Search results for "SOLID-PHASE MICROEXTRACTION"

showing 10 items of 91 documents

Sex pheromone identified after solid phase microextraction from tergal glands of female alates in Cornitermes bequaerti (Isoptera, Nasutitermitinae)

2002

For the first time, a termite sex pheromone secreted by tergal glands has been isolated and identified. In the mandibulate nasute termite Cornitermes bequaerti, pairing of swarming imagoes is mediated by a sex pheromone secreted by females from their tergal glands. These well developed sexual glands located in front of tergites 8, 9, 10 are essentially composed of class 1 and 2 cells, but also of some glandular units of class 3 cells. The major volatile compound of tergal secretion was isolated by solid phase microextraction (SPME) and identified by GC-MS as (3Z, 6Z, 8E)-dodecatrien-1-ol. Sex attraction bioassays with synthetic (3Z, 6Z, 8E)-dodecatrien-1-ol showed that this alcohol was the …

0106 biological sciencesCornitermes bequaerti[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process EngineeringSwarming (honey bee)ZoologyAlateAnatomyBiology[SDV.IDA] Life Sciences [q-bio]/Food engineeringSolid-phase microextraction010603 evolutionary biology01 natural sciencesAttraction010602 entomologyCellular originInsect ScienceSex pheromone[SDV.IDA]Life Sciences [q-bio]/Food engineering[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringEcology Evolution Behavior and SystematicsComputingMilieux_MISCELLANEOUS
researchProduct

Determination of meropenem in endotracheal tubes by in-tube solid phase microextraction coupled to capillary liquid chromatography with diode array d…

2017

Meropenem is a widely used antimicrobial for the treatment of infections associated with the use of invasive medical devices in intensive care unit patients. These treatments are not always effective, in fact, in-vitro studies have demonstrated the difficulty of antimicrobials to penetrate into the biofilm, however in-vivo studies of the effect of these compounds is a trend, mostly because of the complexity of pulmonary samples extracted from ETTs. Therefore, the objective of this study was to evaluate in-tube solid phase microextraction (in-tube SPME) coupled to capillary liquid chromatography (CapLC) with DAD to determine meropenem in Errs in order to estimate the penetration capability i…

0301 basic medicineCapillary action030106 microbiologyClinical BiochemistryPharmaceutical ScienceEndotracheal tubesengineering.materialSolid-phase microextraction01 natural sciencesMeropenemAnalytical Chemistry03 medical and health sciencesCapillary columnCoatingCapillary ElectrochromatographyLimit of DetectionCapillary-LC-DADDrug DiscoverymedicineIntubation IntratrachealHumansSpectroscopySolid Phase MicroextractionChromatographyChemistryBiofilm010401 analytical chemistryIn-tube SPMEPenetration (firestop)MeropenemDiode array0104 chemical sciencesAnti-Bacterial AgentsCapillary lengthengineeringThienamycinsmedicine.drugChromatography LiquidJournal of pharmaceutical and biomedical analysis
researchProduct

The essentials of marine biotechnology

2021

Coastal countries have traditionally relied on the existing marine resources (e.g., fishing, food, transport, recreation, and tourism) as well as tried to support new economic endeavors (ocean energy, desalination for water supply, and seabed mining). Modern societies and lifestyle resulted in an increased demand for dietary diversity, better health and well-being, new biomedicines, natural cosmeceuticals, environmental conservation, and sustainable energy sources. These societal needs stimulated the interest of researchers on the diverse and underexplored marine environments as promising and sustainable sources of biomolecules and biomass, and they are addressed by the emerging field of ma…

0301 basic medicine[SDV.BIO]Life Sciences [q-bio]/Biotechnologylcsh:QH1-199.5Stakeholder engagementOceanographyResponsible research and innovation (RRI)challangesNatural-productsResponsible research and innovation0302 clinical medicineMarine bioeconomyIn-silico predictionlcsh:SciencevalorizationMarine biodiversityWater Science and TechnologybiodiversityHeavy-metal detoxificationBioprospectingGlobal and Planetary ChangeBioprospectingLead-like moleculesconservationBiological SciencesSustainabilityMarine natural products[SDE]Environmental SciencesSolid-phase microextractionDeep-sea sedimentsNatural Sciencesmarine biotechnologymarine bioeconomyMarine conservationmarine biotechnology valorization biodiversity conservation challangesOcean EngineeringAquatic Sciencelcsh:General. Including nature conservation geographical distributionBioactive compoundsBlue growthWaste-water treatment03 medical and health sciencesbioprospecting ; blue growth ; marine biodiversity ; marine natural products ; sustainability ; ethics ; responsible research and innovation (RRI) ; marine bioeconomy14. Life underwaterRecreation[SDU.STU.OC]Sciences of the Universe [physics]/Earth Sciences/OceanographyEthicsResponsible Research and Innovationbusiness.industrySecondary metabolitesParticulate organic-carbonBiotechnology030104 developmental biology13. Climate actionAgricultureSustainabilitymarine biotechnology ; Blue growth ; Marine Biodiversity ; marine natural product ; sustainability ; Ethics ; Responsible research & innovationlcsh:Qbusiness030217 neurology & neurosurgeryTourism
researchProduct

Desarrollo de nuevas estrategias para el diseño de técnicas de cromatografía líquida miniaturizada en línea: nanopartículas, contaminación secundaria

2019

In recent years one of the most important trends in Analytical Chemistry has been the development of new analytical methodologies based on the miniaturization, simplification and automatization of the analytical process, in order to reduce the environmental impact of the analysis without compromising the sensitivity and selectivity. In this respect miniaturized liquid chromatography (LC) systems, such as capillary liquid chromatography (CapLC) and nanoliquid chromatography (NanoLC) are important achievements. These techniques are environmental friendly because the amount of material involved is limited and organic solvents, electricity and the wastes generated are lower than in conventional…

:QUÍMICA::Química analítica::Análisis cromatográfico [UNESCO]nanoparticlesUNESCO::QUÍMICA::Química analítica::Análisis cromatográficonano-liquid chromatographypolar pesticidescapillary liquid chromatographyin-tube solid-phase microextraction (IT-SPME)
researchProduct

A capillary liquid chromatography method for benzalkonium chloride determination as a component or contaminant in mixtures of biocides

2015

A method for quantifying benzalkonium chloride (BAK), an alkyl dimethyl benzyl ammonium compound, in several biocides formulations is proposed. A tertiary amine like N-(3-aminopropyl)-N-dodecyl-1,3-propanediamine (TA) and a straight-chain alkyl ammonium compound like trimethyl-tetradecyl ammonium chloride (TMTDAC), have been employed as trade surfactants besides BAK. Two capillary analytical columns with different polarities are tested: inertsil CN-3 capillary column (150mm×0.5mm i.d., 3μm particle diameter) and a non endcapped Zorbax C18 capillary column (35mm×0.5mm i.d., 5μm particle diameter). This latter column provided the best separation of the BAK homologues in less than 12min using …

AcetonitrilesTertiary amineCapillary action02 engineering and technologySolid-phase microextraction01 natural sciencesBiochemistryChemistry Techniques AnalyticalAnalytical ChemistrySurface-Active Agentschemistry.chemical_compoundBenzalkonium chlorideLimit of DetectionmedicineAmmoniumAcetonitrileSolid Phase MicroextractionAlkylchemistry.chemical_classificationChromatography010401 analytical chemistryOrganic ChemistryGeneral Medicine021001 nanoscience & nanotechnology0104 chemical scienceschemistryAmmonium chlorideBenzalkonium Compounds0210 nano-technologyChromatography LiquidDisinfectantsmedicine.drugJournal of Chromatography A
researchProduct

Magnetic In-Tube Solid Phase Microextraction

2012

We report a new in-tube solid phase microextraction approach named magnetic in-tube solid phase microextraction, magnetic-IT-SPME. Magnetic-IT-SPME has been developed, taking advantage of magnetic microfluidic principles with the aim to improve extraction efficiency of IT-SPME systems. First, a magnetic hybrid material formed by Fe(3)O(4) nanoparticles supported on SiO(2) was synthesized and immobilized in the surface of a bared fused silica capillary column to obtain a magnetic adsorbent extraction phase. The capillary column was placed inside a magnetic coil that allowed the application of a variable magnetic field. Acetylsalicylic acid, acetaminophen, atenolol, diclofenac, and ibuprofen …

AdsorptionChromatographyChemistryElectromagnetic coilPhase (matter)Extraction (chemistry)MicrofluidicsAnalytical chemistrySolid phase extractionSolid-phase microextractionAnalytical ChemistryMagnetic fieldAnalytical Chemistry
researchProduct

Understanding the role of saliva in aroma release from wine by using static and dynamic headspace conditions.

2014

The aim of this work was to determine the role of saliva in wine aroma release by using static and dynamic headspace conditions. In the latter conditions, two different sampling points (t = 0 and t = 10 min) corresponding with oral (25.5 °C) and postoral phases (36 °C) were monitored. Both methodologies were applied to reconstituted dearomatized white and red wines with different nonvolatile wine matrix compositions and a synthetic wine (without matrix effect). All of the wines had the same ethanol concentration and were spiked with a mixture of 45 aroma compounds covering a wide range of physicochemical characteristics at typical wine concentrations. Two types of saliva (human and artifici…

AdultMaleSalivaVOLATILE FLAVOR RELEASEAroma of wineGAS-CHROMATOGRAPHYWineRETRONASAL AROMAGas Chromatography-Mass SpectrometryMatrix (chemical analysis)Dynamic HS-SPME-GC/MSSOLID-PHASE MICROEXTRACTION[SDV.IDA]Life Sciences [q-bio]/Food engineeringBioreactordynamic HS-SPME-GC/MSHumansARTIFICIAL SALIVASalivaAromaWineVolatile Organic CompoundsChromatographyMatrix compositionbiologyChemistrystatic HS-SPME-GC/MSODORANT CONCENTRATIONREACTION-MASS-SPECTROMETRYfood and beveragesGeneral ChemistryRepeatabilitybiology.organism_classificationSWALLOWING PROCESSAroma release[SDV.MP]Life Sciences [q-bio]/Microbiology and Parasitologyaroma releaseIN-MOUTH RELEASEOdorantsMODEL MOUTHFemaleStatic HS-SPME-GC/MSGeneral Agricultural and Biological SciencesJournal of agricultural and food chemistry
researchProduct

Application of solid-phase microextraction combined with derivatization to the determination of amphetamines by liquid chromatography

2004

This work evaluates the utility of solid-phase microextraction (SPME) in the analysis of amphetamines by liquid chromatography (LC) after chemical derivatization of the analytes. Two approaches have been tested and compared, SPME followed by on-fiber derivatization of the extracted amphetamines, and solution derivatization followed by SPME of the derivatives formed. Both methods have been applied to measure amphetamine (AP), methamphetamine (MA), and 3,4-methylenedioxymethamphetamine (MDMA), using the fluorogenic reagent 9-fluorenylmethyl chloroformate (FMOC) and carbowax-templated resin (CW-TR)-coated fibers. Data on the application of the proposed methods for the analysis of different kin…

AnalyteAqueous solutionChromatographyChemistryMicrochemistryAmphetaminesExtraction (chemistry)BiophysicsReproducibility of ResultsCell BiologyChloroformateSolid-phase microextractionSensitivity and SpecificityBiochemistryMatrix (chemical analysis)chemistry.chemical_compoundReference ValuesReagentDerivatizationMolecular BiologyChromatography High Pressure LiquidAnalytical Biochemistry
researchProduct

In tube-solid phase microextraction-nano liquid chromatography: Application to the determination of intact and degraded polar triazines in waters and…

2017

Abstract In-tube solid-phase microextraction (IT-SPME) coupled to miniaturized liquid chromatography (LC) techniques are attractive mainly due to the column efficiency improvement, sensitivity enhancement and reduction of solvent consumption. In addition, the nanomaterials based sorbents can play a key role in the improvement of the extraction efficiency taking into account their interesting physical and chemical properties. Thus, in this work the performance of IT-SPME coupled to nano LC (NanoLC) has been compared with the performance of IT-SPME coupled to capillary LC (CapLC) with similar configurations for the determination of polar triazines including their degradation products. In both…

AnalyteCapillary actionStruviteSurface PropertiesAnalytical chemistry02 engineering and technologySolid-phase microextraction01 natural sciencesBiochemistrySensitivity and SpecificityAnalytical Chemistrychemistry.chemical_compoundLimit of DetectionPhase (matter)Chromatography High Pressure LiquidSolid Phase MicroextractionChromatographyElutionNanotubes CarbonTriazines010401 analytical chemistryOrganic ChemistryExtraction (chemistry)General Medicine021001 nanoscience & nanotechnology0104 chemical sciencesSolventchemistryStruvite0210 nano-technologyWater Pollutants ChemicalJournal of chromatography. A
researchProduct

Adsorbent phases with nanomaterials for in-tube solid-phase microextraction coupled on-line to liquid nanochromatography

2015

Following the present trends in miniaturization, a methodology that combines on-line In-Tube Solid-Phase Microextraction (IT-SPME) with Liquid Nanochromatography (nano-LC) and UV-vis diode array detection (DAD) was developed. This coupling was achieved by using two interconnected valves (i.e. conventional and micro-automatic valves) in the system of injection. As for IT-SPME, different materials, containing in some cases nanostructures or nanoparticles and in other cases polymeric adsorbent phases immobilized on capillary columns, were tested in order to improve extraction efficiencies of organic compounds; diclofenac was selected as the target analyte. Additionally, the transfer time of th…

AnalyteChromatographyCapillary actionChemistry010401 analytical chemistryOrganic ChemistryExtraction (chemistry)Analytical chemistryNanoparticle02 engineering and technologyGeneral Medicine021001 nanoscience & nanotechnologySolid-phase microextraction01 natural sciencesBiochemistryNanostructures0104 chemical sciencesAnalytical ChemistryNanomaterialsAdsorptionMiniaturizationAdsorption0210 nano-technologySolid Phase MicroextractionChromatography LiquidJournal of Chromatography A
researchProduct