Search results for "Brominated flame retardant"

showing 5 items of 5 documents

Tetrabromobisphenol A (TBBPA)-stimulated reactive oxygen species (ROS) production in cell-free model using the 2′,7′-dichlorodihydrofluorescein diace…

2016

t Tetrabromobisphenol A (TBBPA) is a widely used brominated flame retardant, applied in a variety of commercial and household products, mainly electronic ones. Since the production of reactive oxygen species (ROS) is considered one of the principal cytotoxicity mechanisms, numerous studies undertake that aspect of TBBPA’s mechanism of action. The present study verifies if the fluorogenic substrate 2′,7′- dichlorodihydrofluorescein diacetate (H2DCFDA) should be used to detect ROS production induced by TBBPA. To determine the ability of TBBPA alone to stimulate the conversion of H2DCFDA to its fluorescent product 2’, 7’- dichlorofluorescein (DCF), we used a cell-free model. In the experiments…

0301 basic medicineDPPHHealth Toxicology and MutagenesisPolybrominated BiphenylsCell-free system03 medical and health scienceschemistry.chemical_compound0302 clinical medicineH2DCFDAFree radicalDichlorofluoresceinEnvironmental ChemistryOrganic chemistryCytotoxicitychemistry.chemical_classificationReactive oxygen speciesCell-Free SystemROSFree Radical ScavengersGeneral MedicineFluoresceinsFree radical scavengerPollutionTBBPA030104 developmental biologychemistryBrominated flame retardantTetrabromobisphenol AReactive Oxygen Species030217 neurology & neurosurgeryResearch ArticleDPPHNuclear chemistryEnvironmental Science and Pollution Research
researchProduct

Can PBDEs affect the pathophysiologic complex of epithelium in lung diseases?

2020

Brominated flame-retardant (BFRs) exposure promotes multiple adverse health outcomes involved in oxidative stress, inflammation, and tissues damage. We investigated BFR effects, known as polybrominated diphenyl ethers (PBDEs) (47, 99 and 209) in an air-liquid-interface (ALI) airway tissue derived from A549 cell line, and compared with ALI culture of primary human bronchial epithelial cells (pHBEC). The cells, exposed to PBDEs (47, 99 and 209) (0.01-1 mu M) for 24 h, were studied for IL-8, Muc5AC and Muc5B (mRNAs and proteins) production, as well as NOX-4 (mRNA) expression. Furthermore, we evaluated tight junction (TJ) integrity by Trans-Epithelial Electrical Resistance (TEER) measurements, …

Lung DiseasesHealth Toxicology and Mutagenesis0208 environmental biotechnology02 engineering and technology010501 environmental sciencesMucin 5ACBROMINATED FLAME RETARDANTSmedicine.disease_cause01 natural sciencesPolybrominated diphenyl ethersPARTICULATE MATTERElectric ImpedanceHalogenated Diphenyl EthersFlame RetardantsInhalationTight junctionAIRWAY MUCUSChemistryGeneral Medicinerespiratory systemPollutionMucin-5BINTRACELLULAR GLUTATHIONEPolybrominated diphenyl ethers; Inflammation; Oxidative stress; Mucins; Epithelial barrier integrity; Rheological propertiesmedicine.anatomical_structureNADPH Oxidase 4medicine.symptomEnvironmental EngineeringInflammationBronchiEXPOSURE SYSTEMTight JunctionsAndrologymedicineEnvironmental ChemistryHumansRheological propertiesPolybrominated diphenyl ether0105 earth and related environmental sciencesAgedInflammationEpithelial barrier integrityPOLYBROMINATED DIPHENYL ETHERSMucinInterleukin-8MucinsPublic Health Environmental and Occupational HealthEpithelial CellsGeneral ChemistryN-ACETYLCYSTEINEEpithelium020801 environmental engineeringrespiratory tract diseasesOxidative StressA549 CellsMucinEX-VIVO MODELOxidative streRespiratory epitheliumAEROSOL-PARTICLESOxidative stressChemosphere
researchProduct

Analytical challenges to determine emerging persistent organic pollutants in aquatic ecosystems

2018

Emerging persistent organic pollutants (ePOPs) include polybrominated diphenyl ethers (PBDEs) and perfluorooctane sulfonyl fluoride/perfluorooctane sulfonate (POSF/PFOS), which are newly listed in the Stockholm Convention. Other ePOPs, which have not been regulated, include organophosphate flame retardants (PFRs), novel brominated flame retardants (NBFRs) and other perfluoroalkyl substances (PFASs). Often ePOPs data related to occurrence, toxicity, impact or environmental behavior are insufficient or inadequate because of the lack of proper analytical methods to obtain them. Thus, a critical review of the analytical procedures proposed in the last six years (2011–2017) for determining ePOPs…

PollutantAquatic ecosystem010401 analytical chemistryExtraction010501 environmental sciences01 natural sciences0104 chemical sciencesAnalytical ChemistryPolybrominated diphenyl ethersPerfluoroalkyl substancesSample treatmentAquatic ecosystemsEnvironmental chemistryOrganophosphorus flame retardantsEnvironmental behaviorEmerging persistent organic pollutantsEnvironmental scienceAnalytical determinationSulfonyl fluorideSpectroscopyNovel brominated flame retardants0105 earth and related environmental sciences
researchProduct

TBBPA causes neurotoxic and the apoptotic responses in cultured mouse hippocampal neurons in vitro

2015

Abstract Background Tetrabromobisphenol A (TBBPA) is a brominated flame retardant widely used in a variety of commercial and household products. TBBPA can become bioaccumulated in human body fluids, and also in different brain regions. The aim of the present study was to determine the viability and apoptosis of cultured mouse hippocampal neurons in vitro after exposure to TBBPA. Additionally, we examined the involvement of ROS generation in the effect of TBBPA. Methods Primary hippocampal neuron cultures were prepared from Swiss mouse embryos on day 17/18 of gestation. The cultures were treated with TBBPA at concentrations ranging from 1 nM to 100 μM for 30 min or 3, 6 or 24 h. To study apo…

Polybrominated BiphenylsApoptosis010501 environmental sciencesHippocampal formationBiology01 natural sciencesHippocampus03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineLactate dehydrogenaseAnimalsCells Cultured0105 earth and related environmental sciencesFlame RetardantsPharmacologyNeuronsDose-Response Relationship DrugGeneral MedicineApoptotic bodyMolecular biologyIn vitrochemistryApoptosisEnvironmental chemistryBrominated flame retardantTetrabromobisphenol A030217 neurology & neurosurgeryIntracellularPharmacological Reports
researchProduct

Bromēto liesmas slāpētāju noteikšana medību gaļas paraugos ar augstas izšķirtspējas masspektrometrijas metodēm

2017

Bromēto liesmas slāpētāju noteikšanas medību gaļas paraugos ar augstas izšķirtspējas masspektrometrijas metodēm. Bāliņš Rolands, zinātniskais vadītājs: Dr. ķīm., Dzintars Začs, konsultante: Ķīm. maģ., doktorante Jekaterina Rjabova. Maģistra darbs, 47 lappuses, 9 attēli, 21 tabula, 30 literatūras avoti, 2 pielikumi. Latviešu valodā. Maģistra darbā ir apkopota literatūra par analizētajiem savienojumiem, to pielietošanu, toksiskumu, izplatību dabā un to analīžu metodēm. Iegūtie rezultāti ir apkopoti tabulu un diagrammu veidā. Darbā tika veikta bromēto liesmas slāpētāju tetrabrom bisfenola A (TBBPA), heksabromciklododekāna (HBCDD) un polibromēto difenil ēteru (PBDEs) noteikšana medījumu gaļas p…

TBBPAMASS SPECTROMETRYHBCDDPBDEsBROMINATED FLAME RETARDANTSĶīmija
researchProduct