Search results for "BIOTRANSFORMATION"

showing 10 items of 183 documents

Improved co-oxidation of β-carotene to β-ionone using xanthine oxidase-generated reactive oxygen species in a multiphasic system

2007

beta-Ionone, an aroma compound exhibiting flower notes, can be obtained from beta-carotene in a cooxidation system utilizing xanthine oxidase-generated reactive oxygen species (ROS). ROS have to be controlled as, although they can give rise to beta-ionone, they may also degrade it. In this work, the biotransformation of beta-carotene into beta-ionone was investigated in systems containing variable proportions of decane to extract beta-ionone before degradation. The use of 50% or 90% decane resulted in increased production yields. Tween 80, which was added to further improve the production, slightly decreased the reactivity of the medium and the extraction of beta-carotene, but increased the…

Xanthine Oxidasemedicine.medical_treatmentPolysorbatesDecaneIononeModels BiologicalApplied Microbiology and Biotechnologychemistry.chemical_compoundBiotransformationmedicineOrganic chemistryXanthine oxidaseMolecular StructureExtraction (chemistry)CaroteneGeneral Medicinebeta CaroteneXanthineSolventchemistryMolecular MedicineNorisoprenoidsReactive Oxygen SpeciesOxidation-ReductionBiotechnologyNuclear chemistryBiotechnology Journal
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La face visible des microorganismes dénitrifiants

2006

[SDV] Life Sciences [q-bio][SDE] Environmental ScienceshdrBIOTRANSFORMATIONMICROORGANISMES DENITRIFIANTS
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Processing of metals and metalloids by actinobacteria: Cell resistance mechanisms and synthesis of metal(loid)-based nanostructures

2020

Metal(loid)s have a dual biological role as micronutrients and stress agents. A few geochemical and natural processes can cause their release in the environment, although most metal-contaminated sites derive from anthropogenic activities. Actinobacteria include high GC bacteria that inhabit a wide range of terrestrial and aquatic ecological niches, where they play essential roles in recycling or transforming organic and inorganic substances. The metal(loid) tolerance and/or resistance of several members of this phylum rely on mechanisms such as biosorption and extracellular sequestration by siderophores and extracellular polymeric substances (EPS), bioaccumulation, biotransformation, and me…

biogenic nanoscale materials0301 basic medicineMicrobiology (medical)Siderophore010501 environmental sciencesSettore BIO/19 - Microbiologia Generale01 natural sciencesMicrobiologycomplex mixturesActinobacteria03 medical and health sciencesmetal resistance mechanismsBioremediationExtracellular polymeric substanceBiotransformationMetal stress responseVirologyBiogenic nanoscale materialBioprocesslcsh:QH301-705.5Settore CHIM/02 - Chimica Fisica0105 earth and related environmental sciencesbiologyChemistrybiology.organism_classificationActinobacteria030104 developmental biologylcsh:Biology (General)BioaccumulationEnvironmental chemistryMetal resistance mechanismbacteriaMetalloidMetal-based nanostructures
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An in vitro tool to assess cytochrome P450 drug biotransformation-dependent cytotoxicity in engineered HepG2 cells generated by using adenoviral vect…

2011

Many adverse drug reactions leading to hepatotoxicity are caused by the cytochrome P450-dependent activation of non-toxic drugs or chemicals into reactive metabolites. To this end, adenoviruses were used as a tool to efficiently deliver specific CYP genes into cultured cells (i.e., human hepatoma cell line HepG2). Recombinant-defective adenoviral vectors encoding for genes CYP3A4 (Adv-CYP3A4), CYP2E1 (Adv-CYP2E1), CYP2A6 (Adv-CYP2A6) and CYP1A2 (Adv-CYP1A2) were used to confer specific CYP drug metabolic capabilities to HepG2 cells. Upgraded cells transiently expressed single specific cytochrome P450 enzymatic activities in terms of the number of the infecting virus particles used in their …

biologyCYP3A4Cell SurvivalGenetic VectorsCYP1A2Cytochrome P450Hep G2 CellsGeneral MedicineCYP2E1ToxicologyMolecular biologyAdenoviridaeTransduction (genetics)Cytochrome P-450 Enzyme SystemPharmaceutical PreparationsTransduction GeneticToxicity Tests Acutebiology.proteinHumansMTT assayViability assayCytotoxicityBiotransformationToxicology in Vitro
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Acute toxicity of some chlorinated phenols, catechols and cresols to trout.

1981

biologyChemistryTroutHealth Toxicology and MutagenesisCatecholsGeneral MedicineToxicologybiology.organism_classificationPollutionAcute toxicityLethal Dose 50TroutCresolsChlorinated phenolsPhenolsEnvironmental chemistryEcotoxicologyAnimalsBiotransformationSalmonidaeChlorophenolsBulletin of environmental contamination and toxicology
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Isotope Fractionation of Selenium During Fungal Biomethylation by Alternaria alternata

2011

The natural abundance of stable Se isotopes may reflect sources and formation conditions of methylated Se. We aimed at (1) quantifying the degree of methylation of selenate [Se(VI)] and (hydro)selenite [Se(IV)] by the fungus Alternaria alternata at pH 4 and 7 and (2) determining the effects of these different Se sources and pH values on 82Se/76Se ratios (δ82/76Se) in methylselenides. Alternaria alternata was incubated with Se(VI) and Se(IV) in closed microcosms for 11-15 days and additionally with Se(IV) for 3-5 days at 30 °C. We determined Se concentrations and δ82/76Se values in source Se(VI) and Se(IV), media, fungi, and trapped methylselenides. In Se(VI) incubations, methylselenide vola…

biologyIsotopeAlternariachemistry.chemical_elementGeneral ChemistryMethylationFungi imperfectiFractionationChemical Fractionationbiology.organism_classificationMethylationAlternaria alternataSelenateTrace ElementsSeleniumchemistry.chemical_compoundIsotope fractionationIsotopeschemistryEnvironmental chemistryEnvironmental ChemistryBiotransformationSeleniumEnvironmental Science & Technology
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Phenobarbital Induction of UDP-glucosyltransferase Activity in Drosophila melanogaster Meigen

2000

The inducibility of UDP-glucosyltransferase activities towards the exogenous substrates 1-naphthol and 2-naphthol and the endogenous metabolite xanthurenic acid was demonstrated in Drosophila melanogaster Meigen larvae and adults using phenobarbital as an inducer. In adults, a 3.5-fold increase of glucosyltransferase activity toward xanthurenic acid and a 2.0-fold increase of the activity toward exogenous substrates (1-naphthol and 2-naphthol) was found. In larvae, maximum induction of all three UDP-glucosyltransferase activities (2.5-fold and 1.5-fold increase of the activity toward the exogenous and endogenous substrates, respectively) was achieved when insects, reared on solid medium, we…

biologyMetaboliteEndogenybiology.organism_classificationIsozymechemistry.chemical_compoundBiochemistrychemistryBiotransformationInsect SciencemedicineXanthurenic acidPhenobarbitalDrosophila (subgenus)Drosophila melanogasterAgronomy and Crop ScienceEcology Evolution Behavior and Systematicsmedicine.drugJournal of Entomological Science
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Bacterial Bioconversion of Primary Aliphatic and Aromatic Alcohols into Acids: Effects of Molecular Structure and Physico-chemical Conditions

1997

The biotransformation of four alcohol substrates (butanol, 2-methylbutanol, 3-methylbutanol and 2-phenylethanol) into their acids was studied using a strain of Acetobacter aceti. Bioconversion yields depended on the molecular structure of the alcohol. Biotransformation of high concentrations of alcohols was possible until the precursor reached an inhibiting concentration (3.8 g dm -3 for butanol and 3-methylbutanol, 4.2 g dm -3 for 2-methylbutanol). In contrast, biotransformation of 2-phenylethanol decreased when alcohol concentration was higher than 0.3 g dm -3 . Dissolved oxygen concentrations and pH conditions of the medium were important factors in improving bioconversion. Transformatio…

biologyRenewable Energy Sustainability and the EnvironmentBioconversionGeneral Chemical EngineeringButanolOrganic ChemistryAlcoholPrimary alcoholbiology.organism_classificationPollutionInorganic ChemistryButyric acidchemistry.chemical_compoundFuel TechnologychemistryBiotransformationOrganic chemistryAcetobacterWaste Management and DisposalBiotechnologyAcetobacter acetiJournal of Chemical Technology & Biotechnology
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Isolation and characterisation of a bacterial strain degrading the herbicide sulcotrione from an agricultural soil

2011

BACKGROUND: The dissipation kinetics of the herbicide sulcotrione sprayed 4 times on a French soil was studied using a laboratory microcosm approach. An advanced cultivation-based method was then used to isolate the bacteria responsible for biotransformation of sulcotrione. Chromatographic methods were employed as complementary tools to define its metabolic pathway. RESULTS: Soil microflora was able quickly to biotransform the herbicide (DT50 ≈ 8 days). 2-Chloro-4-mesylbenzoic acid, one of its main metabolites, was clearly detected. However, no accelerated biodegradation process was observed. Eight pure sulcotrione-resistant strains were isolated, but only one (1OP) was capable of degrading…

biologyStrain (chemistry)Microbial metabolismGeneral MedicineRibosomal RNAbiology.organism_classification16S ribosomal RNAPseudomonas putidaBiochemistryBiotransformationInsect ScienceBotanyAgronomy and Crop ScienceSoil microbiologyBacteriaPest Management Science
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Interaction of dietary polyphenols and gut microbiota: Microbial metabolism of polyphenols, influence on the gut microbiota, and implications on host…

2020

Abstract The human gastrointestinal tract is inhabited by a vast number of microorganisms that are called as the microbiota. Each individual harbors a unique gut microbial composition, this composition evolves throughout the host's lifetime and it is easily affected by internal or external changes. It has been shown that gut microbiota plays a crucial role in host's health and as this complex community has the ability to interact with each other and with the host's immune system, the presence or absence of some major species can affect the homeostasis. Diet can be considered as one of the pivotal factors in modulating the functionality, integrity, and composition of the gut microbiota as th…

biologygut microbiotaHost (biology)Nutrition. Foods and food supplyMicrobial metabolismGut floraTP368-456biology.organism_classificationdigestive systemFood processing and manufactureMicrobiologyhost healthBiotransformationPolyphenolSettore AGR/13 - CHIMICA AGRARIAgutmicrobiotaTX341-641biotransformation gutmicrobiota host health polyphenolsbiotransformationpolyphenols
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