Search results for "biosensing"

showing 10 items of 108 documents

A Colorimetric Membrane-Based Sensor with Improved Selectivity towards Amphetamine

2021

Due to their simplicity, speed and low cost, chemical spot tests are increasingly demanded for the presumptive identification of illicit drugs in a variety of contexts such as point-of-care assistance or prosecution of drug trafficking. However, most of the colorimetric reactions used in these tests are, at best, drug class selective. Therefore, the development of tests based on chemical reactions with improved discrimination power is of great interest. In this work, we propose a new colorimetric assay for amphetamine (AMP) based on its reaction with solutions of alkaline gold bromide to form an insoluble yellow–orange derivative. The resulting suspensions are then filtered onto nylon membr…

DrugDiffuse reflectance infrared fourier transformmedia_common.quotation_subjectamphetaminePharmaceutical Sciencegold bromideBiosensing TechniquesSensitivity and Specificitycolorimetric sensorsArticleAnalytical ChemistryAbsorbancechemistry.chemical_compoundQD241-441BromideSpectroscopy Fourier Transform InfraredDrug DiscoverymedicinePhysical and Theoretical ChemistryEphedrineAmphetaminemedia_commonChromatographyIllicit DrugsOrganic ChemistryReproducibility of Resultsdrug analysisSubstance Abuse DetectionMembranechemistryChemistry (miscellaneous)Molecular MedicineColorimetryillicit drug samplesSelectivitymedicine.drugMolecules
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Microbial Cells and Biosensing: A Dual Approach - Exploiting Antibodies and Microbial Cells as Analytical/Power Systems

2010

The primary focus of this review is the discussion of how biosensor-based platforms can be used in conjunction with microbial cells for monitoring, environmental and industrial applications. Two approaches will be comprehensively discussed. The first of these will examine how immunosensors can be used for the sensitive and selective detection of bacterial pathogens in a range of diverse and complex sample matrices. Secondly, we discuss the implementation of free and immobilised microbial cells for facilitating the analysis of chemicals and metabolites in cost-effective devices that, in turn, are directly applicable to environmental monitoring. Further examples, relating to the uses and adva…

Electric power systemBiosensingChemistryNanotechnologyDUAL (cognitive architecture)Biosensor
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Dual Enzyme-Responsive Capsules of Hyaluronic Acid-block-Poly(Lactic Acid) for Sensing Bacterial Enzymes.

2015

The synthesis of novel amphiphilic hyaluronic acid (HYA) and poly(lactic acid) (PLA) block copolymers is reported as the key element of a strategy to detect the presence of pathogenic bacterial enzymes. In addition to the formation of defined HYA-block-PLA assemblies, the encapsulation of fluorescent reporter dyes and the selective enzymatic degradation of the capsules by hyaluronidase and proteinase K are studied. The synthesis of the dual enzyme-responsive HYA-b-PLA is carried out by copper-catalyzed Huisgen 1,3-dipolar cycloaddition. The resulting copolymers are assembled in water to form vesicular structures, which are characterized by scanning electron microscopy, transmission electron…

Fluorescence-lifetime imaging microscopyStaphylococcus aureusMaterials sciencePolymers and PlasticsCell SurvivalPolymersDrug CompoundingPolyestersMolecular Sequence DataPrimary Cell CultureHyaluronoglucosaminidaseBiosensing TechniquesFluorescence spectroscopyNanocapsuleschemistry.chemical_compoundDynamic light scatteringBacterial ProteinsNanocapsulesHyaluronidaseAmphiphileMaterials ChemistrymedicineHumansLactic AcidHyaluronic AcidMicellesFluorescent DyesCycloaddition ReactionRhodaminesOrganic Chemistrytechnology industry and agricultureEndothelial CellsDermisLactic acidchemistryBiochemistryCarbohydrate SequencePseudomonas aeruginosaBiophysicsLiberationEndopeptidase Kmedicine.drugMacromolecular rapid communications
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Multicomponent polymeric micelles based on polyaspartamide as tunable fluorescent pH-window biosensors

2010

Abstract PHEA-PEG 5000 -C 16 is a polyaspartamide polymer with appended hydrophilic PEG 5000 functions and hydrophobic n-C 16 units forming biocompatible micelles with a CAC as low as 1.8 × 10 −7  M. The protonation and acidity constants of the polymer's amino and carboxylic groups have been determined by potentiometric titrations at five different concentrations higher than CAC, finding concentration-independent values. Viscosity and polarity of the micellar core have been investigated by means of fluorescent probes, finding local values comparable to those of pure toluene and to the core of sodium dodecyl sulphate micelles, independently on the protonation degree of the polymer. The fluor…

FluorophorePolymeric micelles Fluorescent biosensor PH window Self-assemblinGInorganic chemistryPotentiometric titrationBiomedical EngineeringBiophysicsProtonationBiosensing TechniquesMicellePolyethylene Glycolschemistry.chemical_compoundElectrochemistryOrganic chemistryMicellesPolyhydroxyethyl Methacrylatechemistry.chemical_classificationEquipment DesignGeneral MedicinePolymerHydrogen-Ion ConcentrationEquipment Failure AnalysisSpectrometry FluorescencechemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoPyreneSelf-assemblyPeptidesBiosensorBiotechnologyBiosensors and Bioelectronics
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DNA Origami-Mediated Substrate Nanopatterning of Inorganic Structures for Sensing Applications

2019

Structural DNA nanotechnology provides a viable route for building from the bottom-up using DNA as construction material. The most common DNA nanofabrication technique is called DNA origami, and it allows high-throughput synthesis of accurate and highly versatile structures with nanometer-level precision. Here, it is shown how the spatial information of DNA origami can be transferred to metallic nanostructures by combining the bottom-up DNA origami with the conventionally used top-down lithography approaches. This allows fabrication of billions of tiny nanostructures in one step onto selected substrates. The method is demonstrated using bowtie DNA origami to create metallic bowtie-shaped an…

General Immunology and MicrobiologyGeneral Chemical EngineeringGeneral NeurosciencenanotekniikkaBiosensing TechniquesDNAsubstrate patterningSilicon DioxideSpectrum Analysis RamanopticsplasmonicsGeneral Biochemistry Genetics and Molecular BiologyoptiikkaNanostructuresnanorakenteetHumansNanotechnologyPrintingDNA nanotechnologynanohiukkasetDNA origamimetal nanoparticlesnanolithographyJournal of Visualized Experiments
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Sea urchin coelomocytes as a novel cellular biosensor of environmental stress: a field study in the Tremiti Island Marine Protected Area, Southern Ad…

2007

The aim of the present study was to investigate on the suitability of the sea urchin as a sentinel organism for the assessment of the macro-zoobenthos health state in bio-monitoring programmes. A field study was carried out during two oceanographic campaigns using immuno-competent cells, the coelomocytes, from sea urchins living in a marine protected area. In particular, coelomocytes subpopulations ratio and heat shock protein 70 (HSC70) levels were measured in specimens of Paracentrotus lividus (Lamark, 1816) collected in two sampling sites, namely Pianosa and Caprara Islands, both belonging to the Tremiti Island Marine Protected Area (MPA) in the Southern Adriatic Sea, Italy. By density g…

Health Toxicology and MutagenesisBiosensing TechniquesEnvironmentBiologyToxicologyEnvironmental stressParacentrotus lividusStress Physiologicalbiology.animalAnimalsSeawaterGonadsCoelomocyteSea urchinAtomic emission spectrometryGeographyHSC70 Heat-Shock ProteinsCell Biologybiology.organism_classificationTrace ElementsFisheryOn boardPhenotypeItalyMetalsSea UrchinsMarine protected areaProtected areaBiomarkersWater Pollutants ChemicalCell Biology and Toxicology
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Denaturing for Nanoarchitectonics: Local and Periodic UV-Laser Photodeactivation of Protein Biolayers to Create Functional Patterns for Biosensing

2022

[EN] The nanostructuration of biolayers has become a paradigm for exploiting nanoscopic light-matter phenomena for biosensing, among other biomedical purposes. In this work, we present a photopatterning method to create periodic structures of biomacromolecules based on a local and periodic mild denaturation of protein biolayers mediated by UV-laser irradiation. These nanostructures are constituted by a periodic modulation of the protein activity, so they are free of topographic and compositional changes along the pattern. Herein, we introduce the approach, explore the patterning parameters, characterize the resulting structures, and assess their overall homogeneity. This UV-based patterning…

ImmunoassayLasersTransducersFísicaBiosensing TechniquesNon-specific bindingBiophysical PhenomenaNanostructuresUV denaturation: ImmunoassayQUIMICA ANALITICAHumansGeneral Materials ScienceMaterials nanoestructuratsLabel-freeDiffractionBiosensorACS Applied Materials & Interfaces
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Haptens, bioconjugates, and antibodies for penthiopyrad immunosensing

2014

4 pages, 1 table, 2 figures.

ImmunoconjugatesSynthetic derivativesbiologyChemistryBiosensing TechniquesThiophenesBiochemistryCombinatorial chemistryAntibodiesAnalytical ChemistryHighly sensitivePenthiopyradElectrochemistrybiology.proteinEnvironmental ChemistryPyrazolesImmunochemical analysisAntibodyHaptenHaptensSpectroscopyFungicides
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Revisited BIA-MS combination: Entire "on-a-chip" processing leading to the proteins identification at low femtomole to sub-femtomole levels

2008

International audience; We present the results of a study in which biomolecular interaction analysis (BIA, Biacore 2000) was combined with mass spectrometry (MS) using entire "on-a-chip" procedure. Most BIA-MS studies included an elution step of the analyte prior MS analysis. Here, we report a low-cost approach combining Biacore analysis with homemade chips and MS in situ identification onto the chips without elution step. First experiments have been made with rat serum albumin to determine the sensitivity and validation of the concept has been obtained with an antibody/antigen couple. Our "on-a-chip" procedure allowed complete analysis by MS-MS of the biochip leading to protein identificat…

In situMALDI-TOFAnalyte[ SDV.BBM.BP ] Life Sciences [q-bio]/Biochemistry Molecular Biology/BiophysicsBiomedical EngineeringBiophysicsAnalytical chemistrySPRBiosensing TechniquesMass spectrometry01 natural sciencesSensitivity and Specificity03 medical and health sciencesProtein Interaction MappingElectrochemistryNanotechnologyBIA-MSBiochipChromatography High Pressure Liquid030304 developmental biology0303 health sciencesChromatographyprotein complexesElutionChemistryMicrochemistry010401 analytical chemistryMs analysisReproducibility of ResultsGeneral MedicineEquipment DesignMicrofluidic Analytical Techniques0104 chemical sciencesEquipment Failure Analysis[SDV.BBM.BP]Life Sciences [q-bio]/Biochemistry Molecular Biology/BiophysicsMatrix-assisted laser desorption/ionizationSAMSpectrometry Mass Matrix-Assisted Laser Desorption-IonizationBiotechnology
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Bacterial sensors based on biosilica immobilization for label-free OWLS detection

2013

In the last years, a new group of enzymes, the so-called silicateins, have been identified and characterized, which form the axial filaments of the spicules of the siliceous sponges, consisting of not only amorphous silica among others. These enzymes are able to catalyze the polycondensation and deposition of silica at mild conditions. Silicateins can be expressed in Escherichia coli. The recombinant proteins are expressed on the surface of the cell wall and are able to catalyze the formation of a polysilicate net around the bacterial cells providing the possibility for further attachment to the surface of SiO2 containing sensor chips. With this mild immobilization process it is now possibl…

InsecticidesBioengineeringBiosensing Techniquesmedicine.disease_causeBacterial cell structurelaw.inventionCell wallCarbofuranchemistry.chemical_compoundlawEscherichia colimedicineHydrogen peroxideMolecular BiologyEscherichia colichemistry.chemical_classificationbiologyChloramphenicolPenicillin GHydrogen PeroxideGeneral MedicineOxidantsSilicon Dioxidebiology.organism_classificationCathepsinsAnti-Bacterial AgentsOxidative StressChloramphenicolEnzymechemistryBiochemistryRecombinant DNABacteriaBiotechnologymedicine.drugNew Biotechnology
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