Search results for "Caenorhabditis elegan"

showing 10 items of 89 documents

Prooxidative chain transfer activity by thiol groups in biological systems

2020

Cysteine is arguably the best-studied biological amino acid, whose thiol group frequently participates in catalysis or ligand binding by proteins. Still, cysteine's unusual biological distribution has remained mysterious, being strikingly underrepresented in transmembrane domains and on accessible protein surfaces, particularly in aerobic life forms (“cysteine anomaly”). Noting that lipophilic thiols have been used for decades as radical chain transfer agents in polymer chemistry, we speculated that the rapid formation of thiyl radicals in hydrophobic phases might provide a rationale for the cysteine anomaly. Hence, we have investigated the effects of dodecylthiol and related compounds in i…

0301 basic medicineFree RadicalsDNA damageLipid peroxidationClinical BiochemistryProtein oxidationBiochemistryLipid peroxidation03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCysteine oxidationAnimalsHumansCysteineSulfhydryl CompoundsCaenorhabditis eleganslcsh:QH301-705.5chemistry.chemical_classificationlcsh:R5-920Organic ChemistryAmino acidTransmembrane domain030104 developmental biologylcsh:Biology (General)Structural biologychemistryBiochemistryThiyl radicalsThiolRadical propagationlcsh:Medicine (General)Protein oxidation030217 neurology & neurosurgeryResearch PaperCysteineRedox Biology
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Probiotic yeast Kluyveromyces marxianus CIDCA 8154 shows anti-inflammatory and anti-oxidative stress properties in in vivo models.

2015

Inflammatory bowel diseases (IBDs) are complex affections with increasing incidence worldwide. Multiple factors are involved in the development and maintenance of the symptoms including enhanced oxidative stress in intestinal mucosa. The conventional therapeutic approaches for IBDs are based on the use anti-inflammatory drugs with important collateral effects and partial efficacy. In the present work we tested the anti-inflammatory capacity of Kluyveromyces marxianus CIDCA 8154 in different models. In vitro, we showed that the pretreatment of epithelial cells with the yeast reduce the levels of intracellular reactive oxygen species. Furthermore, in a murine model of trinitro benzene sulfon…

0301 basic medicineMicrobiology (medical)Malemedicine.drug_class030106 microbiologyBiologymedicine.disease_causeMicrobiologyAnti-inflammatoryMicrobiologylaw.invention03 medical and health sciencesProbioticKluyveromycesMiceIntestinal mucosaKluyveromyces marxianusIn vivolawKluyveromycesmedicineAnimalsHumansCaenorhabditis eleganschemistry.chemical_classificationReactive oxygen speciesMice Inbred BALB CProbioticsAnti-Inflammatory Agents Non-Steroidalbiology.organism_classificationColitisOxidative StresschemistryCaco-2 CellsReactive Oxygen SpeciesHT29 CellsOxidative stressBeneficial microbes
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Ursolic acid enhances stress resistance, reduces ROS accumulation and prolongs life span in C. elegans serotonin-deficient mutants.

2021

Introduction: Depression and anxiety disorders contribute to the global disease burden. Ursolic acid (UA), a natural compound present in many vegetables, fruits and medicinal plants, was tested in vivo for its effect on (1) enhancing resistance to stress and (2) its effect on life span. Methods: The compound was tested for its antioxidant activity in C. elegans. Stress resistance was tested in the heat and osmotic stress assay. Additionally, the influence on normal life span was examined. RT-PCR was used to assess possible serotonin targets. Results: UA prolonged the life span of C. elegans. Additionally, UA significantly lowered reactive oxygen species (ROS). Molecular docking studies, PCR…

0301 basic medicineModels MolecularSerotoninAntioxidantHot TemperatureOsmotic shockmedicine.medical_treatmentLongevityPharmacologyAntioxidants03 medical and health scienceschemistry.chemical_compound0302 clinical medicineUrsolic acidIn vivoOsmotic PressureStress PhysiologicalmedicineAnimalsReceptorCaenorhabditis elegans5-HT receptorchemistry.chemical_classificationReactive oxygen speciesDepressionGeneral MedicineTriterpenesMolecular Docking SimulationDisease Models Animal030104 developmental biologychemistryReceptors SerotoninMutationSerotoninReactive Oxygen Species030217 neurology & neurosurgeryFood ScienceNaphthoquinonesFoodfunction
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Bioactive extracts from persimmon waste: influence of extraction conditions and ripeness

2021

In this work, a bioactive persimmon extract was produced from discarded fruits. A central composite design was used to evaluate the effect of different extraction parameters and ripeness stages of persimmon fruits on the total phenolic content and antioxidant activity of the resulting extracts. Significantly greater phenolic contents were obtained from immature persimmon (IP) fruits. The optimum IP extract with the conditions set by the experimental design was industrially up-scaled and its composition and functional properties were evaluated and compared with those obtained under lab-scale conditions. Both extracts contained significant protein (>20%) and phenolic contents (∼11–27 mg GA/g …

0301 basic medicinePersimmon663/664AntioxidantCentral composite designFood HandlingExtractmedicine.medical_treatmentved/biology.organism_classification_rank.speciesPhenolic contentRipenessAntiviral AgentsAntioxidantsMice03 medical and health sciences0404 agricultural biotechnologyPhenolsAntioxidant activitymedicineAnimalsPersimmon extractFood scienceCaenorhabditis elegansWaste Products030109 nutrition & dieteticsPlant Extractsved/biologyChemistryNorovirusExtraction (chemistry)Proteins04 agricultural and veterinary sciencesGeneral MedicineDiospyros040401 food scienceVirusDisease Models AnimalFruitaToxicityComposition (visual arts)Food ScienceMurine norovirusFood & Function
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Function and Evolution of Nematode RNAi Pathways

2019

Selfish genetic elements, like transposable elements or viruses, are a threat to genomic stability. A variety of processes, including small RNA-based RNA interference (RNAi)-like pathways, has evolved to counteract these elements. Amongst these, endogenous small interfering RNA and Piwi-interacting RNA (piRNA) pathways were implicated in silencing selfish genetic elements in a variety of organisms. Nematodes have several incredibly specialized, rapidly evolving endogenous RNAi-like pathways serving such purposes. Here, we review recent research regarding the RNAi-like pathways of Caenorhabditis elegans as well as those of other nematodes, to provide an evolutionary perspective. We argue tha…

0301 basic medicineSmall RNASmall interfering RNAPiwilcsh:QH426-470nematodePiwi-interacting RNAReviewComputational biologypiRNABiochemistry03 medical and health sciences0302 clinical medicineRNA interference21U RNAGenetics22G RNAGene silencing26G RNAsmall RNAMolecular BiologyCaenorhabditis elegansRdRPbiologyRNAArgonautebiology.organism_classificationArgonautelcsh:Genetics030104 developmental biologysiRNAC. elegans030217 neurology & neurosurgeryNon-Coding RNA
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In vitro versus in vivo compositional landscapes of histone sequence preferences in eucaryotic genomes

2018

Abstract Motivation Although the nucleosome occupancy along a genome can be in part predicted by in vitro experiments, it has been recently observed that the chromatin organization presents important differences in vitro with respect to in vivo. Such differences mainly regard the hierarchical and regular structures of the nucleosome fiber, whose existence has long been assumed, and in part also observed in vitro, but that does not apparently occur in vivo. It is also well known that the DNA sequence has a role in determining the nucleosome occupancy. Therefore, an important issue is to understand if, and to what extent, the structural differences in the chromatin organization between in vit…

0301 basic medicineStatistics and Probabilityved/biology.organism_classification_rank.speciesComputational biologySaccharomyces cerevisiaeGenomeBiochemistryDNA sequencingHistones03 medical and health sciences0302 clinical medicineIn vivoComputational Theory and MathematicNucleosomeAnimalsModel organismCaenorhabditis elegansMolecular BiologySequence (medicine)GenomebiologySettore INF/01 - Informaticaved/biologyComputer Science ApplicationChromatinComputer Science ApplicationsChromatinNucleosomesComputational Mathematics030104 developmental biologyHistoneEukaryotic CellsComputational Theory and Mathematicsbiology.proteinComputer Vision and Pattern RecognitionSequence Analysis030217 neurology & neurosurgery
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Evaluation of Carotenoids Protection Against Oxidative Stress in the Animal Model Caenorhabditis elegans

2019

The nematode Caenorhabditis elegans is a versatile and powerful model organism for animal experimental research and, despite being an invertebrate, displays remarkably similar molecular bases and conserved cellular pathways to those of humans. Oxidative stress is an etiological factor that influences numerous diseases, degenerative processes and aging. C. elegans has revealed as an opportune and feasible organism to investigate the antioxidant effects of different bioactives or complex food matrices, and a number of protocols have been developed by using different oxidative stressors. Carotenoids are recognized as quenchers and scavengers of reactive oxygen species, and many of their relate…

0301 basic medicinechemistry.chemical_classificationReactive oxygen specieseducation.field_of_studyAntioxidantved/biologymedicine.medical_treatmentPopulationved/biology.organism_classification_rank.speciesOxidative phosphorylationBiologymedicine.disease_causebiology.organism_classification03 medical and health sciences030104 developmental biology0302 clinical medicinechemistryBiochemistrymedicineeducationModel organismCarotenoid030217 neurology & neurosurgeryOxidative stressCaenorhabditis elegans
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Heat-Treated Bifidobacterium longum CECT-7347: A Whole-Cell Postbiotic with Antioxidant, Anti-Inflammatory, and Gut-Barrier Protection Properties

2021

Non-viable preparations of probiotics, as whole-cell postbiotics, attract increasing interest because of their intrinsic technological stability, and their functional properties, such as immune system modulation, gut barrier maintenance, and protection against pathogens. However, reports on Bifidobacteria-derived postbiotics remain scarce. This study aims to demonstrate the functional properties of a heat-treated (HT), non-viable, Bifidobacterium longum strain, CECT-7347, a strain previously selected for its anti-inflammatory phenotype and ability to improve biomarkers of intestinal integrity in clinical trials. The study used the nematode Caenorhabditis elegans and HT-29 cell cultures as e…

0301 basic medicinegut-barrierBifidobacterium longumPhysiologymedicine.drug_classClinical Biochemistry<i>Caenorhabditis elegans</i>medicine.disease_causeBiochemistryArticleAnti-inflammatorylaw.invention03 medical and health sciencesProbiotic0302 clinical medicineImmune systemlawpostbioticmedicineCaenorhabditis elegansMolecular BiologyCaenorhabditis elegansanti-inflammatoryBifidobacteriumInnate immune systembiologylcsh:RM1-950<i>Bifidobacterium</i>Cell Biologybiology.organism_classificationCell biologylcsh:Therapeutics. Pharmacology030104 developmental biology030220 oncology & carcinogenesisBifidobacteriumprobioticOxidative stressAntioxidants
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Effect of plant sterol and galactooligosaccharides enriched beverages on oxidative stress and longevity in Caenorhabditis elegans

2020

Abstract This study evaluates the impact of two plant sterol (PS) enriched fruit beverages (0.6 g /100 ml), without (MfB) or with GOS (MfB-G) (1.2 g/100 ml) on the resistance against oxidative stress induced by non-conventional (cholesterol oxidation products (COPs)) and conventional (H2O2) oxidant compounds, as well as their impact on C. elegans longevity. Nematodes fed with both beverages (0.005–0.25%, v/v) showed similar improved oxidative stress resistance against COPs and H2O2. This effect was dependent on daf-16 transcription factor, although GOS showed an additional beneficial effect independent to daf-16. In addition, both beverages extended nematode lifespan, independently of the p…

0301 basic medicinemedia_common.quotation_subjectMutantCholesterol oxidation productsMedicine (miscellaneous)Milk-based fruit beveragesmedicine.disease_causePlant sterols03 medical and health scienceschemistry.chemical_compound0404 agricultural biotechnologyIn vivomedicineTX341-641Caenorhabditis elegansTranscription factorCaenorhabditis elegansmedia_common030109 nutrition & dieteticsNutrition and DieteticsbiologyCholesterolNutrition. Foods and food supplyLongevity04 agricultural and veterinary sciencesbiology.organism_classification040401 food scienceNematodechemistryBiochemistryOxidative stressFood ScienceGalactooligosaccharidesJournal of Functional Foods
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Caenorhabditis elegans as an in vivo model to assess fucoidan bioactivity preventing Helicobacter pylori infection

2020

Currently, Helicobacter pylori is the unique biological carcinogenic agent. The search for antimicrobial alternatives to antibiotics against this pathogen has been categorized as a priority due to the drastic failure associated with current applied antibiotic therapy. The present study assessed the bioactive antimicrobial capability of fucoidan (“Generally Recognized as Safe” approval – European Commission December 2017) from different species of Phaeophyceae algae (Fucus vesiculosus, Undaria pinnatifida, Macrocystis pyrifera) against H. pylori. All the studied fucoidans showed bacteriostatic and bactericidal effects at the studied concentrations [5–100] μg ml−1 and exposure times [0–7 days…

0301 basic medicinemedicine.drug_classAntibioticsPhaeophytaMicrobiologyHelicobacter Infections03 medical and health scienceschemistry.chemical_compound0302 clinical medicineNutraceuticalAnti-Infective AgentsIn vivoPolysaccharidesGenerally recognized as safemedicineAnimalsCaenorhabditis elegansPathogenbiologyHelicobacter pyloriFucoidanGeneral MedicineHelicobacter pyloribiology.organism_classificationAntimicrobial3. Good healthDisease Models Animal030104 developmental biologychemistry030220 oncology & carcinogenesisFood Science
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