Search results for "phthalates"

showing 10 items of 31 documents

Chasing phthalates in tissues of marine turtles from the Mediterranean sea

2018

Tissues from thirteen specimens of marine turtles, one Dermochelys coriacea and twelve Caretta caretta, found dead along the Sicilian coasts in 2016 were analyzed for the presence of phthalates. Four phthalates (DEP, DBP, BBP, and DEHP) were found at different significant concentrations in liver and gonads, while only DBP was found in muscle tissues and at a fourfold lower concentration than other phthalates in Dermochelys coriacea. No traces of DEP were detected in C. caretta tissues where DOTP was also revealed. The presence of phthalates in fat tissue in specimens of C. caretta showed a major prevalence of the most lipophilic phthalates DEHP and DOTP. The total concentration of all analy…

0106 biological sciencesMicroplasticsPhthalic AcidsZoology010501 environmental sciencesBiologyAquatic ScienceOceanography01 natural sciencesDermochelys coriaceaMediterranean seaPhthalatesMediterranean SeaAnimalsGonads0105 earth and related environmental sciencesCaretta caretta010604 marine biology & hydrobiologyMicroplasticSettore CHIM/06 - Chimica OrganicaPollutionTurtlesAdipose TissueLiverPhthalateSample collectionhuman activitiesPlasticsWater Pollutants ChemicalEnvironmental Monitoring
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In vitro cytotoxic effects of DEHP-alternative plasticizers and their primary metabolites on a L929 cell line

2017

IF 4.208; International audience; Phthalic acid esters have been widely used to improve the plasticity of PVC medical devices. They carry a high exposure risk for both humans and the environment in clinical situations. Our study focuses on the cytotoxicity of alternative plasticizers. Postulated primary metabolites were synthesized, not being commercially available. Cytotoxicity assays were performed on L929 murine cells according to the ISO-EN 10993-5 standard design for the biocompatibility of medical devices. The tested concentrations of plasticizers (0.01, 0.05 and 0.1 mg/ml) covered the range likely to be found in biological fluids coming into direct contact with the medical devices. D…

0301 basic medicineEnvironmental EngineeringMetabolite synthesisBiocompatibilityCell SurvivalCytotoxicityHealth Toxicology and MutagenesisMetabolitePhthalic AcidsIn Vitro TechniquesDEHP-alternative plasticizers010501 environmental sciences01 natural sciences[ SDE ] Environmental SciencesMice03 medical and health scienceschemistry.chemical_compoundPhthalatesPlasticizersIn vivoDiethylhexyl PhthalateAnimalsEnvironmental ChemistryOrganic chemistryPolyvinyl ChlorideCytotoxicityCells Cultured0105 earth and related environmental sciences[SDV.MHEP.RSOA] Life Sciences [q-bio]/Human health and pathology/Rhumatology and musculoskeletal systemChromatography[SDV.MHEP.GEG] Life Sciences [q-bio]/Human health and pathology/Geriatry and gerontology[SDV.MHEP.GEG]Life Sciences [q-bio]/Human health and pathology/Geriatry and gerontologyPublic Health Environmental and Occupational HealthPlasticizerPrimary metaboliteEstersGeneral MedicineGeneral ChemistryFibroblastsPollutionIn vitro3. Good healthPhthalic acid030104 developmental biology[SDV.MHEP.RSOA]Life Sciences [q-bio]/Human health and pathology/Rhumatology and musculoskeletal systemchemistryChemosphere
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Exposure to Bisphenol A and Phthalates during Pregnancy and Ultrasound Measures of Fetal Growth in the INMA-Sabadell Cohort

2016

Background: Prenatal exposure to bisphenol A (BPA) and phthalates may affect fetal growth; however, previous findings are inconsistent and based on few studies. Objectives: We assessed whether prenatal exposure to BPA and phthalates was associated with fetal growth in a Spanish birth cohort of 488 mother–child pairs. Methods: We measured BPA and eight phthalates [four di(2-ethylhexyl) phthalate metabolites (DEHPm), mono-benzyl phthalate (MBzP), and three low-molecular-weight phthalate metabolites (LMWPm)] in two spot-urine samples collected during the first and third trimester of pregnancy. We estimated growth curves for femur length (FL), head circumference (HC), abdominal circumference (A…

0301 basic medicineMaleHealth Toxicology and MutagenesisEmbaràsFetal growth010501 environmental sciences01 natural sciencesCohort StudiesFetal DevelopmentBisphenol APhthalatesPregnancyPrenatal exposureFetal growthBirth WeightMaternal-Fetal ExchangeMaternal-fetal exchangePhenols toxicityObstetricsÀcid ftàlicEnvironmental exposureMaternal ExposureCohortChildren's HealthINMA study/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_beingChristian ministryFemaleUltrasonographyAdultmedicine.medical_specialtyAdolescentPhthalic AcidsUltrasonography Prenatal03 medical and health sciencesBisfenol A -- Toxicologia -- EpidemiologiaPhenolsSDG 3 - Good Health and Well-beingmedicineHumansBenzhydryl Compounds0105 earth and related environmental sciencesPregnancybusiness.industryPublic Health Environmental and Occupational HealthInfant NewbornSabadell (Barcelona Spain)Environmental Exposuremedicine.disease030104 developmental biologySpainbusiness
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Risk assessment of exposure to phthalates in breastfeeding women using human biomonitoring

2020

In this study, we assessed the presence of 14 phthalate metabolites in the urine of 104 lactating mothers from Valencia (Spain) who took part in the human biomonitoring project BETTERMILK. Nine of the metabolites studied showed detection frequencies >80%, whereas the rest of the metabolites presented low detection frequencies (<5%). The concentrations ranged from <LoQ to 1291 ng/mL with monoethyl phthalate showing the highest concentration, with a geometric mean of 34.90 ng/mL. In general, the phthalate metabolite levels quantified in the present study were lower than the urinary levels found in previous studies that involved lactating mothers. The consumption of packaged juices and the fre…

AdultEnvironmental EngineeringHealth Toxicology and Mutagenesis0208 environmental biotechnologyBreastfeedingPhthalic AcidsMothers02 engineering and technologyUrine010501 environmental sciencesUrine01 natural sciencesRisk Assessmentchemistry.chemical_compoundPhthalatesEnvironmental healthDiethylhexyl PhthalateBiomonitoringProduct PackagingEnvironmental ChemistryMedicineHumansLactation0105 earth and related environmental sciencesRisk assessmentbusiness.industryData CollectionPublic Health Environmental and Occupational HealthPhthalateGeneral MedicineGeneral ChemistryEnvironmental ExposurePollution020801 environmental engineeringHuman biomonitoringBreast FeedingchemistryMaternal ExposureSpainEnvironmental PollutantsFemaleRisk assessmentbusinessLactating mothersBiological Monitoring
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Long-term results of the use of silicone sheets after diskectomy in the temporomandibular joint: clinical, radiographic and histopathologic findings

1999

The aim of the present study was to evaluate the long-term results of a group of patients who had the disk of the temporomandibular joint (TMJ) removed and permanently replaced by a silicone sheet. The study group comprised 48 patients, treated in the period from 1983 to 1993. In eight patients, the implants had to be removed after an average interval of 5.6 years and they were submitted for histopathological examination. Twenty-five of the 40 patients with silastic implants in place, and five of the 8 patients who had their implants removed, were available for long-term follow-up (mean interval of 7.0 years, SD 2.8 years). Clinical function was rated according to the Helkimo Dysfunction In…

AdultMalemedicine.medical_specialtyTime FactorsJoint ProsthesisRadiographySiliconesPalpationCondylechemistry.chemical_compoundSiliconeRadiography PanoramicTemporomandibular Joint DiscmedicineHumansDimethylpolysiloxanesDiskectomyDevice RemovalAgedChi-Square Distributionmedicine.diagnostic_testPolyethylene Terephthalatesbusiness.industryMiddle AgedSilasticProsthesis FailureTemporomandibular jointSurgerymedicine.anatomical_structureOtorhinolaryngologychemistryFemaleSurgeryHistopathologyOral SurgerybusinessFollow-Up StudiesInternational Journal of Oral and Maxillofacial Surgery
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Biomonitoring of Phthalates, Bisphenols and Parabens in Children: Exposure, Predictors and Risk Assessment

2021

Exposure to emerging contaminants, such as phthalates, bisphenols and parabens in children has been associated with possible neurodevelopment and endocrine alterations. In the present study, the biomonitoring of biomarkers in children (5–12 years old) from the Valencia Region (Spain) have been implemented using urines from the BIOVAL program. More than 75% of the children studied (n = 562) were internally exposed (&gt

Bisphenol AHealth Toxicology and MutagenesisPopulationPhthalic AcidsUrineArticleparabenschemistry.chemical_compoundPhenolsBiomonitoringMedicineHumansBenzhydryl CompoundseducationChildPROPYL PARABENeducation.field_of_studyphthalatesbusiness.industryPublic Health Environmental and Occupational HealthPhthalateRrisk assessmentEnvironmental ExposureurineParabenchemistrybisphenolsEnvironmental chemistryChild PreschoolbiomonitoringMedicineEnvironmental PollutantsRisk assessmentbusinessBiological MonitoringInternational Journal of Environmental Research and Public Health
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Polydimethylsiloxane (silicone rubber) brooch as a personal passive air sampler for semi-volatile organic compounds

2018

Exposure assessments conducted using a personal sampler include the contribution of human activities to exposure that is neglected when using a stationary air sampler. This study evaluated the uptake characteristics and application of the polydimethylsiloxane (PDMS or silicone rubber) brooch as a personal passive air sampler (PPAS) for measuring concentrations of two groups of semi-volatile organic compounds (SVOCs), namely phthalates and organophosphate esters (OPEs), indoors in proximity to the breathing zone. Uptake rates of the PDMS brooch were calibrated against a personal low volume active air sampler (PLV-AAS) co-deployed on each of five study participants working in offices for 8 hs…

Breathing zoneEnvironmental Engineering010504 meteorology & atmospheric sciencesHealth Toxicology and MutagenesisAir sampler010501 environmental sciencesSilicone rubber01 natural scienceschemistry.chemical_compoundSilicone rubber broochPhthalatesPassive air samplerEnvironmental ChemistryHumansDimethylpolysiloxanesIndoor0105 earth and related environmental sciencesInhalation exposureAir PollutantsVolatile Organic CompoundsPolydimethylsiloxanePublic Health Environmental and Occupational HealthGeneral MedicineGeneral ChemistryPollution3. Good healthLow volumechemistry13. Climate actionEnvironmental chemistryCalibrationPDMS broochEnvironmental scienceEnvironmental Monitoring
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Chromogenic Detection of Nerve Agent Mimics by Mass Transport Control at the Surface of Bifunctionalized Silica Nanoparticles

2010

Chemical warfare (CW) agents are toxic chemicals that have been used in several terrorist attacks in recent years. Among CW species, nerve agents are probably the most dangerous; their high toxicity and facile synthesis underscores the need to detect these lethal compounds with quick, reliable procedures. Analytical methods based on enzymatic assays and physical measurements have generally been used to detect these hazards. However, these protocols usually have limitations such as low selectivity, poor portability, and a certain level of complexity. In recent years, several chromogenic and fluorogenic sensors, and reagents for the detection of nerve agents have been described. For instance,…

ChromogenicSilicon dioxidePolyethylene TerephthalatesMolecularly imprinted polymerNanoparticleNanotechnologyGeneral ChemistryGeneral MedicineChromogenic CompoundsSilicon DioxideCatalysischemistry.chemical_compoundchemistryChromogenic CompoundsPhenolsReagentNanoparticlesColorimetryNaked eyeChemical Warfare AgentsSulfhydryl CompoundsColorimetryColoring AgentsCyclobutanesAngewandte Chemie
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The distribution of phthalate esters in indoor dust of Palermo (Italy).

2013

In this work, phthalic acid esters (PAEs): dimethyl phthalate (DMP), diethyl phthalate (DEP), di-n-butyl phthalate, benzyl butyl phthalate, bis(2-ethylhexyl) phthalate, and di-n-octyl phthalate in indoor dust (used as passive sampler) were investigated. The settled dust samples were collected from thirteen indoor environments from Palermo city. A fast and simple method using Soxhlet and GC–MS analysis has been optimized to identify and quantify the phthalates. Total phthalates concentrations in indoor dusts ranged from 269 to 4,831 mg/kg d.w. (d.w. = dry weight). The data show a linear correlation between total PAEs concentration and a single compound content, with the exclusion of the two …

Environmental EngineeringPhthalic AcidsIndoor dust Phthalates esters GC–MS Contaminants ItalyDiethyl phthalateGas Chromatography-Mass SpectrometrySettore CHIM/12 - Chimica Dell'Ambiente E Dei Beni Culturalichemistry.chemical_compoundGeochemistry and PetrologyEnvironmental Science(all)Benzyl butyl phthalateContaminantsEnvironmental ChemistryGC–MSSettore CHIM/01 - Chimica AnaliticaPhthalates estersCitiesGeneral Environmental ScienceWater Science and TechnologyOriginal PaperAir PollutantsChemistryPhthalateDustEstersGeneral MedicineContaminationPhthalic acidIndoor dustItalyEnvironmental chemistryAir Pollution IndoorLinear correlationGas chromatography–mass spectrometryDimethyl phthalateIndoor dustPhthalates estersGC–MSContaminantsItalyEnvironmental Monitoring
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Chemical compounds and toxicological assessments of drinking water stored in polyethylene terephthalate (PET) bottles: A source of controversy review…

2012

A declaration of conformity according to European regulation No. 10/2011 is required to ensure the safety of plastic materials in contact with foodstuffs. This regulation established a positive list of substances that are authorized for use in plastic materials. Some compounds are subject to restrictions and/or specifications according to their toxicological data. Despite this, the analysis of PET reveals some non-intentionally added substances (NIAS) produced by authorized initial reactants and additives. Genotoxic and estrogenic activities in PET-bottled water have been reported. Chemical mixtures in bottled water have been suggested as the source of these toxicological effects. Furthermo…

Environmental EngineeringPlastic materials010501 environmental sciencesmedicine.disease_cause01 natural scienceschemistry.chemical_compoundToxicity TestsPolyethylene terephthalatemedicineSample preparationWaste Management and Disposal0105 earth and related environmental sciencesWater Science and TechnologyCivil and Structural EngineeringWaste managementPolyethylene TerephthalatesChemistryDrinking WaterEcological Modeling010401 analytical chemistryExtraction (chemistry)ContaminationBottled waterPollution6. Clean water0104 chemical sciences3. Good health13. Climate actionEnvironmental chemistryGas chromatography–mass spectrometryWater Pollutants ChemicalGenotoxicityWater Research
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