Search results for "säteilybiologia"

showing 10 items of 14 documents

Exposure to environmental radionuclides is associated with altered metabolic and immunity pathways in a wild rodent

2019

Wildlife inhabiting environments contaminated by radionuclides face putative detrimental effects of exposure to ionizing radiation, with biomarkers such as an increase in DNA damage and/or oxidative stress commonly associated with radiation exposure. To examine the effects of exposure to radiation on gene expression in wildlife, we conducted a de novo RNA sequencing study of liver and spleen tissues from a rodent, the bank vole Myodes glareolus. Bank voles were collected from the Chernobyl Exclusion Zone (CEZ), where animals were exposed to elevated levels of radionuclides, and from uncontaminated areas near Kyiv, Ukraine. Counter to expectations, we did not observe a strong DNA damage resp…

0106 biological sciences0301 basic medicineRodentDNA Repairmedicine.disease_cause01 natural sciencessäteilybiologiachemistry.chemical_compoundRadiation IonizingMyodes glareolusstable isotopepollutionaineenvaihduntaBeta oxidationradionuclides2. Zero hungerbiologyArvicolinaeFatty AcidsRadiation ExposureRNAseqBank voleMolecular AdaptationLiverimmuunijärjestelmäOriginal ArticleUkraineOxidation-ReductionmetsämyyräDNA damageDNA repair010603 evolutionary biologyMicrobiology03 medical and health sciencesImmunitybiology.animalGeneticsmedicineAnimalsEcology Evolution Behavior and SystematicsRadioisotopesFatty acid metabolismLipid metabolismDNAbiology.organism_classificationLipid MetabolismOxidative Stress030104 developmental biologychemistryChernobyl Nuclear Accident13. Climate actionImmune SystemRNAORIGINAL ARTICLESOxidative stressSpleenDNA DamageMutagens
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Environmental radiation alters the gut microbiome of the bank vole Myodes glareolus.

2018

International audience; Gut microbiota composition depends on many factors, although the impact of environmental pollution is largely unknown. We used amplicon sequencing of bacterial 16S rRNA genes to quantify whether anthropogenic radionuclides at Chernobyl (Ukraine) impact the gut microbiome of the bank vole Myodes glareolus. Exposure to elevated levels of environmental radionuclides had no detectable effect on the gut community richness but was associated with an almost twofold increase in the Firmicutes:Bacteroidetes ratio. Animals inhabiting uncontaminated areas had remarkably similar gut communities irrespective of their proximity to the nuclear power plant. Hence, samples could be c…

0301 basic medicine16STechnologymetsämyyräFirmicutessuolistomikrobisto030106 microbiologyMicrobial metabolismgut microbiomeZoologyFirmicutesEnvironmental pollutionGut floraBrief CommunicationMicrobiologysäteilybiologia03 medical and health sciencesMicrobial ecologyRNA Ribosomal 16SGeneticsAnimalsMicrobiomebank voleLife Below WaterEcology Evolution Behavior and Systematics[SDV.EE]Life Sciences [q-bio]/Ecology environmentRibosomalbiologyBacteriaBacteroidetesArvicolinaeBacteroidetessäteilyBiological Sciencesbiology.organism_classificationGastrointestinal MicrobiomeBank vole030104 developmental biologyChernobyl Nuclear Accident13. Climate actionenvironmental radionuclidesRNACarbohydrate MetabolismEnvironmental SciencesRadioactive Pollutants
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Skin and gut microbiomes of a wild mammal respond to different environmental cues

2018

Background Animal skin and gut microbiomes are important components of host fitness. However, the processes that shape the microbiomes of wildlife are poorly understood, particularly with regard to exposure to environmental contaminants. We used 16S rRNA amplicon sequencing to quantify how exposure to radionuclides impacts the skin and gut microbiota of a small mammal, the bank vole Myodes glareolus, inhabiting areas within and outside the Chernobyl Exclusion Zone (CEZ), Ukraine. Results Skin microbiomes of male bank voles were more diverse than females. However, the most pronounced differences in skin microbiomes occurred at a larger spatial scale, with higher alpha diversity in the skin m…

0301 basic medicineMalesuolistomikrobistoBeta diversityBiodiversityEnvironmental pollutionGut florasäteilybiologiaRNA Ribosomal 16SRadiation IonizingWild mammalSkin2. Zero hungerbiologyGeographyintegumentary systemympäristön saastuminenArvicolinaeionisoiva säteilyBiodiversityPollutionBank volesaastuminenIonising radiationlcsh:QR100-130FemaleMicrobiology (medical)metsämyyräympäristötekijätAnthropogenic impact030106 microbiologyZoologyMicrobiologylcsh:Microbial ecology03 medical and health sciencesMicrobial ecologyAnimalsMicrobiomeRadioisotopesBacteriaResearch15. Life on landbiology.organism_classificationbiodiversiteettiGastrointestinal Microbiome030104 developmental biologymikrobisto13. Climate actionvillieläimetSkin microbiomeAlpha diversityEnvironmental PollutionMicrobiome
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Chronic Background Radiation Correlates With Sperm Swimming Endurance in Bank Voles From Chernobyl

2022

Sperm quantity and quality are key features explaining intra- and interspecific variation in male reproductive success. Spermatogenesis is sensitive to ionizing radiation and laboratory studies investigating acute effects of ionizing radiation have indeed found negative effects of radiation on sperm quantity and quality. In nature, levels of natural background radiation vary dramatically, and chronic effects of low-level background radiation exposure on spermatogenesis are poorly understood. The Chernobyl region offers a unique research opportunity for investigating effects of chronic low-level ionizing radiation on reproductive properties of wild organisms. We captured male bank voles (Myo…

Ecologymetsämyyräionisoiva säteilytaustasäteilylisääntyminensperm morphometrysäteilybiologiareproductionbackground radiationsiittiötMyodes glareolusEcology Evolution Behavior and Systematicsperformancefysiologiset vaikutukset
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Exposure to environmental radionuclides associates with tissue-specific impacts on telomerase expression and telomere length

2019

International audience; Telomeres, the protective structures at the ends of chromosomes, can be shortened when individuals are exposed to stress. In some species, the enzyme telomerase is expressed in adult somatic tissues, and potentially protects or lengthens telomeres. Telomeres can be damaged by ionizing radiation and oxidative stress, although the effect of chronic exposure to elevated levels of radiation on telomere maintenance is unknown for natural populations. We quantified telomerase expression and telomere length (TL) in different tissues of the bank vole Myodes glareolus, collected from the Chernobyl Exclusion Zone, an environment heterogeneously contaminated with radionuclides,…

Male0301 basic medicineTelomerasemetsämyyräSomatic celllcsh:MedicineBiologymedicine.disease_causeArticlesäteilybiologia03 medical and health sciences0302 clinical medicineTelomere HomeostasisDownregulation and upregulationRadiation IonizingTestismedicineAnimalstissuesRadiosensitivitybank volelcsh:ScienceTelomeraseRadioisotopes[SDV.EE]Life Sciences [q-bio]/Ecology environmentMultidisciplinaryArvicolinaeionisoiva säteilylcsh:RTelomere HomeostasisEnvironmental ExposureTelomerebiology.organism_classificationkudoksetTelomereCell biologyBank vole030104 developmental biologyChernobyl Nuclear AccidentGene Expression RegulationLiverOrgan Specificity13. Climate actionlcsh:Qtelomeerit030217 neurology & neurosurgeryOxidative stressScientific Reports
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Fibroblasts from bank voles inhabiting Chernobyl have increased resistance against oxidative and DNA stresses

2018

Background Elevated levels of environmental ionizing radiation can be a selective pressure for wildlife by producing reactive oxygen species and DNA damage. However, the underlying molecular mechanisms that are affected are not known. Results We isolated skin fibroblasts from bank voles (Myodes glareolus) inhabiting the Chernobyl nuclear power plant accident site where background radiation levels are about 100 times greater than in uncontaminated areas. After a 10 Gy dose of gamma radiation fibroblasts from Chernobyl animals recovered faster than fibroblasts isolated from bank voles living in uncontaminated control area. The Chernobyl fibroblasts were able to sustain significantly higher do…

Male0301 basic medicinep53Antioxidantmedicine.medical_treatment010501 environmental sciences01 natural sciencesAntioxidantsIonizing radiationsäteilybiologiachemistry.chemical_classificationCell DeathbiologyArvicolinaelcsh:CytologyBank volefibroblastitOxidantshumanitiesCell biologyAntioxidant capacityBank voleResearch ArticleG2 PhaseCell SurvivalDNA damagemetsämyyräOxidative phosphorylationCell LineMicrobiologyChernobyl03 medical and health sciencesmedicineAnimalsEnvironmental ionizing radiationlcsh:QH573-671Geneoksidatiivinen stressi0105 earth and related environmental sciencesantioksidantitReactive oxygen speciesCell Cycle CheckpointsDNACell BiologyFibroblastsbiology.organism_classificationresistenssiOxidative Stress030104 developmental biologyChernobyl Nuclear AccidentchemistryGamma RaysApoptosisbank volesDNA damageTumor Suppressor Protein p53BMC Cell Biology
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Infection Load and Prevalence of Novel Viruses Identified from the Bank Vole Do Not Associate with Exposure to Environmental Radioactivity

2019

Bank voles (Myodes glareolus) are host to many zoonotic viruses. As bank voles inhabiting areas contaminated by radionuclides show signs of immunosuppression, resistance to apoptosis, and elevated DNA repair activity, we predicted an association between virome composition and exposure to radionuclides. To test this hypothesis, we studied the bank vole virome in samples of plasma derived from animals inhabiting areas of Ukraine (contaminated areas surrounding the former nuclear power plant at Chernobyl, and uncontaminated areas close to Kyiv) that differed in level of environmental radiation contamination. We discovered four strains of hepacivirus and four new virus sequences: two adeno-asso…

Male0301 basic medicinesekvensointiviruksetmetsämyyräenvironmental radiationHepacivirus030106 microbiologylcsh:QR1-502Zoologyadeno-associated virusEnvironmentlcsh:MicrobiologyArticleVirussäteilybiologiaArterivirus03 medical and health sciencesVirologyarterivirusRadioactive contaminationPrevalenceAnimalsHuman viromeplasma viromesbank volebiologyArvicolinaeHost (biology)High-Throughput Nucleotide SequencingViral Loadbiology.organism_classification3. Good healthBank vole030104 developmental biologyInfectious DiseasesNuclear Power PlantsVirusesmosavirusFemalenext-generation sequencingViral loadRadioactive PollutantsViruses
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The effect of chronic low-dose environmental radiation on organ mass of bank voles in the Chernobyl Exclusion Zone

2020

Purpose: Animals are exposed to environmental ionizing radiation (IR) externally through proximity to contaminated soil and internally through ingestion and inhalation of radionuclides. Internal organs can respond to radioactive contamination through physiological stress. Chronic stress can compromise the size of physiologically active organs, but studies on wild mammal populations are scarce. The effects of environmental IR contamination on organ masses was studied by using a wild rodent inhabiting the Chernobyl Exclusion Zone (CEZ). Material and Methods: The masses of brain, heart, kidney, spleen, liver and lung were assessed from bank voles (Myodes glareolus) captured from areas across r…

MaleTime Factorsmetsämyyrähealth care facilities manpower and serviceseducationRadiationEnvironment030218 nuclear medicine & medical imagingIonizing radiationChernobylsäteilybiologia03 medical and health sciencessisäelimet0302 clinical medicineMyodes glareolusIngestionAnimalsRadiology Nuclear Medicine and imagingExclusion zoneradioaktiivinen säteilyluonnonvaraiset eläimethealth care economics and organizationsRadionuclideRadiological and Ultrasound TechnologyInhalationradiocesiumArvicolinaeionisoiva säteilyfungiLow dosefood and beveragesDose-Response Relationship RadiationOrgan Sizewild populationsSoil contaminationChernobyl Nuclear Accident030220 oncology & carcinogenesisEnvironmental chemistryinternal organsEnvironmental scienceFemale
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Irradiation of the head reduces adult hippocampal neurogenesis and impairs spatial memory, but leaves overall health intact in rats.

2021

Treatment of brain cancer, glioma, can cause cognitive impairment as a side‐effect, possibly because it disrupts the integrity of the hippocampus, a structure vital for normal memory. Radiotherapy is commonly used to treat glioma, but the effects of irradiation on the brain are still poorly understood, and other biological effects have not been extensively studied. Here we exposed healthy adult male rats to small and moderate‐dose irradiation of the head. We found no effect of irradiation on systemic inflammation, weight gain or gut microbiota diversity, although it increased the abundance of Bacteroidaceae family, namely Bacteroides genus in the gut microbiota. Irradiation had no effect on…

Malemedicine.medical_specialtysuolistomikrobistoNeurogenesisLong-Term PotentiationHippocampusHippocampal formationSpatial memoryHippocampuscancer treatmentsäteilybiologiaSynapse03 medical and health sciences0302 clinical medicineInternal medicinemedicineAnimalsHumanshippokampusCognitive declinemuisti (kognitio)030304 developmental biologySpatial Memory0303 health scienceslearninggut microbiotasyöpähoidottulehdusin vivo electrophysiologybusiness.industryGeneral NeuroscienceNeurogenesisLong-term potentiationadult hippocampal neurogenesis3. Good healthRatsPlant LeavessädehoitoEndocrinologyinflammationelektrofysiologiaAnimal studieskoe-eläinmallitbusiness030217 neurology & neurosurgeryfysiologiset vaikutuksetneurobiologiaThe European journal of neuroscienceREFERENCES
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Expansion of rDNA and pericentromere satellite repeats in the genomes of bank voles Myodes glareolus exposed to environmental radionuclides

2021

Abstract Altered copy number of certain highly repetitive regions of the genome, such as satellite DNA within heterochromatin and ribosomal RNA loci (rDNA), is hypothesized to help safeguard the genome against damage derived from external stressors. We quantified copy number of the 18S rDNA and a pericentromeric satellite DNA (Msat‐160) in bank voles (Myodes glareolus) inhabiting the Chernobyl Exclusion Zone (CEZ), an area that is contaminated by radionuclides and where organisms are exposed to elevated levels of ionizing radiation. We found a significant increase in 18S rDNA and Msat‐160 content in the genomes of bank voles from contaminated locations within the CEZ compared with animals f…

anthropogenic disturbancemetsämyyräHeterochromatinSatellite DNATšernobylin ydinonnettomuusZoologyMyodes glareolusrDNABiologyGenomeChernobylsäteilybiologia03 medical and health sciencescopy numberMyodes glareolusluonnonvaraiset eläimetchernobylEcology Evolution Behavior and SystematicsQH540-549.5030304 developmental biologyNature and Landscape ConservationOriginal Research0303 health sciencesEcologyionisoiva säteily030302 biochemistry & molecular biologyDNARepetitive RegionsRibosomal RNAbiology.organism_classificationmyodes glareolusSatellite (biology)ionizing radiationGenome architectureEcology and Evolution
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