Search results for "imprint"

showing 10 items of 194 documents

Solid-Phase Extraction and Clean-Up Procedures in Pharmaceutical Analysis

2012

Solid-phase extraction (SPE) using small cartridges filled with sorbents of a small particle size has rapidly established itself as an important sample clean-up technique. It has prospered at the expense of liquid-liquid extraction (LLE), which is considered labor intensive and frequently plagued by problems, such as emulsion formation and use of large volumes of hazardous solvents. A remarkable characteristic of SPE is its easy adaptation to on-line mode by column-switching techniques; switching can be effected manually or by automated controllers. The same analyte/sorbent interactions that are exploited in liquid chromatography (LC) are of use in SPE, but particle sizes employed are great…

CartridgeAnalytechemistry.chemical_compoundMaterials scienceSorbentChromatographychemistryExtraction (chemistry)Molecularly imprinted polymerSolid phase extractionDerivatizationClean-up
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ChemInform Abstract: Bubble Fractionation of Enantiomers from Solution Using Molecularly Imprinted Polymers as Collectors.

2010

Adsorptive bubble separation methods have been used to enrich components from both heterogeneous and homogeneous solutions. These methods are particularly effective for processing large solution volumes at low cost. Previous work demonstrated that chiral, surface-active collectors could be used to enrich enantiomers from homogeneous solution in a foam fractionation process. In a significant extension of this work, the use of highly selective molecularly imprinted polymers (MIPs) and heterogeneous solutions for the bubble flotation of enantiomers was evaluated. The high selectivity and ease of recycling of the MIP make this a potentially powerful approach for process-scale separations from l…

Chemical engineeringHomogeneousChemistryBubbleHigh selectivityMolecularly imprinted polymerSeparation methodFoam fractionationGeneral MedicineFractionationEnantiomerChemInform
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Bubble fractionation of enantiomers from solution using molecularly imprinted polymers as collectors.

1998

Adsorptive bubble separation methods have been used to enrich components from both heterogeneous and homogeneous solutions. These methods are particularly effective for processing large solution volumes at low cost. Previous work demonstrated that chiral, surface-active collectors could be used to enrich enantiomers from homogeneous solution in a foam fractionation process. In a significant extension of this work, the use of highly selective molecularly imprinted polymers (MIPs) and heterogeneous solutions for the bubble flotation of enantiomers was evaluated. The high selectivity and ease of recycling of the MIP make this a potentially powerful approach for process-scale separations from l…

Chiral auxiliaryChromatographyChemistryPolymersBubbleMolecularly imprinted polymerStereoisomerismFractionationAnalytical ChemistrySolutionschemistry.chemical_compoundSurface-Active AgentsAdsorptionChemical engineeringSeparation methodFoam fractionationAdsorptionEnantiomerAnalytical chemistry
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Enantiomer Separations Using Designed Imprinted Chiral Phases

2003

Chiral column chromatographyChemistryOrganic chemistryEnantiomerSelectivityMolecular imprinting
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Synthesis and sorptive properties of molecularly imprinted polymer for simultaneous isolation of catecholamines and their metabolites from biological…

2021

Simultaneous quantitative analysis of catecholamines (CAs) and their respective acid metabolites in biological fluids can become a powerful tool for diagnosis and treatment of various diseases. However, selective sample preparation procedure is necessary to isolate the aforementioned analytes from the matrix. Therefore, we propose a synthetic strategy for the preparation of a molecularly imprinted sorbent with binding sites for both CAs and their respective acid metabolites. The synthesis combines noncovalent and semicovalent imprinting methods. Methylenebisacrylamide, 4-vynilbenzyl-N,N,N-trimethylammonium (3,4-dimethoxyphenyl)acetate, and 3-phenylpropylacrylate were used as the cross-linke…

Chromatography010405 organic chemistryChemistryfungi010401 analytical chemistryClinical BiochemistryMolecularly imprinted polymerfood and beveragesPharmaceutical ScienceIsolation (microbiology)01 natural sciencesBiochemistry0104 chemical sciencesAnalytical ChemistryBiological fluidsQuantitative analysis (chemistry)
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Influence of template basicity and hydrophobicity on the molecular recognition properties of molecularly imprinted polymers

1996

Abstract Triazine herbicides were used as model templates for a basic study of the molecular recognition process in imprinted polymers. Five structurally related triazine herbicides (atrazine, ametryn, cyanazine, prometryn and terbutylazine) that differ in basicity and hydrophobicity were imprinted. Chromatographic evaluation of the resulting materials in an aqueous-poor mobile phase showed that the selectivity for the template increased with its Bronsted basicity whereas it did not correlate with template hydrophobicity. Thus, the highest and lowest affinity and selectivity for the template was observed using the ametryn-imprinted (p K a =4.1) and the cyanazine-imprinted polymers (p K a =1…

ChromatographyAqueous solutionOrganic ChemistryMolecularly imprinted polymerGeneral MedicineBiochemistryAnalytical ChemistryGel permeation chromatographyPartition coefficientchemistry.chemical_compoundMolecular recognitionchemistryPolymer chemistryMolecular imprintingSelectivityTriazineJournal of Chromatography A
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Extraction of clenbuterol from calf urine using a molecularly imprinted polymer followed by quantitation by high-performance liquid chromatography wi…

2002

A method for the extraction of clenbuterol from calf urine samples using a molecularly imprinted polymer (MIP) has been developed. The aim was that the final extracts from the MIP should allow quantitation of clenbuterol down to 0.5 ng/mL urine using HPLC with UV detection. The MIP was produced using brombuterol as a template and the selectivity of the MIP, for clenbuterol, was tested against a non-imprinted polymer (produced without template) and was found to be high. After loading of 5 mL diluted centrifuged urine, selective binding was established in acetonitrile-acetic acid (98:2). For further elution of interferences, 0.5 M ammonium acetate buffer pH 5 and 70% acetonitrile in water was…

ChromatographyChemistryElutionOrganic ChemistryExtraction (chemistry)Molecularly imprinted polymerReproducibility of ResultsGeneral MedicineReversed-phase chromatographyReference StandardsSensitivity and SpecificityBiochemistryHigh-performance liquid chromatographyAnalytical ChemistryClenbuterolmedicineAnimalsCattleClenbuterolSpectrophotometry UltravioletSample preparationSolid phase extractionAdrenergic alpha-AgonistsChromatography High Pressure Liquidmedicine.drugJournal of Chromatography A
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Molecularly imprinted polymer-based device for field collection of oral fluid samples for cocaine identification.

2020

In this paper, a low-cost, rapid, easy, and potentially portable tool for the identification of cocaine and its semi-quantitative determination in oral fluid has been proposed. A field collection device has been designed, based on a cotton pad with an indicator and a molecularly imprinted polymer (MIP) sorbent, to selective retain cocaine from oral fluid components. After sample collection, cocaine is transferred by using phosphate buffer to the MIP and then eluted with 2-propanol. The obtained extract is analysed by ion mobility spectrometry (IMS), providing a cut-off value of 20 µg L-1 that identifies 100 % true-positive and 95 % true-negative samples. The MIP-IMS procedure has been valid…

ChromatographyElutionIon-mobility spectrometryChemistryPolymers010401 analytical chemistryOrganic ChemistryMolecularly imprinted polymerGeneral Medicine010402 general chemistry01 natural sciencesBiochemistry0104 chemical sciencesAnalytical ChemistryMolecular ImprintingSubstance Abuse DetectionHealth personnelIdentification (information)CocaineIon Mobility SpectrometryOral fluidHumansSample collectionSalivaLateral flow immunoassayJournal of chromatography. A
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Study of Chromatographic Properties of Catecholamines and their Acidic Metabolites Using Novel Molecularly Imprinted Polymers as Stationary Phases

2021

Quantitative analysis of catecholamines and their acidic metabolites can provide vital information for diagnosis and treatment of various diseases (such as adrenal tumors). However, complicated purification protocols are usually required to isolate the analytes. Molecularly imprinted polymers (MIPs) have attracted considerable attention as a method of selectively separating desired compounds from their matrix. Therefore, we propose a synthetic procedure for new molecularly imprinted sorbents that possess selective binding sites for both catecholamines and their acidic metabolites. The new polymer utilizes non-covalent and semi-covalent imprinting methods. The binding properties of MIPs were…

ChromatographyMechanics of MaterialsChemistryStationary phaseMechanical EngineeringMolecularly imprinted polymerGeneral Materials ScienceKey Engineering Materials
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Effect of solvents on the selectivity of terbutylazine imprinted polymer sorbents used in solid-phase extraction

2002

A solid-phase extraction sample preparation method using a molecularly imprinted polymer (MIP) selective for the triazine type pesticide terbutylazine has been developed. The method involves preconcentration from large volumes of water samples on a C18 disk coupled to selective clean-up on the MIP. The method has been optimised by studying the recovery and retention of terbutylazine and some other structurally related triazine derivates as a function of the selective washing solvent used. The effect of the water content of the selective washing solvent was also investigated on the recovery of the MIP. River water samples were analysed with the coupled technique, and efficient clean-up of th…

ChromatographyPolymersTriazinesOrganic ChemistryExtraction (chemistry)Molecularly imprinted polymerGeneral MedicineBiochemistryAnalytical ChemistrySolventchemistry.chemical_compoundchemistrySolventsSample preparationSolid phase extractionSolvent effectsMolecular imprintingTriazineJournal of Chromatography A
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