Search results for "Photobleaching"

showing 10 items of 59 documents

Novel core–shell (TiO2@Silica) nanoparticles for scattering medium in a random laser: higher efficiency, lower laser threshold and lower photodegrada…

2013

There has been growing interest in scattering media in recent years, due to their potential applications as solar collectors, photocatalyzers, random lasers and other novel optical devices. Here, we have introduced a novel core-shell scattering medium for a random laser composed of TiO2@Silica nanoparticles. Higher efficiency, lower laser threshold and long photobleaching lifetime in random lasers were demonstrated. This has introduced a new method or parameter (fraction of absorbed pumping), which opens a new avenue to characterize and study the scattering media. Optical chemical and colloidal stabilities were combined by coating a suitable silica shell onto TiO2 nanoparticles.

Random laserMaterials sciencebusiness.industryScatteringPhysics::OpticsNanoparticleengineering.materialLaserPhotobleachinglaw.inventionColloidOpticsCoatinglawengineeringOptoelectronicsGeneral Materials SciencePhotodegradationbusinessNanoscale
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Multispectral, Fluorescent and Photoplethysmographic Imaging for Remote Skin Assessment

2017

Optical tissue imaging has several advantages over the routine clinical imaging methods, including non-invasiveness (does not change the structure of tissues), remote operation (avoids infection) and ability to quantify the tissue condition by means of specific image parameters. Dermatologists and other skin experts need compact (preferably pocket-size), self-sustained and easy-to-use imaging devices. The operational principles and designs of ten portable in-vivo skin imaging prototypes developed at the Biophotonics Laboratory of Institute of Atomic Physics and Spectroscopy, University of Latvia during the recent five years are presented in this paper. Four groups of imaging devices are con…

Remote detectionTissue imagingComputer scienceMultispectral imageReview02 engineering and technology01 natural sciencesBiochemistryphotoplethysmography imagingAnalytical Chemistry010309 opticsRemote operationskin autofluorescence and photobleachingPhotoplethysmogram0103 physical sciencesHumansComputer visionElectrical and Electronic EngineeringImage sensorPhotoplethysmographyInstrumentationSkinbusiness.industrySpectrum Analysismultispectral skin imaging021001 nanoscience & nanotechnologyPhotobleachingFluorescenceAtomic and Molecular Physics and OpticsopticsBiophotonicsAutofluorescenceArtificial intelligence0210 nano-technologybusinessBiomedical engineering
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Desmosomes: interconnected calcium-dependent structures of remarkable stability with significant integral membrane protein turnover

2002

Desmosomes are prominent cell adhesion structures that are major stabilizing elements, together with the attached cytoskeletal intermediate filament network, of the cytokeratin type in epithelial tissues. To examine desmosome dynamics in tightly coupled cells and in situations of decreased adhesion, fluorescent desmosomal cadherin desmocollin 2a (Dsc2a) chimeras were stably expressed in human hepatocellular carcinoma-derived PLC cells (clone PDc-13) and in Madin-Darby canine kidney cells (clone MDc-2) for the continuous monitoring of desmosomes in living cells. The hybrid polypeptides integrated specifically and without disturbance into normal-appearing desmosomes that occurred in associati…

Time FactorsRecombinant Fusion ProteinsBiologyCell LineCytokeratinDogsGenes ReporterDesmosomeCell AdhesionmedicineAnimalsHumansDesmosomal CadherinsCell adhesionIntermediate filamentCytoskeletonDesmocollinsMembrane GlycoproteinsCadherinCarcinomaCell CycleLiver NeoplasmsFluorescence recovery after photobleachingEpithelial CellsDesmosomesCell BiologyCell biologyMicroscopy Electronmedicine.anatomical_structureMicroscopy FluorescenceKeratinsCalciumJournal of Cell Science
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Revisiting the disappearance of terrestrial dissolved organic matter in the ocean: a <i>δ</i><sup>13&lt…

2014

Abstract. Organic carbon (OC) depleted in 13C is a widely used tracer for terrestrial organic matter (OM) in aquatic systems. Photochemical reactions can, however, change δ13C of dissolved organic carbon (DOC) when chromophoric, aromatic-rich terrestrial OC is selectively mineralized. We assessed the robustness of the δ13C signature of DOC (δ13CDOC) as a tracer for terrestrial OM by estimating its change during the photobleaching of chromophoric DOM (CDOM) from 10 large rivers. These rivers cumulatively account for approximately one-third of the world's freshwater discharge to the global ocean. Photobleaching of CDOM by simulated solar radiation was associated with the photochemical mineral…

Total organic carbonChemistryAquatic ecosystemMineralization (soil science)ParticulatesPhotobleachingColored dissolved organic matterOceanography13. Climate actionTRACEREnvironmental chemistryDissolved organic carbon14. Life underwaterEcology Evolution Behavior and SystematicsEarth-Surface ProcessesBiogeosciences
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Polar Localization of a Tripartite Complex of the Two-Component System DcuS/DcuR and the Transporter DctA in Escherichia coli Depends on the Sensor K…

2014

The C4-dicarboxylate responsive sensor kinase DcuS of the DcuS/DcuR two-component system of E. coli is membrane-bound and reveals a polar localization. DcuS uses the C4-dicarboxylate transporter DctA as a co-regulator forming DctA/DcuS sensor units. Here it is shown by fluorescence microscopy with fusion proteins that DcuS has a dynamic and preferential polar localization, even at very low expression levels. Single assemblies of DcuS had high mobility in fast time lapse acquisitions, and fast recovery in FRAP experiments, excluding polar accumulation due to aggregation. DctA and DcuR fused to derivatives of the YFP protein are dispersed in the membrane or in the cytosol, respectively, when …

Yellow fluorescent proteinCardiolipinslcsh:MedicineMicrobiologyMreBMicrobial PhysiologyBacterial Physiologylcsh:ScienceCytoskeletonMicrobial MetabolismDicarboxylic Acid TransportersMultidisciplinaryEscherichia coli K12biologyBacterial GrowthEscherichia coli Proteinslcsh:RMicrobial Growth and DevelopmentBiology and Life SciencesFluorescence recovery after photobleachingBacteriologyFusion proteinTwo-component regulatory systemBacterial BiochemistryTransport proteinDNA-Binding ProteinsProtein TransportBiochemistryCytoplasmMultiprotein ComplexesBiophysicsbiology.proteinlcsh:QProtein KinasesResearch ArticleDevelopmental BiologyTranscription FactorsPLoS ONE
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Computational Modeling of Protein Dynamics in Eukaryotic Cells

2012

Proteins have important functions inside the cell, traveling diffusively or being actively transported to various cellular sites where their activity is needed. Protein motion in the cellular environment is therefore an important topic to understand. However, the cell provides a very complex environment for that motion, which poses problems especially for any modeling effort designed to interpret experimentally observed features. So as to gain a realistic picture of protein dynamics inside the cell, we have recently introduced advanced numerical methods for describing that dynamics [1]. The starting point is an accurate numerical duplicate of the cell determined by LSCM, which can be used a…

Yellow fluorescent proteinbiologyChemistryProtein dynamicsNumerical analysisDynamics (mechanics)BiophysicsNanotechnologyPhotobleachingCytoplasmbiology.proteinDiffusion (business)Biological systemPorous mediumBiophysical Journal
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Non-structural proteins P17 and P33 are involved in the assembly of the internal membrane-containing virus PRD1.

2015

AbstractBacteriophage PRD1, which has been studied intensively at the structural and functional levels, still has some gene products with unknown functions and certain aspects of the PRD1 assembly process have remained unsolved. In this study, we demonstrate that the phage-encoded non-structural proteins P17 and P33, either individually or together, complement the defect in a temperature-sensitive GroES mutant of Escherichia coli for host growth and PRD1 propagation. Confocal microscopy of fluorescent fusion proteins revealed co-localisation between P33 and P17 as well as between P33 and the host chaperonin GroEL. A fluorescence recovery after photobleaching assay demonstrated that the diff…

assemblychaperoninvirusesMutantfluorescence recovery after photobleachingViral Nonstructural Proteinsmedicine.disease_causeVirus ReplicationChaperoninHost-Parasite InteractionsBacteriophagebacteriophageVirologymedicineEscherichia colifluorescent proteinBacteriophage PRD1Escherichia colimembrane virusMicroscopy Confocalbiologyprotein localisationVirus Assemblyta1182Fluorescence recovery after photobleachingGroESChaperonin 60biology.organism_classificationFusion proteinGroEL3. Good healthCell biologyVirology
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Identification of Novel Principles of Keratin Filament Network Turnover in Living Cells

2004

It is generally assumed that turnover of the keratin filament system occurs by exchange of subunits along its entire length throughout the cytoplasm. We now present evidence that a circumscribed submembranous compartment is actually the main site for network replenishment. This conclusion is based on the following observations in living cells synthesizing fluorescent keratin polypeptides: 1) Small keratin granules originate in close proximity to the plasma membrane and move toward the cell center in a continuous motion while elongating into flexible rod-like fragments that fuse with each other and integrate into the peripheral KF network. 2) Recurrence of fluorescence after photobleaching i…

chemistry.chemical_classificationKeratin Filamentintegumentary systemFluorescence recovery after photobleachingArticlesmacromolecular substancesCell BiologyBiologyCell biologychemistryCytoplasmKeratinCell cortexIntermediate filamentCytoskeletonMolecular BiologyMitosisMolecular Biology of the Cell
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Dominance of Chain Entanglement over Transient Sticking on Chain Dynamics in Hydrogen-Bonded Supramolecular Polymer Networks in the Melt

2018

The chain dynamics in supramolecular polymer networks is determined by the interplay of the kinetics of transient interchain association and relaxation of the network chains themselves. This interplay can be addressed by studying model supramolecular polymer networks in which the number of associative side groups and the molar mass of the covalently jointed backbone polymers are both varied systematically. To realize this idea, we use precursor chains with three different molar masses, which comes along with different extents of entanglement in the melt state. For each molar mass, the precursor polymers are functionalized with three different relative contents of associative side groups, gi…

chemistry.chemical_classificationMolar massMaterials sciencePolymers and PlasticsOrganic ChemistryKineticsFluorescence recovery after photobleaching02 engineering and technologyQuantum entanglementPolymer010402 general chemistry021001 nanoscience & nanotechnologyThermal diffusivity01 natural sciences0104 chemical sciencesInorganic ChemistrySupramolecular polymerschemistryChemical physicsCovalent bondMaterials Chemistry0210 nano-technologyMacromolecules
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Imaging of Keratin Dynamics during the Cell Cycle and in Response to Phosphatase Inhibition

2004

Publisher Summary The characterization and development of autofluorescent proteins, most prominently of the green florescent protein, have provided tools to label cellular structures such that they can be examined in living cells. This chapter highlights the potential of live cell imaging in providing novel and unprecedented insights into the dynamic organization of the keratin cytoskeleton and outlines the important aspects of this method. The live cell imaging experiments suggest that the driving force behind the vectorial and dynamic keratin distribution patterns relies both on microtubules and microfilaments and their associated factors. The studies on the dynamics of the keratin cytosk…

chemistry.chemical_classificationMotor proteinchemistryLive cell imagingMicrotubuleKeratinFluorescence recovery after photobleachingmacromolecular substancesBiologyIntermediate filamentCytoskeletonMicrofilamentCell biology
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