Search results for "Gut microbiota"

showing 10 items of 113 documents

Valorisation of Persimmon and Blueberry By-Products to Obtain Functional Powders: in vitro Digestion and Fermentation by Gut Microbiota

2020

[EN] Globalization of fruit and vegetable markets generates overproduction, surpluses, and potentially valuable residues. The valorization of these byproducts constitutes a challenge, to ensure sustainability and reintroduce them into the food chain. This work focuses on blueberry and persimmon residues, rich in polyphenols and carotenoids, to obtain powders with high added value to be used as ingredients in food formulation. These powders have been characterized, and the changes in the bioactive compounds in in vitro gastrointestinal digestion have been evaluated. The results indicated that the type of residue, the drying process, as well as the content and type of fiber determine the rele…

0106 biological sciencesbiologyTECNOLOGIA DE ALIMENTOSChemistry010401 analytical chemistryIn vitro digestionfood and beveragesGeneral ChemistryGut microbiotaGut florabiology.organism_classificationIn vitro digestion01 natural sciencesColonic fermentationBioactive compounds0104 chemical sciencesFruit byproductsMetagenomicsColonic fermentationFermentationFood scienceMetagenomicsGeneral Agricultural and Biological SciencesOverproduction010606 plant biology & botany
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Rifampicin treatment of Blattella germanica evidences a fecal transmission route of their gut microbiota

2018

Eukaryotes have established symbiotic relationship with microorganisms, which enables them to accomplish functions that they cannot perform alone. In the German cockroach, Blattella germanica, the obligate endosymbiont Blattabacterium coexists with a rich gut microbiota. The transmission of Blattabacterium is vertical, but little is known about how the gut microbiota colonizes newborn individuals. In this study, we treated B. germanica populations with rifampicin, a broad-spectrum antibiotic, during two generations and analyzed gut bacterial composition and the Blattabacterium load in control and rifampicin-treated populations. Rifampicin exerted a drastic effect on gut microbiota compositi…

0301 basic medicineAdultMalemedicine.drug_class030106 microbiologyAntibioticsPopulationL73 Animal diseasesGut microbiotaGut floraL70 Veterinary science and hygieneL01 Animal husbandryApplied Microbiology and BiotechnologyMicrobiologydigestive systemMicrobiology03 medical and health sciencesBlattabacteriumFecesSymbiosismedicineAnimalsHumanseducationSymbiosisFecesPhylogenyGerman cockroacheducation.field_of_studyEndosymbiontEcologybiologyObligateBlattellidaebiology.organism_classificationAntibiotic treatmentAnti-Bacterial AgentsBacterial Typing TechniquesGastrointestinal MicrobiomeInsect symbiosisRifampinFlavobacteriaceaeMicrobiota transmission
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Gut microbiota and osteoarthritis management: An expert consensus of the European society for clinical and economic aspects of osteoporosis, osteoart…

2019

Berenbaum, Francis/0000-0001-8252-7815; Dennison, Elaine/0000-0002-3048-4961; Bindels, Laure B./0000-0003-3747-3234; Cooper, Cyrus/0000-0003-3510-0709 WOS:000491638300002 PubMed ID: 31437484 The prevalence of osteoarthritis (OA) increases not only because of longer life expectancy but also because of the modern lifestyle, in particular physical inactivity and diets low in fiber and rich in sugar and saturated fats, which promote chronic low-grade inflammation and obesity. Adverse alterations of the gut microbiota (GMB) composition, called microbial dysbiosis, may favor metabolic syndrome and inflammaging, two important components of OA onset and evolution. Considering the burden of OA and t…

0301 basic medicineAgingmedicine.medical_specialtyOsteoporosisPsychological interventionOsteoarthritisGut microbiotaGut floraDysbiosis; Gut microbiota; Inflammaging; Modern diet; Obesity; OsteoarthritisBiochemistry03 medical and health sciences0302 clinical medicineOsteoarthritismedicineAnimalsHumansMusculoskeletal DiseasesObesityModern dietIntensive care medicineMolecular BiologySocieties MedicalInflammationbiologybusiness.industrymedicine.diseasebiology.organism_classificationObesityInflammagingDysbiosiInflammaging ObesityGastrointestinal MicrobiomeEurope030104 developmental biologyNeurologyOsteoporosisDysbiosisObservational studyOsteoarthritiMetabolic syndromebusinessDysbiosis030217 neurology & neurosurgeryBiotechnology
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Potential probiotic salami with dietary fiber modulates metabolism and gut microbiota in a human intervention study

2020

A human intervention in 24 healthy volunteers was performed to test the potential health benefits of a fermented salami with a probiotic Lactobacillus rhamnosus HN001 and added citrus fiber. Anthropometric measurements and blood biochemistry did not show any significant differences between pre- and post-intervention during 4 weeks with a daily intake of 30 g of salami, neither with regular salami (control group) nor with reformulated salami (intervention group). However, the inflammatory markers CRP and TNFα decreased significantly after intervention, suggesting a less inflammatory environment after reformulated salami consumption. Antioxidant plasmatic markers also improved within the inte…

0301 basic medicineAntioxidantConsumptionmedicine.medical_treatmentMedicine (miscellaneous)ButyrateGut microbiotaGut floraSalamiProbioticLactobacillus-rhamnosus hn001law.invention03 medical and health sciencesProbiotic0404 agricultural biotechnologyLactobacillus rhamnosuslawmedicineTX341-641Food science030109 nutrition & dieteticsNutrition and Dieteticsbiologybusiness.industryNutrition. Foods and food supplyCitrus fiberShort chain fatty acids04 agricultural and veterinary sciencesMetabolismbiology.organism_classification040401 food scienceIntervention studiesAntioxidant capacityDietary fiberbusinessMeat-productsFood Science
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Involvement of Gut Microbiota, Microbial Metabolites and Interaction with Polyphenol in Host Immunometabolism

2020

Immunological and metabolic processes are inextricably linked and important for maintaining tissue and organismal health. Manipulation of cellular metabolism could be beneficial to immunity and prevent metabolic and degenerative diseases including obesity, diabetes, and cancer. Maintenance of a normal metabolism depends on symbiotic consortium of gut microbes. Gut microbiota contributes to certain xenobiotic metabolisms and bioactive metabolites production. Gut microbiota-derived metabolites have been shown to be involved in inflammatory activation of macrophages and contribute to metabolic diseases. Recent studies have focused on how nutrients affect immunometabolism. Polyphenols, the seco…

0301 basic medicineAntioxidantmedicine.medical_treatmentAnti-Inflammatory Agentslcsh:TX341-641InflammationReviewGut florametabolic diseasesdigestive systemAntioxidants03 medical and health scienceschemistry.chemical_compound0302 clinical medicineImmunitymedicineHumansSymbiosismetabolitesInflammationNutrition and DieteticsCellular metabolismHost Microbial Interactionsgut microbiotabiologyHost (biology)MacrophagesPolyphenolsfood and beveragesbiology.organism_classificationGastrointestinal Microbiomepolyphenol030104 developmental biologyBiochemistrychemistryPolyphenol030220 oncology & carcinogenesisChronic DiseaseDietary Supplementsmedicine.symptomXenobioticlcsh:Nutrition. Foods and food supplyFood ScienceNutrients
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Germ-free housing conditions do not affect aortic root and aortic arch lesion size of late atherosclerotic low-density lipoprotein receptor-deficient…

2020

The microbiota has been linked to the development of atherosclerosis, but the functional impact of these resident bacteria on the lesion size and cellular composition of atherosclerotic plaques in the aorta has never been experimentally addressed with the germ-free low-density lipoprotein receptor-deficient (Ldlr(-/-)) mouse atherosclerosis model. Here, we report that 16 weeks of high-fat diet (HFD) feeding of hypercholesterolemicLdlr(-/-)mice at germ-free (GF) housing conditions did not impact relative aortic root plaque size, macrophage content, and necrotic core area. Likewise, we did not find changes in the relative aortic arch lesion size. However, late atherosclerotic GFLdlr(-/-)mice …

0301 basic medicineAortic archMalePathologyaortic rootAortic rootaortic archFunctional impactAorta ThoracicHYPERCHOLESTEROLEMIAMice0302 clinical medicineDeficient mouse610 Medicine & healthMice KnockoutBILE-ACIDSCellular compositionMicrobiotaCHOLESTEROLGUT MICROBIOTAGastroenterologyinflammatory markersHousing AnimalPlaque Atheroscleroticmacrophagessmooth muscle cellsInfectious Diseasesgerm-free030211 gastroenterology & hepatologyFemalelipids (amino acids peptides and proteins)SEXTRIMETHYLAMINEmedicine.symptomMicrobiology (medical)medicine.medical_specialty610 Medicine & healthBiologyMETABOLISMlesion sizeMicrobiologyLesion03 medical and health sciencesINFLAMMATIONmedicine.arterymedicineAnimalsGerm-Free LifeHumanslcsh:RC799-869AddendumMice Inbred C57BLDisease Models Animal030104 developmental biologyReceptors LDLlow-density lipoprotein receptor-deficient mouseageLDL receptorlcsh:Diseases of the digestive system. Gastroenterologyatherosclerosis
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Potential benefits of high-added-value compounds from aquaculture and fish side streams on human gut microbiota

2021

Background: Human gut microbiota dysbiosis has been linked to a higher risk of non-communicable diseases (NCDs) such us inflammatory disorders, allergy and obesity. Specific dietary strategies, including the use of specific food supplements targeted to microbiota modulation, have been suggested to be especially relevant in reducing the risk of NCDs. In this regard, marine environment is considered as a pivotal source of nutrients and bioactive compounds such as polyunsaturated fatty acids, polysaccharides and active peptides. These compounds, including algae- (alginate, fucoidan) and animal-derived polysaccharides (chitin, chitosan), among others, have been widely studied. The use of these …

0301 basic medicineAquatic lifeGut microbiotaGut floraFats03 medical and health sciencesHuman healthHuman gutAquaculturePolysaccharidesmedicineFood science2. Zero hungerchemistry.chemical_classification030109 nutrition & dieteticsbiologybusiness.industryProteinmedicine.diseasebiology.organism_classification3. Good healthSide streams030104 developmental biologychemistry13. Climate actionFish <Actinopterygii>businessDysbiosisFood ScienceBiotechnologyPolyunsaturated fatty acid
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Gut Microbiota, Short-Chain Fatty Acids, and Herbal Medicines

2018

As an important source for traditional medical systems such as Ayurvedic medicine and traditional Chinese medicine, herbal medicines have received widespread attentions from all over the world, especially in developing countries. Over the past decade, studies on gut microbiota have generated rich information for understanding how gut microbiota shape the functioning of our body system. In view of the importance of gut microbiota, the researchers engaged in studying herbal medicines have paid more and more attention to gut microbiota and gut microbiota metabolites. Among a variety of gut microbiota metabolites, short-chain fatty acids (SCFAs) have received most attention because of their imp…

0301 basic medicineBody systemPharmacologyAyurvedic medicineTraditional medicinegut microbiotaMini Reviewshort-chain fatty acidslcsh:RM1-950Traditional Chinese medicineBiologyGut florabiology.organism_classificationdigestive system03 medical and health sciencestraditional Chinese medicine030104 developmental biologylcsh:Therapeutics. Pharmacologyherbal medicinesPharmacology (medical)metabolitesMedical systemsFrontiers in Pharmacology
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Gut Microbiota Condition the Therapeutic Efficacy of Trastuzumab in HER2-Positive Breast Cancer.

2021

Abstract Emerging evidence indicates that gut microbiota affect the response to anticancer therapies by modulating the host immune system. In this study, we investigated the impact of gut microbiota on immune-mediated trastuzumab antitumor efficacy in preclinical models of HER2-positive breast cancer and in 24 patients with primary HER2-positive breast cancer undergoing trastuzumab-containing neoadjuvant treatment. In mice, the antitumor activity of trastuzumab was impaired by antibiotic administration or fecal microbiota transplantation from antibiotic-treated donors. Modulation of the intestinal microbiota was reflected in tumors by impaired recruitment of CD4+ T cells and granzyme B–posi…

0301 basic medicineCD4-Positive T-LymphocytesCancer ResearchReceptor ErbB-2medicine.medical_treatmentGut floraGranzymesMice0302 clinical medicineAntineoplastic Agents ImmunologicalTrastuzumabTumor Microenvironmentskin and connective tissue diseasesNeoadjuvant therapybiologyFecal Microbiota TransplantationInterleukin-12Neoadjuvant TherapyAnti-Bacterial AgentsTreatment OutcomeOncology030220 oncology & carcinogenesisStreptomycinCytokinesGut microbiota trastuzumab breast cancerFemaleTaxoidsmedicine.drugBridged-Ring CompoundsBreast NeoplasmsSettore MED/08 - Anatomia PatologicaNitric Oxide03 medical and health sciencesImmune systemBreast cancerVancomycinmedicineAnimalsHumansCyclophosphamideImmunity Mucosalbusiness.industryLachnospiraceaeDendritic cellDendritic CellsTrastuzumabbiology.organism_classificationmedicine.diseaseGastrointestinal Microbiome030104 developmental biologyGranzymeDoxorubicinImmune Systembiology.proteinCancer researchInterferonsbusinessCancer research
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Impact of plant sterols enrichment dose on gut microbiota from lean and obese subjects using TIM-2 in vitro fermentation model

2019

There are scarce data on plant sterols (PS) and gut microbiota relationship. The purpose of this study is to compare the interaction between PS and gut microbiota through in vitro colonic fermentation studies using a validated system (TIM-2) with a PS-enriched dose (similar to 2 g/day) from two sources (food PS-source ingredient and commercial standard) using microbiota from lean and obese populations. Fecal sterols, short chain fatty acids (SCFA) and microbiota composition were determined by GC/MS, IEC, and 16S-sequencing, respectively.PS-feeding decreased coprostanol and ethylcoprostanol concentration and increased the production of acetate and butyrate (mainly with lean microbiota). In a…

0301 basic medicineCHROMATOGRAPHYMedicine (miscellaneous)ButyrateGut microbiotaGut floradigestive systemPlant sterolsNEUTRAL STEROLS03 medical and health sciencesIngredientchemistry.chemical_compoundBUTYRATE0404 agricultural biotechnologyfluids and secretionsTX341-641Food scienceFecesBILE-ACIDS030109 nutrition & dieteticsNutrition and DieteticsbiologyPHYTOSTEROLSCholesterolNutrition. Foods and food supplyCHOLESTEROLHUMANSShort chain fatty acids04 agricultural and veterinary sciencesbiology.organism_classificationCANCER040401 food scienceIn vitroPRODUCTSCoprostanolCHAIN FATTY-ACIDSchemistryFermentationTIM-2 in vitro modelFecal sterolsFood ScienceJournal of Functional Foods
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