowel disease03 medical and health sciencesGastrointestinal cancer0302 clinical medicineImmune systemmedicineAnimalsHumansProtease-activated receptorIntestinal MucosaSymbiosisReceptorMolecular BiologyMicrobial proteasesGastrointestinal NeoplasmsClotting factorIntestinal permeabilityCoagulationMicrobiotaEpithelial barrier functionCell BiologyInflammatory Bowel Diseasesmedicine.diseaseIntestinal epitheliumTissue factorGastrointestinal MicrobiomeCell biologyIntestineGastrointestinal TractDisease Models Animal030104 developmental biologyGene Expression RegulationBacterial Translocation030220 oncology & carcinogenesisPeptide HydrolasesSignal Transduction
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Insights into the Structure of the Vip3Aa Insecticidal Protein by Protease Digestion Analysis

2017

Vip3 proteins are secretable proteins from Bacillus thuringiensis whose mode of action is still poorly understood. In this study, the activation process for Vip3 proteins was closely examined in order to better understand the Vip3Aa protein stability and to shed light on its structure. The Vip3Aa protoxin (of 89 kDa) was treated with trypsin at concentrations from 1:100 to 120:100 (trypsin:Vip3A, w:w). If the action of trypsin was not properly neutralized, the results of SDS-PAGE analysis (as well as those with Agrotis ipsilon midgut juice) equivocally indicated that the protoxin could be completely processed. However, when the proteolytic reaction was efficiently stopped, it was revealed t…

0301 basic medicineProteasesHealth Toxicology and MutagenesisSize-exclusion chromatographyBeta sheetBacillus thuringiensislcsh:MedicineBiologyToxicologyCleavage (embryo)ArticleProtein Structure Secondary03 medical and health sciencestrypsin inhibitorsBacterial ProteinsSDS-PAGE artefactprotease stabilitymedicinebacterial secreted proteinsAnimalsTrypsinMode of actionProtein secondary structureVip proteinsIntestinal Secretionslcsh:Rtoxin activationVip proteins; bacterial secreted proteins; toxin activation; proteolytic activation; trypsin inhibitors; <i>Bacillus thuringiensis</i>; SDS-PAGE artefact; protease stabilityTrypsinMolecular biologyLepidoptera030104 developmental biologyBiochemistryproteolytic activationLarvaProteolysisPeptidesAlpha helixmedicine.drugToxins
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Under control: how a dietary additive can restore the gut microbiome and proteomic profile, and improve disease resilience in a marine teleostean fis…

2017

[Background]: The constant increase of aquaculture production and wealthy seafood consumption has forced the industry to explore alternative and more sustainable raw aquafeed materials, and plant ingredients have been used to replace marine feedstuffs in many farmed fish. The objective of the present study was to assess whether plant-based diets can induce changes in the intestinal mucus proteome, gut autochthonous microbiota and disease susceptibility of fish, and whether these changes could be reversed by the addition of sodium butyrate to the diets. Three different trials were performed using the teleostean gilthead sea bream (Sparus aurata) as model. In a first preliminary short-term tr…

0301 basic medicineProteomicsAliments BiotecnologiaProteomeAquaculturemedicine.disease_causechemistry.chemical_compoundFish DiseasesAquacultureSparus aurataFood science2. Zero hungerPathogen challengebiologyDiet VegetarianSodium butyrate04 agricultural and veterinary sciences3. Good healthIntestineslcsh:QR100-130Microbiology (medical)Fish farmingParasitic Diseases AnimalIntestinal parasiteButyrateMicrobiologylcsh:Microbial ecology03 medical and health sciencesIntestinal healthmedicineAnimals14. Life underwaterMicrobiomeMyxozoaNutricióNutritionPeixos Alimentacióbusiness.industryPhotobacteriumResearchEnteromyxum leeiSodium butyratePhotobacteriumbiology.organism_classificationAnimal FeedSea BreamGastrointestinal Microbiome030104 developmental biologychemistry040102 fisheries0401 agriculture forestry and fisheriesButyric AcidMicrobiomebusinessBacteria
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Multi-level integration of environmentally perturbed internal phenotypes reveals key points of connectivity between them

2017

The genotype and external phenotype of organisms are linked by so-called internal phenotypes which are influenced by environmental conditions. In this study, we used five existing -omics datasets representing five different layers of internal phenotypes, which were simultaneously measured in dietarily perturbed mice. We performed 10 pair-wise correlation analyses verified with a null model built from randomized data. Subsequently, the inferred networks were merged and literature mined for co-occurrences of identified linked nodes. Densely connected internal phenotypes emerged. Forty-five nodes have links with all other data-types and we denote them "connectivity hubs." In literature, we fou…

0301 basic medicineProteomicsPhysiologySystems biologyComputational biologyBiologyProteomicslcsh:PhysiologyCorrelation03 medical and health sciences0302 clinical medicineGenotype-phenotype distinctionGastrointestinal tractPhysiology (medical)GenotypeMetabolomicsSystems and Synthetic BiologyHost-Microbe InteractomicsFokkerij & GenomicaTranscriptomicsOriginal ResearchVLAGHost Pathogen Interaction & DiagnosticsGeneticsSysteem en Synthetische BiologieInternal phenotypelcsh:QP1-981Null modelMicrobiotaBacteriologieBacteriologyBacteriology Host Pathogen Interaction & DiagnosticsPhenotypeHost Pathogen Interactie & Diagnostiek030104 developmental biologyBacteriologie Host Pathogen Interactie & DiagnostiekKey (cryptography)Data integrationSystems biology030217 neurology & neurosurgeryAnimal Breeding & Genomics
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Reply to Comment on Huang, X., et al. “Sourdough Fermentation Degrades Wheat Alpha-Amylase/Trypsin Inhibitor (ATI) and Reduces Pro-Inflammatory Activ…

2020

We thank Dr [...]

0301 basic medicineReplyHealth (social science)INTESTINAL INFLAMMATIONTrypsin inhibitoreducationPlant Sciencelcsh:Chemical technologyHealth Professions (miscellaneous)MicrobiologyACTIVATION03 medical and health sciences0302 clinical medicineIntestinal inflammationlcsh:TP1-1185Food science2. Zero hungerbiologyChemistrySourdough fermentationn/a030104 developmental biology416 Food Sciencebiology.protein030211 gastroenterology & hepatologyAlpha-amylaseFood ScienceFoods
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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 interactions between host glycobiology, bacterial microbiota, and viruses in the gut

2018

Rotavirus (RV) and norovirus (NoV) are the major etiological agents of viral acute gastroenteritis worldwide. Host genetic factors, the histo-blood group antigens (HBGA), are associated with RV and NoV susceptibility and recent findings additionally point to HBGA as a factor modulating the intestinal microbial composition. In vitro and in vivo experiments in animal models established that the microbiota enhances RV and NoV infection, uncovering a triangular interplay between RV and NoV, host glycobiology, and the intestinal microbiota that ultimately influences viral infectivity. Studies on the microbiota composition in individuals displaying different RV and NoV susceptibilities allowed th…

0301 basic medicineRotavirus030106 microbiologylcsh:QR1-502MicrobiologiaReviewBiologymedicine.disease_causelcsh:MicrobiologyMicrobiology03 medical and health sciencesSecretorAntigenstomatognathic systemVirologyRotavirusHisto-blood group antigens (HBGAs)medicineAnimalsHumansGlycomicsInfectivityGlycobiologyHost (biology)MicrobiotaNorovirusAcute gastroenteritisGastroenteritisVirusGastrointestinal Tract030104 developmental biologyInfectious DiseasesHost susceptibilityHost-Pathogen InteractionsFucosyltransferase-2 gene (FUT2)NorovirusReceptors VirusMicrobiota composition
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Oral administration of Bifidobacterium bifidum G9-1 alleviates rotavirus gastroenteritis through regulation of intestinal homeostasis by inducing muc…

2017

Human rotavirus (RV) infection is a leading cause of dehydrating diarrhea in infants and young children worldwide. Since therapeutic approaches to RV gastroenteritis are limited to alleviation of dehydration with oral rehydration solutions, more direct approaches to palliate symptoms of RV gastroenteritis are required. Treatments with probiotics have been increasingly recognized as alternative safe and low cost treatments for moderate infectious diarrhea. In this study, Bifidobacterium bifidum G9-1 (BBG9-1), which has been used as an intestinal drug for several decades, was shown to have a remarkable protective effect against RV gastroenteritis in a suckling mice model. As well as prophylac…

0301 basic medicineRotavirusMalabsorptionved/biology.organism_classification_rank.speciesAdministration Orallcsh:MedicinePathology and Laboratory MedicineBiochemistryCecumOral administrationChlorocebus aethiopsMedicine and Health SciencesLarge intestinelcsh:ScienceCecumGastrointestinal tractMice Inbred BALB CMultidisciplinaryGastroenteritisIntestinesDiarrheamedicine.anatomical_structureJejunumSmall Intestinemedicine.symptomAnatomyResearch ArticleDiarrheaGastroenterology and HepatologyRotavirus InfectionsCell Line03 medical and health sciencesSigns and SymptomsDiagnostic MedicineIleummedicineAnimalsBifidobacterium bifidumved/biologybusiness.industryProbioticslcsh:RBiology and Life SciencesProteinsmedicine.diseaseMacaca mulattaSmall intestineGastrointestinal Tract030104 developmental biologyGene Expression RegulationImmunologyMucinlcsh:QBifidobacterium bifidumbusinessDigestive SystemPLoS ONE
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Interaction of Intestinal Bacteria with Human Rotavirus during Infection in Children

2021

The gut microbiota has emerged as a key factor in the pathogenesis of intestinal viruses, including enteroviruses, noroviruses and rotaviruses (RVs), where stimulatory and inhibitory effects on infectivity have been reported. With the aim of determining whether members of the microbiota interact with RVs during infection, a combination of anti-RV antibody labeling, fluorescence-activated cell sorting and 16S rRNA amplicon sequencing was used to characterize the interaction between specific bacteria and RV in stool samples of children suffering from diarrhea produced by G1P[8] RV. The genera Ruminococcus and Oxalobacter were identified as RV binders in stools, displaying enrichments between …

0301 basic medicineRotavirusOxalobacter030106 microbiologyMicrobiologiaGut microbiotaBiologyGut floramedicine.disease_causeBacterisCatalysisRotavirus InfectionsArticleMicrobiologylcsh:ChemistryInorganic Chemistry03 medical and health sciencesAntigenBacterial ProteinsRotavirusRuminococcusmedicineHumansPhysical and Theoretical Chemistrylcsh:QH301-705.5Molecular BiologySpectroscopyInfectivity<i>Ruminococcus</i>gut microbiotaRuminococcusOrganic ChemistryAntibody titerGeneral Medicinebiology.organism_classificationComputer Science ApplicationsGastrointestinal MicrobiomeIntestines030104 developmental biologylcsh:Biology (General)lcsh:QD1-999Child Preschoolbiology.proteinAntibodyCaco-2 CellsBacteriaProtein Binding
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