Search results for "Imidacloprid"

showing 10 items of 11 documents

Application of matrix solid phase dispersion to the determination of imidacloprid, carbaryl, aldicarb, and their main metabolites in honeybees by liq…

2005

Abstract A method based on matrix solid phase dispersion (MSPD) using C18 as dispersant and dichloromethane–methanol as eluent and liquid chromatography–atmospheric pressure chemical ionization–mass spectrometry (LC–APCI–MS) has been developed for the simultaneous determination of imidacloprid, 6-chloronicotinic acid, carbaryl, aldicarb, aldicarb sulfoxide, and aldicarb sulfone in honeybees. The proposed method was compared with liquid–liquid extraction (LLE) combined with LC–APCI–MS analysis. Spiked blank samples were used as standards to counteract the matrix effect observed in the chromatographic determination. Recovery studies were performed at different fortification levels. Average re…

Matrix (chemical analysis)chemistry.chemical_compoundChromatographyColumn chromatographyAldicarbChemistryLiquid chromatography–mass spectrometryImidaclopridCarbarylExtraction (chemistry)Mass spectrometryAnalytical ChemistryTalanta
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Molecular Basis for Endocrine Disruption by Pesticides Targeting Aromatase and Estrogen Receptor

2020

The intensive use of pesticides has led to their increasing presence in water, soil, and agricultural products. Mounting evidence indicates that some pesticides may be endocrine disrupting chemicals (EDCs), being therefore harmful for the human health and the environment. In this study, three pesticides, glyphosate, thiacloprid, and imidacloprid, were tested for their ability to interfere with estrogen biosynthesis and/or signaling, to evaluate their potential action as EDCs. Among the tested compounds, only glyphosate inhibited aromatase activity (up to 30%) via a non-competitive inhibition or a mixed inhibition mechanism depending on the concentration applied. Then, the ability of the thr…

aromatasemedicine.drug_classHealth Toxicology and Mutagenesislcsh:MedicineEstrogen receptorMixed inhibitionEndocrine Disruptors010501 environmental sciencesPharmacology01 natural sciencesArticle03 medical and health scienceschemistry.chemical_compoundImidaclopridReceptorsmedicineHumansAromataseestrogenic activity030304 developmental biology0105 earth and related environmental sciences0303 health sciencesAromatase inhibitorendocrine disrupting chemicalbiologyAromatase Inhibitorslcsh:RPublic Health Environmental and Occupational HealthEstrogenspesticidesPesticideThiaclopridEstrogenmolecular dynamicsReceptors EstrogenchemistryEstrogenMELN allosteric inhibitionbiology.proteingene reporter assayAromatase; Endocrine disrupting chemical; Estrogen receptor; Estrogenic activity; Gene reporter assay; MELN allosteric inhibition; Molecular dynamics; Neonicotinoids; Pesticides; Aromatase; Aromatase Inhibitors; Estrogens; Humans; Receptors Estrogen; Endocrine Disruptors; Pesticidesneonicotinoidsestrogen receptorInternational Journal of Environmental Research and Public Health
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Uptake and translocation monitoring of imidacloprid to chili and tomato plants by molecularly imprinting extraction - ion mobility spectrometry

2019

Abstract The degradation of imidacloprid in soil and its uptake and translocation to chili and tomato plants was evaluated, as a proof of concept, of the possibilities of the combination of molecularly imprinted polymers (MIPs) and ion mobility spectrometry (IMS) for a fast and sensitive bioprocesses monitoring tool. To do it, a method based on the selective extraction of imidacloprid from soil and plant materials was developed. In the selected conditions, the MIP-IMS procedure provided a recovery of imidacloprid in soil and plant samples from 102 to 114%, for spiked concentration levels from 0.2 to 2.0 μg g−1. Precision of the methodology, expressed as the relative standard deviation (RSD)…

Detection limitChromatographyIon-mobility spectrometryChemistry010401 analytical chemistryRelative standard deviationMolecularly imprinted polymerChromosomal translocation02 engineering and technologyPesticideStandard solution021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesAnalytical Chemistrychemistry.chemical_compoundImidacloprid0210 nano-technologySpectroscopyMicrochemical Journal
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Variation in mortality among populations is higher for pymetrozine than for imidacloprid and spiromesifen inTrialeurodes vaporariorumin greenhouses i…

2014

BACKGROUND Insecticide resistance in Trialeurodes vaporariorum W. is unknown in the species' northern distribution range where it inhabits mainly commercial greenhouses. Resistance development in whiteflies feeding on year-round crops in greenhouses is possible owing to the use of chemical treatments to back up biocontrol. The authors tested the response levels to spiromesifen, pymetrozine and imidacloprid in whiteflies collected from seven greenhouses within a 35 km radius in western Finland. RESULTS All except one (PR) population had LC50 values below the recommended concentrations for the tested compounds. However, some populations showed reduced susceptibility to pymetrozine in comparis…

education.field_of_studybiologyResistance (ecology)PopulationBiological pest controlGreenhouseTrialeurodesGreenhouse whiteflyGeneral MedicineWhiteflybiology.organism_classificationToxicologychemistry.chemical_compoundchemistryImidaclopridInsect ScienceBotanyeducationAgronomy and Crop SciencePest Management Science
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Simultaneous determination of imidacloprid, carbendazim, methiocarb and hexythiazox in peaches and nectarines by liquid chromatography–mass spectrome…

2002

Abstract A liquid chromatographic (LC) atmospheric pressure chemical ionization mass spectrometric (MS) method is described for determining imidacloprid, carbendazim, methiocarb and hexythiazox in peaches and nectarines. The samples were extracted with ethyl acetate and anhydrous sodium sulfate. Recoveries yield for spiking samples were ranged from 64±9% (R.S.D) for carbendazim to 108±14% (R.S.D.) for hexythiazox at the concentration of 0.1 mg kg−1 (n=5). The correlation coefficients were greater than 0.998 over the range between 0.02 and 2 mg kg−1. The limits of quantitation (LOQ) were 0.02 mg kg−1 for all the pesticides. The applicability of the method to detect and quantify imidacloprid,…

ChromatographyMethiocarbPesticide residueCarbendazimEthyl acetateAtmospheric-pressure chemical ionizationPesticideBiochemistryAnalytical Chemistrychemistry.chemical_compoundchemistryLiquid chromatography–mass spectrometryImidaclopridEnvironmental ChemistrySpectroscopyAnalytica Chimica Acta
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Effects of Kaolin on Ophelimus maskelli (Hymenoptera: Eulophidae) in Laboratory and Nursery Experiments

2011

Although recent research has demonstrated that clays provide satisfactory control of some agricultural insect pests, the effect of clays on gall wasps that damage forest trees has not been previously reported. The aim of the current study is to evaluate the effectiveness of the clay kaolin in the laboratory and in the field in reducing the damage caused by the eulophid Ophelimus maskelli (Ashmead) on seedlings of eucalyptus (Eucalyptus L'Hér.) species. In the laboratory, kaolin + wetting agent significantly reduced the percentage of infested leaves and the number of galls per leaf. In the nursery, gall number per leaf was not correlated with leaf area with kaolin + wetting agent but was rel…

WaspsOphelimus maskelliHymenopteraInsect Controlchemistry.chemical_compoundImidaclopridUntreated controlPlant Tumorshemic and lymphatic diseasesBotanyAnimalsGallkaolinOphelimus maskelliEucalyptusEulophidaeEcologybiologyfungifood and beveragesGeneral Medicinegall densitybiology.organism_classificationEucalyptusHorticultureSettore AGR/11 - Entomologia Generale E ApplicatachemistryInsect SciencedamageJournal of Economic Entomology
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Influence of pesticide use in fruit orchards during blooming on honeybee mortality in 4 experimental apiaries

2016

Samples of dead honey bees (Apis mellifera L.) were collected periodically from 4 different locations during citrus and stone fruit trees blooming season to evaluate the potential impact of agrochemicals on honey bee death rate. For the determination of mortality, dead honey bee traps were placed in front of the experimental hives entrance located in areas of intensive agriculture in Valencian Community (Spain). A total of 34 bee samples, obtained along the monitoring period, were analyzed by means of QuEChERS extraction method and screened for 58 pesticides or their degradation products by LC-MS/MS. An average of four pesticides per honey bee sample was detected. Coumaphos, an organophosph…

0106 biological sciencesEnvironmental EngineeringApiary010501 environmental sciencesBiology01 natural sciencesToxicologychemistry.chemical_compoundImidaclopridEnvironmental ChemistryAnimalsPesticidesWaste Management and Disposal0105 earth and related environmental sciencesAcaricideNeonicotinoidCoumaphosAgricultureHoney beePesticideBeesPollution010602 entomologychemistrySpainFruitDimethoateEnvironmental MonitoringScience of the Total Environment 541: 33-41 (2016)
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Quantification of Imidacloprid in Honeybees: Development of a Chemiluminescent ELISA

2010

A Chemiluminescente Enzyme-Linked Immuno-Sorbent Assay (CL-ELISA) for determination and quantification of the fungicide imidacloprid in honeybees was developed in an indirect competitive format. The assay was optimized by determining: the optimal coating conjugate concentration and anti-imidacloprid antiserum dilution, the effect of the incubation time on the competitive step, the tolerance to organic solvents. The IC50 and the limit of detection (LOD) values were 14.8 ng mL-1 and 0.11 ng mL -1, respectively, similar to those of colorimetric ELISA with a calibration range of 0.1 – 2600 ng mL-1. Cross reactivity of some related compounds such as three imidacloprid metabolites, 6-chloro nicot…

Detection limitChromatographyMetaboliteBiochemistry (medical)Clinical BiochemistryIMIDACLOPRIDBiochemistryAcetamipridCHEMILUMINESCENCEAnalytical Chemistrylaw.inventionStandard curvechemistry.chemical_compoundchemistrylawImidaclopridparasitic diseasesElectrochemistrySample preparationELISAHONEYBEESColorimetrySpectroscopyChemiluminescence
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Evaluation of 10 pesticide residues in oranges and tangerines from Valencia (Spain)

2006

Abstract One hundred and sixteen orange and tangerine samples from an agricultural cooperative of the Valencian Community (Spain) were analyzed for bitertanol, carbendazim, hexythiazox, imazalil, imidacloprid, methidathion, methiocarb, pyriproxyfen, thiabendazole, and trichlorfon by liquid chromatography–mass spectrometry (LC–MS) after a conventional multiresidue extraction procedure. Of 52 samples that contained pesticide residues, carbendazim was detected in 27 (51.9%) in the concentration range of 0.02–0.04 mg kg−1, hexythiazox in 22 (42.3%) in the concentration range of 0.02–0.05 mg kg−1, imazalil in 8 (15.0%) in the concentration range of 0.02–1.2 mg kg−1, imidacloprid in 5 (9.6%) in a…

ChromatographyPesticide residueMethiocarbCarbendazimMethidathionPesticideToxicologychemistry.chemical_compoundchemistryImidaclopridmedia_common.cataloged_instanceEuropean unionPyriproxyfenFood ScienceBiotechnologymedia_commonFood Control
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Neonicotinoids in excretion product of phloem-feeding insects kill beneficial insects

2019

Significance The use of insecticides in agriculture is one of the suggested causes of the decline in insect populations. Neonicotinoids are among the most widely used insecticides. However, they have important negative side effects, especially for pollinators and other beneficial insects feeding on floral nectar and pollen. We identified an exposure route: Neonicotinoids reach and kill beneficial insects when they feed on the most abundant carbohydrate source for insects in agroecosystems, honeydew. Honeydew is the excretion product of phloem-feeding hemipteran insects such as aphids, mealybugs, whiteflies, or psyllids. This route of exposure is likely to affect a much wider range of benefi…

0106 biological sciencesHoneydewInsectaPhloemBiology010603 evolutionary biology01 natural sciencesBiological control agentsToxicologyNeonicotinoidschemistry.chemical_compoundPollinatorImidaclopridAnimalsNectarBeneficial insectsLaboratory of EntomologyMultidisciplinaryAgricultural Sciencesbusiness.industryPollinatorsfungiNeonicotinoidPest controlfood and beveragesFeeding BehaviorBiological SciencesPE&RCEnvironmental risk assessmentLaboratorium voor EntomologieSurvival AnalysisCucurbitaceae010602 entomologyHoneydewchemistryThiamethoxamEPSbusinessThiamethoxam
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