Search results for "Fluorescence"

showing 10 items of 2463 documents

Review article: in vivo imaging by endocytoscopy

2011

Aliment Pharmacol Ther 2011; 33: 1183–1193 Summary Background  Endocytoscopy (EC) enables in vivo microscopic imaging at 1400-fold magnification, thereby allowing the analysis of mucosal structures at the cellular level. In contrast to fluorescence imaging with confocal laser endomicroscopy which allows analysis of mucosal structures up to 250 μm in depth, EC is based on the principle of contact light microscopy and only allows visualisation of the very superficial mucosal layer. Aim  To systematically review the feasibility and diagnostic yield of EC for in vivo diagnosis of diseases. Methods  A systematic search of the literature on diagnostic interventions in the gastrointestinal tract u…

Fluorescence-lifetime imaging microscopyPathologymedicine.medical_specialtyHepatologymedicine.diagnostic_testbusiness.industryGastroenterologyMagnificationOptical Biopsymedicine.diseaseColon polypsEndoscopyReview articleIn vivomedicinePharmacology (medical)RadiologybusinessPreclinical imagingAlimentary Pharmacology & Therapeutics
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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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Site-Specific Dual Labeling of Proteins on Cysteine Residues with Chlorotetrazines

2018

International audience; Dual-labeled biomolecules constitute a new generation of bioconjugates with promising applications in therapy and diagnosis. Unfortunately, the development of these new families of biologics is hampered by the technical difficulties associated with their construction. In particular, the site specificity of the conjugation is critical as the number and position of payloads can have a dramatic impact on the pharmacokinetics of the bioconjugate. Herein, we introduce dichlorotetrazine as a trivalent platform for the selective double modification of proteins on cysteine residues. This strategy is applied to the dual labeling of albumin with a macrocyclic chelator for nucl…

Fluorescence-lifetime imaging microscopyTetrazolesbioconjugation010402 general chemistry01 natural sciencesCatalysisMicesite-specific labelingAnimalsHumans[CHIM]Chemical SciencesTissue DistributionAmino Acid SequenceAminescysteineSerum AlbuminDual labelingFluorescent Dyeschemistry.chemical_classificationBioconjugation010405 organic chemistryBiomoleculeOptical Imagingprotein engineeringGeneral MedicineGeneral ChemistryProtein engineeringFluorescence0104 chemical scienceschemistryBiochemistryclick chemistryClick chemistryPeptidesCysteine
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First multiphoton tomography of brain in man

2016

We report on the first two-photon in vivo brain tissue imaging study in man. High resolution in vivo histology by multiphoton tomography (MPT) including two-photon FLIM was performed in the operation theatre during neurosurgery to evaluate the feasibility to detect label-free tumor borders with subcellular resolution. This feasibility study demonstrates, that MPT has the potential to identify tumor borders on a cellular level in nearly real-time.

Fluorescence-lifetime imaging microscopymedicine.medical_specialtyPathologybusiness.industryBrain tumorImaging studyMultiphoton tomographyBrain tissueCellular levelOptical Biopsymedicine.disease03 medical and health sciences0302 clinical medicineIn vivo030220 oncology & carcinogenesismedicineMedical physicsbusiness030217 neurology & neurosurgeryClinical and Translational Neurophotonics; Neural Imaging and Sensing; and Optogenetics and Optical Manipulation
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Carbon Nanodots as Functional Excipient to Develop Highly Stable and Smart PLGA Nanoparticles Useful in Cancer Theranostics

2020

Theranostic systems have attracted considerable attention for their multifunctional approach to cancer. Among these, carbon nanodots (CDs) emerged as luminescent nanomaterials due to their exceptional chemical properties, synthetic ease, biocompatibility, and for their photothermal and fluorescent properties useful in cancer photothermal therapy. However, premature renal excretion due to the small size of these particles limits their biomedical application. To overcome these limitations, here, hybrid poly(lactic-co-glycolic acid) (PLGA-CDs) nanoparticles with suitable size distribution and stability have been developed. CDs were decisive in the preparation of polymeric nanoparticles, not on…

Fluorescence-lifetime imaging microscopyphotothermal therapyBiocompatibilitylcsh:RS1-441Pharmaceutical ScienceExcipientNanoparticleNanotechnology02 engineering and technology010402 general chemistry01 natural sciencesArticleNanomaterialslcsh:Pharmacy and materia medicahybrid nanoparticleschemistry.chemical_compoundcarbon nanodotmedicinecarbon nanodotsViability assaycancer theranosticChemistryhybrid nanoparticlePLGAimagingPhotothermal therapy021001 nanoscience & nanotechnology0104 chemical sciencesPLGASettore CHIM/09 - Farmaceutico Tecnologico Applicativocancer theranostics0210 nano-technologymedicine.drugPharmaceutics
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Highly Homogeneous Biotinylated Carbon Nanodots: Red-Emitting Nanoheaters as Theranostic Agents toward Precision Cancer Medicine

2019

Very recent red-emissive carbon nanodots (CDs) have shown potential as near-infrared converting tools to produce local heat useful in cancer theranostics. Besides, CDs seem very appealing for clinical applications combining hyperthermia, imaging, and drug delivery in a single platform capable of selectively targeting cancer cells. However, CDs still suffer from dramatic dot-to-dot variability issues such that a rational design of their structural, optical, and chemical characteristics for medical applications has been impossible so far. Herein, we report for the first time a simple and highly controllable layer-by-layer synthesis of biotin-decorated CDs with monodisperse size distribution, …

Fluorescence-lifetime imaging microscopyphotothermal therapyMaterials scienceCell SurvivalAntineoplastic AgentsNanotechnology02 engineering and technology010402 general chemistrytargeted cancer therapy01 natural sciencesDrug Delivery Systemsbiotincarbon nanodotCell Line TumorCarbon nanodotsHumansGeneral Materials SciencePrecision MedicineRational designimagingPhotothermal therapy021001 nanoscience & nanotechnologyCarbonNanostructures0104 chemical sciencesbiotin; carbon nanodots; imaging; photothermal therapy; targeted cancer therapy.Settore CHIM/09 - Farmaceutico Tecnologico ApplicativoBiotinylationDrug deliveryCancer cellMCF-7 CellsSurface modification0210 nano-technologyACS Applied Materials & Interfaces
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Zinc complexes as fluorescent chemosensors for nucleic acids: new perspectives for a “boring” element

2014

Zinc(ii) complexes are effective and selective nucleic acid-binders and strongly fluorescent molecules in the low energy range, from the visible to the near infrared. These two properties have often been exploited to quantitatively detect nucleic acids in biological samples, in both in vitro and in vivo models. In particular, the fluorescent emission of several zinc(ii) complexes is drastically enhanced or quenched by the binding to nucleic acids and/or upon visible light exposure, in a different fashion in bulk solution and when bound to DNA. The twofold objective of this perspective is (1) to review recent utilisations of zinc(ii) complexes as selective fluorescent probes for nucleic acid…

Fluorescent DyeInorganic chemistrychemistry.chemical_elementLigandZincLigandsInorganic Chemistrychemistry.chemical_compoundCoordination ComplexesIn vivoNucleic AcidsMoleculeFluorescent DyesCoordination ComplexeNucleic AcidChemistryMedicine (all)Settore CHIM/08 - Chimica FarmaceuticaFluorescenceCombinatorial chemistryIn vitroZincSpectrometry FluorescenceSettore CHIM/03 - Chimica Generale E InorganicaNucleic acidDNAVisible spectrumDalton Transactions
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Photoluminescent decoration of iron oxide magnetic nanoparticles for dual-imaging applications

2018

A selective functionalization of dopamine amino group with the photoluminescent 7-nitroben-zofurazan was achieved through a one-pot protection-functionalization-deprotection sequence. The resulting fluorescent catecholic ligand was used as a capping agent for iron oxide nanoparticles thus obtaining photoluminescent magnetic nanoparticles (PL-MNPs). The PL-MNPs were then embedded into PLGA-b-PEG polymeric nanocarriers which quenched the emission of the capping agent. Full recovery of fluorescence was observed after disassembling the polymeric layer of the nanoparticle, thus supporting the use of PL-MNPs as a multifunctional system for targeted drug delivery.

Fluorescent nanoparticleMaterials scienceAtomic and Molecular Physics and OpticDopamineMagnetic nanoparticleIron oxideNanoparticleNanotechnologyBioengineering02 engineering and technology010402 general chemistry01 natural scienceschemistry.chemical_compoundGeneral Materials ScienceChemistry (all)technology industry and agricultureSettore CHIM/06 - Chimica OrganicaGeneral Chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsFluorescenceAtomic and Molecular Physics and Optics0104 chemical scienceschemistryTargeted drug deliveryDual-imagingModeling and SimulationDrug deliveryDrug deliverySurface modificationMagnetic nanoparticlesMaterials Science (all)0210 nano-technologyIron oxide nanoparticles
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Fluorescence and spin properties of defects in single digit nanodiamonds

2009

International audience; This article reports stable photoluminescence and high-contrast optically detected electron spin resonance (ODESR) from single nitrogen-vacancy (NV) defect centers created within ultrasmall, disperse nanodiamonds of radius less than 4 nm. Unexpectedly, the efficiency for the production of NV fluorescent defects by electron irradiation is found to be independent of the size of the nanocrystals. Fluorescence lifetime imaging shows lifetimes with a mean value of around 17 ns, only slightly longer than the bulk value of the defects. After proper surface cleaning, the dephasing times of the electron spin resonance in the nanocrystals approach values of some microseconds, …

Fluorescent nanoparticleMaterials sciencePhotoluminescenceDephasingGeneral Physics and AstronomyNanoparticleNanotechnology02 engineering and technologyengineering.material010402 general chemistry01 natural scienceslaw.invention[SPI.MAT]Engineering Sciences [physics]/MaterialslawElectron beam processingGeneral Materials Scienceconfocal fluorescence microscopyElectron paramagnetic resonancebusiness.industrydefects in diamondelectron spin resonanceGeneral EngineeringDiamond021001 nanoscience & nanotechnologyFluorescencefluorescence lifetime imaging0104 chemical sciencesNanocrystalengineeringOptoelectronicssingle molecule spectroscopysingle spin manipulation0210 nano-technologybusiness
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Fluorescent-Cavity Host: An Efficient Probe to Study Supramolecular Recognition Mechanisms

2018

Using fluorometry to study the interactions between guests and host cavities is often challenging, especially for hosts with small cavities because the fluorophore may not be close to the binding site. Therefore, it is critical to overcome this hurdle to broaden the applicability of fluorometry in supramolecular chemistry. Herein, we designed a fluorescent-cavity host (H1) by conjugating the binding site of a pillar[5]arene cavity and studied its host-guest recognition mechanism in the cavity. Distinct fluorescent responses of H1 were observed for cyano homologues: the fluorescence was enhanced for succinonitrile but quenched for malononitrile. Such an unusual phenomenon with such subtle di…

Fluorophore010405 organic chemistryPillarSupramolecular chemistrymacromolecular substances010402 general chemistry01 natural sciencesFluorescenceFluorescence spectroscopy0104 chemical scienceschemistry.chemical_compoundSuccinonitrilechemistryBiophysicsGeneral Materials SciencePhysical and Theoretical ChemistryBinding siteThe Journal of Physical Chemistry Letters
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