Search results for "Biosensor"

showing 10 items of 236 documents

Colorimetic biosensing dispositive based on reagentless hybrid biocomposite: Application to hydrogen peroxide determination

2016

Abstract An efficient approach to enhance the performance of colorimetric biosensors has been developed. The biosensor is based on the co-immobilization of the reagent 3,3′,5,5′-teramethylbencidine (TMB) and the enzyme horseradish peroxidase (HRP) in a PDMS-TEOS-SiO2NPs support. The HRP, in presence of H2O2, catalyzes the oxidation of TMB, producing a blue color. The generated biosensor, doped with the substrate (TMB) and the enzyme (HRP) (entrapped or adsorbed), has been used to determine H2O2 in real samples. Firstly, the immobilization of TMB and HRP in the composite has been studied in order to find the best suitable configuration. The kinetic parameters Vmax (maximum reaction rate) and…

02 engineering and technology010402 general chemistry01 natural sciencesHorseradish peroxidasechemistry.chemical_compoundAdsorptionMaterials ChemistryElectrical and Electronic EngineeringHydrogen peroxideInstrumentationDetection limitChromatographybiologytechnology industry and agricultureMetals and AlloysSubstrate (chemistry)33'55'-Tetramethylbenzidine021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialschemistryReagentbiology.protein0210 nano-technologyBiosensorSensors and Actuators B: Chemical
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FRET biosensor allows spatio-temporal observation of shear stress-induced polar RhoGDIα activation

2018

Rho GDP-dissociation inhibitor α (RhoGDIα) is a known negative regulator of the Rho family that shuts off GDP/GTP cycling and cytoplasm/membrane translocation to regulate cell migration. However, to our knowledge, no reports are available that focus on how the RhoGDIα-Rho GTPases complex is activated by laminar flow through exploring the activation of RhoGDIα itself. Here, we constructed a new biosensor using fluorescence resonance energy transfer (FRET) technology to measure the spatio-temporal activation of RhoGDIα in its binding with Rho GTPases in living HeLa cells. Using this biosensor, we find that the dissociation of the RhoGDIα-Rho GTPases complex is increased by shear stress, and i…

0301 basic medicineGTP'ChemistryMedicine (miscellaneous)Cell migrationGTPasebiosensoritbiosensorsArticleGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences030104 developmental biology0302 clinical medicineFörster resonance energy transferlcsh:Biology (General)Cytoplasm030220 oncology & carcinogenesisMembrane fluidityBiophysicsGeneral Agricultural and Biological SciencesCytoskeletonlcsh:QH301-705.5Proto-oncogene tyrosine-protein kinase SrcCommunications Biology
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Single Particle Plasmon Sensors as Label-Free Technique To Monitor MinDE Protein Wave Propagation on Membranes.

2016

We use individual gold nanorods as pointlike detectors for the intrinsic dynamics of an oscillating biological system. We chose the pattern forming MinDE protein system from Escherichia coli (E. coli), a prominent example for self-organized chemical oscillations of membrane-associated proteins that are involved in the bacterial cell division process. Similar to surface plasmon resonance (SPR), the gold nanorods report changes in their protein surface coverage without the need for fluorescence labeling, a technique we refer to as NanoSPR. Comparing the dynamics for fluorescence labeled and unlabeled proteins, we find a reduction of the oscillation period by about 20%. The absence of photoble…

0301 basic medicineLipid BilayersAnalytical chemistryBioengineeringCell Cycle Proteins02 engineering and technologyBiosensing Techniques03 medical and health sciencesMin SystemEscherichia coliGeneral Materials ScienceSurface plasmon resonancePlasmonFluorescent DyesAdenosine TriphosphatasesNanotubesOscillationChemistryMechanical EngineeringEscherichia coli ProteinsGeneral ChemistrySurface Plasmon Resonance021001 nanoscience & nanotechnologyCondensed Matter PhysicsFluorescencePhotobleaching030104 developmental biologyBiophysicsNanorodGold0210 nano-technologyBiosensorNano letters
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Clinical utility of novel biosensing platform: Diagnosis of coronavirus SARS-CoV-2 at point of care

2021

Early detection is the first step in the fight against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Therefore, an efficient, rapid, selective, specific, and inexpensive SARS-CoV-2 diagnostic method is the need of the hour. The reverse transcription-polymerase chain reaction (RT-PCR) technology is massively utilized to detect infection with SARS-CoV-2. However, scientists continue to strive to create enhanced technology while continually developing nanomaterial-enabled biosensing methods that can provide new methodologies, potentially fulfilling the present demand for rapid and early identification of coronavirus disease 2019 (COVID-19) patients. Our review presents a summar…

2019-20 coronavirus outbreakmedicine.medical_specialtyDiagnostic methodsMaterials scienceCoronavirus disease 2019 (COVID-19)SARS-CoV-2virusesMechanical EngineeringSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)fungiEarly detectionCondensed Matter PhysicsArticlePolymerase chain reactionBiosensors02 Physical Sciences 03 Chemical Sciences 09 EngineeringMechanics of MaterialsmedicineGeneral Materials ScienceCOVID-19 clinical diagnosticsSevere acute respiratory syndrome coronavirusIntensive care medicineMaterialsNanomaterialsPoint of careMaterials Letters
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Nanoporainu anodēta alumīnija oksīdu saturošu vairākslāņu optisko pārklājumu sintēze un raksturošana

2021

Nanoporainu anodēta alumīnija oksīdu saturošu vairākslāņu optisko pārklājumu sintēze un raksturošana. Dutovs A., zinātniskie vadītāji prof. Dr. Chem., prof. Erts D. un vadošais pētnieks doc. Dr. Phys. Prikulis J. Konsultanti vadošais pētnieks Dr. Chem. Popļausks R. un pētnieks M.Sc. Biol. Maļinovskis U. Maģistra darbs, 49 lappuses, 21 attēls, 3 tabulas, 56 literatūras avoti. Latviešu valodā. Porains anodēts alumīnija oksīds ir optiski aktīva viela, uz kura pamatnes ir iespējams iegūt dažādus nanostrukturētus materiālus. Cinka oksīds, pateicoties savām izteiktajām fotoluminiscentām īpašībām, ir plaši pētīts pusvadītājs sensoru substrātu veidošanai. Cēlmetālu nanodaļiņu pārklāšana ar grafēnu …

ANODĒŠANANanodaļiņasZnOBiosensoriANODĒTS ALUMĪNIJA OKSĪDSĶīmija
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Convection, diffusion and reaction in a surface-based biosensor: Modeling of cooperativity and binding site competition on the surface and in the hyd…

2005

We study theoretically the transport and kinetic processes underlying the operation of a biosensor (particularly the surface plasmon sensor "Biacore") used to study the surface binding kinetics of biomolecules in solution to immobilized receptors. Unlike previous studies, we concentrate mainly on the modeling of system-specific phenomena rather than on the influence of mass transport limitations on the intrinsic kinetic rate constants determined from binding data. In the first problem, the case of two-site binding where each receptor unit on the surface can accommodate two analyte molecules on two different sites is considered. One analyte molecule always binds first to a specific site. Sub…

AnalyteBinding SitesChemistryKineticsSurface plasmonAnalytical chemistryCooperative bindingHydrogelsCooperativityBiosensing TechniquesModels TheoreticalSurface Plasmon ResonanceConvectionSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsDiffusionBiomaterialsReaction rateKineticsColloid and Surface ChemistryChemical physicsComputer SimulationBinding siteBiosensorJournal of Colloid and Interface Science
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In-tube solid phase microextraction coupled to miniaturized liquid chromatography for both, noble metal nanoparticle assessment and sensitive plasmon…

2021

Abstract Colorimetric localized surface plasmon resonance (LSPR) as analytical response is applied for a wide number of chemical sensors and biosensors. However, the dependence of different factors, such as size distribution of nanoparticles (NPs), shape, dielectric environment, inter-particle distance and matrix, among others, can provide non-reliable results by UV–vis spectrometry in complex matrices if NP assessment is not carried out, particularly at low levels of analyte concentrations. Miniaturized liquid chromatography, capillary (CapLC) and nano (NanoLC), coupled on line with in-tube solid phase microextraction (IT-SPME) is proposed for the first time for both, controlling suitabili…

AnalyteChromatographyChemistry010401 analytical chemistryNanoparticle02 engineering and technologyengineering.material021001 nanoscience & nanotechnologyMass spectrometrySolid-phase microextraction01 natural sciencesBiochemistry0104 chemical sciencesAnalytical ChemistryMatrix (chemical analysis)engineeringEnvironmental ChemistryNoble metalSurface plasmon resonance0210 nano-technologyBiosensorSpectroscopyAnalytica chimica acta
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Affinity Sensors for the Diagnosis of COVID-19

2021

The coronavirus disease 2019 (COVID-19) outbreak caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) was proclaimed a global pandemic in March 2020. Reducing the dissemination rate, in particular by tracking the infected people and their contacts, is the main instrument against infection spreading. Therefore, the creation and implementation of fast, reliable and responsive methods suitable for the diagnosis of COVID-19 are required. These needs can be fulfilled using affinity sensors, which differ in applied detection methods and markers that are generating analytical signals. Recently, nucleic acid hybridization, antigen-antibody interaction, and change of reactive oxyge…

AnalyteCoronavirus disease 2019 (COVID-19)Computer scienceimmune complexSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)lcsh:Mechanical engineering and machinerySARS-CoV-2 virus02 engineering and technologyReviewelectrochemical immunosensors03 medical and health sciencesCOVID-19 ; SARS-CoV-2 virus ; RNA analysis ; bioelectrochemistry ; biosensors ; electro- chemical immunosensors ; antigen-antibody interaction ; immune complex ; molecularly imprinted polymers (MIPs) ; surface modification by immobilization of biomoleculesElectrochemical biosensorDetection theorylcsh:TJ1-1570Electrical and Electronic EngineeringSurface plasmon resonance030304 developmental biologysurface modification by immobilization of biomolecule0303 health sciencesMechanical EngineeringbioelectrochemistryCOVID-19surface modification by immobilization of biomoleculesRNA analysis021001 nanoscience & nanotechnologybiosensorsAntigen-antibody interactionControl and Systems Engineeringmolecularly imprinted polymers (MIPs)antigen-antibody interaction0210 nano-technologyBiological systemBiosensorMicromachines
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“AND” luminescent “reactive” molecular logic gates: a gateway to multi-analyte bioimaging and biosensing

2014

This review outlines examples that illustrate a recent and highly innovative concept in the field of (bio)molecular sensing, namely the simultaneous multi-analyte detection using "reactive" luminescent probes that are able to produce an optical signal only in response to multiple (bio)chemical inputs and through covalent chemical reactions with target (bio)analytes. Unlike conventional "AND" molecular logic gates based on supramolecular photochemical mechanisms, these unusual "smart" optical (bio)probes are suitable tools to track the rise and fall of a wider range of biologically relevant analytes, in complex media and with higher selectivity. The potential utility of this concept for in v…

AnalyteLuminescenceLogicChemistryOrganic ChemistrySupramolecular chemistryNanotechnologyBiosensing TechniquesBiochemistryMolecular ImagingMetalsDefault gatewayLogic gateAnimalsHumansProtonsPhysical and Theoretical ChemistryMolecular imagingLuminescenceBiosensorMulti analyteOrganic & Biomolecular Chemistry
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Experimental Study of the Oriented Immobilization of Antibodies on Photonic Sensing Structures by Using Protein A as an Intermediate Layer

2018

[EN] A proper antibody immobilization on a biosensor is a crucial step in order to obtain a high sensitivity to be able to detect low target analyte concentrations. In this paper, we present an experimental study of the immobilization process of antibodies as bioreceptors on a photonic ring resonator sensor. A protein A intermediate layer was created on the sensor surface in order to obtain an oriented immobilization of the antibodies, which enhances the interaction with the target antigens to be detected. The anti-bovine serum albumin (antiBSA)-bovine serum albumin (BSA) pair was used as a model for our study. An opto-fluidic setup was developed in order to flow the different reagents and,…

AnalyteMaterials scienceIntegrated photonicsSerum albuminBiosensing TechniquesRing resonator02 engineering and technologylcsh:Chemical technologyBiotecnologia01 natural sciencesBiochemistryAntibodiesArticleAnalytical Chemistry010309 opticsResonatorring resonatorsensorQUIMICA ANALITICATEORIA DE LA SEÑAL Y COMUNICACIONES0103 physical scienceslcsh:TP1-1185Electrical and Electronic EngineeringStaphylococcal Protein AInstrumentationIntegrated photonics; ring resonator; sensor; biosensingSensorDetection limitPhotonsChromatographybiologyBiosensingbusiness.industrySerum Albumin BovineRepeatabilityÒptica021001 nanoscience & nanotechnologyAtomic and Molecular Physics and Opticsbiology.proteinbiosensingPhotonics0210 nano-technologybusinessProtein ABiosensorSensors
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