Search results for "MICROSCOPY"

showing 10 items of 3390 documents

PECAM-1 expression in human mesothelial cells: an in vitro study.

1996

Mesothelial cells are actively involved in inflammatory processes by expressing a set of cell adhesion molecules (CAMs). Transmigration of leukocytes into inflamed tissues requires a chemotactic stimulus and engagement of platelet-endothelial cell adhesion molecule-1 (PECAM-1). To investigate the kinetics involved in peritonitis, pure cultures of mesothelial cells are necessary. In previous studies, we have found that human mesothelial cells (HOMES) show a weak constitutive expression of PECAM-1, which cannot be further stimulated by cytokines. It is known that all serous cavities and body fluids contain numerous macrophages which strongly express this adhesion molecule. To identify the cel…

Cell SeparationIn Vitro TechniquesEpitheliumPathology and Forensic MedicineInterferon-gammaE-selectinmedicineHumansCell adhesionMolecular BiologyCells CulturedbiologyChemistryCell adhesion moleculeTumor Necrosis Factor-alphaMonocyteEpithelial CellsCell BiologyGeneral MedicineCell sortingMolecular biologyImmunohistochemistryRecombinant ProteinsCell biologyPlatelet Endothelial Cell Adhesion Molecule-1Microscopy Electronmedicine.anatomical_structureCell culturebiology.proteinNeural cell adhesion moleculeOmentumMesothelial CellInterleukin-1Pathobiology : journal of immunopathology, molecular and cellular biology
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Hsp60 is actively secreted by human tumor cells

2010

Background Hsp60, a Group I mitochondrial chaperonin, is classically considered an intracellular chaperone with residence in the mitochondria; nonetheless, in the last few years it has been found extracellularly as well as in the cell membrane. Important questions remain pertaining to extracellular Hsp60 such as how generalized is its occurrence outside cells, what are its extracellular functions and the translocation mechanisms that transport the chaperone outside of the cell. These questions are particularly relevant for cancer biology since it is believed that extracellular chaperones, like Hsp70, may play an active role in tumor growth and dissemination. Methodology/Principal Findings S…

Cell SurvivalBlotting WesternCellImmunology/Immunomodulationlcsh:MedicineApoptosisBiologyExosomesCell LineAmilorideCell membraneMicroscopy Electron TransmissionCell Line TumorNeoplasmsBiochemistry/Cell Signaling and Trafficking StructuresExtracellularmedicineHumansSecretionlcsh:ScienceMultidisciplinarySettore BIO/16 - Anatomia Umanabeta-Cyclodextrinslcsh:RChaperonin 60MicrovesiclesCell biologyPathology/PathophysiologyHSP60 Mitochondria Chaperonopatiesmedicine.anatomical_structureCell cultureCulture Media ConditionedCancer cellAcetylcholinesteraselcsh:QExtracellular SpaceK562 CellsIntracellularResearch Article
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High-content imaging technology for the evaluation of drug-induced steatosis using a multiparametric cell-based assay.

2012

In the present study, we developed a cell-based protocol for the identification of drugs able to induce steatosis. The assay measures multiple markers of toxicity in a 96-well plate format using high-content screening (HCS) technology. After treating HepG2 cells with increasing concentrations of the tested compounds, toxicity parameters were analyzed using fluorescent probes: BODIPY493/503 (lipid content), 2',7'-dihydrodichlorofluorescein diacetate (reactive oxygen species [ROS] generation), tetramethyl rhodamine methyl ester (mitochondrial membrane potential), propidium iodide (cell viability), and Hoechst 33342 (nuclei staining). A total of 16 drugs previously reported to induce liver ste…

Cell SurvivalCellDrug Evaluation PreclinicalBiologyBiochemistryAnalytical ChemistryCell Linechemistry.chemical_compoundmedicineHumansPropidium iodideViability assayFluorescent Dyeschemistry.chemical_classificationReactive oxygen speciesHep G2 Cellsmedicine.diseaseMolecular biologyStainingFatty Livermedicine.anatomical_structurechemistryLiverMicroscopy FluorescenceHigh-content screeningToxicityMolecular MedicineSteatosisReactive Oxygen SpeciesBiomarkersBiotechnologyJournal of biomolecular screening
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Effects of vinblastine, leucine, and histidine, and 3-methyladenine on autophagy in Ehrlich ascites cells.

1990

The microtubule inhibitor vinblastine causes accumulation of autophagic vacuoles in many cell types. In hepatocytes, many of the accumulated vacuoles are nascent, which has been interpreted to suggest that vinblastine acts by inhibiting the fusion of hydrolase-containing lysosomes with early autophagic vacuoles. However, our previous results suggested that, in Ehrlich ascites cells, vinblastine causes accumulation mainly of older autophagic vacuoles (AVs). This study was undertaken to further characterize the mode of action of vinblastine in these cells. The vinblastine-accumulated AVs were quantified by electron-microscopic morphometry. In addition, the effects of inhibitors of autophagic …

Cell SurvivalPhagocytosisClinical BiochemistryVacuoleProtein degradationBiologyVinblastinePathology and Forensic MedicinePhagocytosisMicrotubuleLeucineLysosomemedicineAutophagyTumor Cells CulturedAnimalsHumansHistidineCarcinoma Ehrlich TumorChildMolecular BiologyAdenineAutophagyVinblastineCell biologyMicroscopy Electronmedicine.anatomical_structureBiochemistryLeucinemedicine.drugExperimental and molecular pathology
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In-situ gelling xyloglucan formulations as 3D artificial niche for adipose stem cell spheroids.

2020

Abstract Three-dimensional spheroidal cell aggregates of adipose stem cells (SASCs) are a distinct upstream population of stem cells present in adipose tissue, with enhanced regeneration properties in vivo. The preservation of the 3D structure of the cells, from extraction to administration, can be a promising strategy to ensure optimal conditions for cell viability and maintenance of stemness potential. With this aim, an artificial niche was created by incorporating the spheroids into an injectable, in-situ gelling solution of partially degalactosylated xyloglucan (dXG) and an ad hoc formulated culture medium for the preservation of stem cell spheroid features. The evolution of the mechani…

Cell SurvivalPopulationCellCell Culture TechniquesAdipose tissue02 engineering and technology[object Object]Biochemistry03 medical and health scienceschemistry.chemical_compoundStructural BiologySpheroids CellularmedicineHumansViability assayeducationMolecular BiologyGlucansCells Cultured030304 developmental biology0303 health scienceseducation.field_of_studyMicroscopyTissue EngineeringViscosityRegeneration (biology)SOXB1 Transcription FactorsSpheroids of adipose stem cells Artificial niche In-situ forming gel Partially degalactosylated xyloglucanSpheroidHydrogelsMesenchymal Stem CellsGeneral MedicineNanog Homeobox Protein021001 nanoscience & nanotechnologyCell biologyCulture MediaXyloglucanmedicine.anatomical_structurechemistryMicroscopy Electron ScanningXylansSettore CHIM/07 - Fondamenti Chimici Delle TecnologieStem cell0210 nano-technologyRheologyShear StrengthOctamer Transcription Factor-3International journal of biological macromolecules
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Inulin-Ethylenediamine Coated SPIONs Magnetoplexes: A Promising Tool for Improving siRNA Delivery.

2015

An inulin based polycation (Inu-EDA) has been synthesized by the grafting of ethylenediamine molecules onto inulin backbone. The obtained inulin copolymer has been though to coat SPIONs (IC-SPIONs) and obtain stable magnetoplexes by complexation of IC-SPIONs with a model duplexed siRNA, for improving oligonucleotide transfection efficiency.The physical-chemical characteristics of IC-SPIONs and IC-SPIONs/siRNA magnetoplexes have been investigated by scanning and transmission electron microscopies, dynamic light scattering, FT-IR and qualitative surface elementary analysis. Cell compatibility and internalization in vitro of IC-SPIONs have been evaluated by MTS and fluorescence microscopy resp…

Cell SurvivalSurface PropertiesDrug CompoundingInulinPharmaceutical ScienceTransfectionpolycationchemistry.chemical_compoundDynamic light scatteringMicroscopy Electron TransmissionSpectroscopy Fourier Transform InfraredFluorescence microscopeHumansPharmacology (medical)Particle SizeRNA Small InterferingMagnetite NanoparticlesPharmacologyDrug CarriersChemistryOligonucleotideOrganic ChemistryInulinTransfectionEthylenediaminesHCT116 CellsIn vitroFerrosoferric OxideSPIONsTargeted drug deliveryBiochemistryCell cultureinulin; magnetoplexes; polycation; siRNA; SPIONssiRNABiophysicsMicroscopy Electron ScanningMolecular Medicineinulin magnetoplexes polycation siRNA SPIONsBiotechnologymagnetoplexesPharmaceutical research
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Constancy of diameter through the cell cycle ofSalmonella typhimurium LT2

1982

Measurements of cell diameter and length inSalmonella typhimurium LT2 cells were correlated using both light and electron microscopy. In cultures growing at high, intermediate, and low rates, cell diameter does not change with length. This constancy is also maintained in septated cells before division. Since length increases continuously with cell age, the above observations mean that cells maintain a constant diameter during the cell cycle.

Cell diameterCellGeneral MedicineCell cycleBiologyApplied Microbiology and BiotechnologyMicrobiologylaw.inventionCell biologymedicine.anatomical_structurelawMicroscopymedicineElectron microscopeCurrent Microbiology
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An unconventional role for miRNA: let-7 activates Toll-like receptor 7 and causes neurodegeneration

2011

Activation of innate immune receptors by host-derived factors exacerbates CNS damage, but the identity of these factors remains elusive. We uncovered an unconventional role for the microRNA let-7, a highly abundant regulator of gene expression in the CNS, in which extracellular let-7 activates the RNA-sensing Toll-like receptor (TLR) 7 and induces neurodegeneration through neuronal TLR7. Cerebrospinal fluid (CSF) from individuals with Alzheimer’s disease contains increased amounts of let-7b, and extracellular introduction of let-7b into the CSF of wild-type mice by intrathecal injection resulted in neurodegeneration. Mice lacking TLR7 were resistant to this neurodegenerative effect, but thi…

Cell signalingApoptosisElectrophoretic Mobility Shift AssayBiologyReal-Time Polymerase Chain ReactionMiceAlzheimer DiseasemicroRNAExtracellularmedicineAnimalsHumansReceptorIn Situ HybridizationMice KnockoutNeuronsToll-like receptorMembrane GlycoproteinsMicroscopy ConfocalInnate immune systemGeneral NeuroscienceNeurodegenerationBrainvirus diseasesTLR7medicine.diseaseImmunohistochemistryMice Inbred C57BLMicroRNAsHEK293 CellsToll-Like Receptor 7Nerve DegenerationCancer researchSignal TransductionNature Neuroscience
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The translocation of signaling molecules in dark adapting mammalian rod photoreceptor cells is dependent on the cytoskeleton.

2008

In vertebrate rod photoreceptor cells, arrestin and the visual G-protein transducin move between the inner segment and outer segment in response to changes in light. This stimulus dependent translocation of signalling molecules is assumed to participate in long term light adaptation of photoreceptors. So far the cellular basis for the transport mechanisms underlying these intracellular movements remains largely elusive. Here we investigated the dependency of these movements on actin filaments and the microtubule cytoskeleton of photoreceptor cells. Co-cultures of mouse retina and retinal pigment epithelium were incubated with drugs stabilizing and destabilizing the cytoskeleton. The actin a…

Cell signalingCytochalasin Dgenetic structuresLightPaclitaxelPhalloidineDark AdaptationBiologyHeterocyclic Compounds 4 or More RingsMicrotubulesRetinaMiceStructural BiologyMicrotubuleRetinal Rod Photoreceptor CellsCytoskeletal drugsThiabendazolemedicineArrestinAnimalsTransducinCytoskeletonMicroscopy ImmunoelectronActinCytoskeletonVision OcularMice KnockoutRetinal pigment epitheliumArrestinHomozygoteCell BiologyDarknessRod Cell Outer Segmenteye diseasesActinsCell biologyMice Inbred C57BLActin CytoskeletonProtein Transportmedicine.anatomical_structureMicroscopy Fluorescencesense organsTransducinCell Migration AssaysSignal TransductionCell motility and the cytoskeleton
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Odorant binding changes the electrical properties of olfactory receptors at the nanoscale

2021

Olfactory receptors (ORs) comprise the largest multigene family in the vertebrates. They belong to the class A (rhodopsin-like) family of G protein-coupled receptors (GPCRs), which are the most abundant membrane proteins, having widespread, significant roles in signal transduction in cells, and therefore, they are a major pharmacological target. Moreover, ORs displayed high selectivity and sensitivity towards odorant detection, a characteristic that raised the interest for developing biohybrid sensors based on ORs for the detection of volatile compounds. The transduction of odorant binding into cellular signaling by ORs is not well understood and knowing its mechanism would enable developin…

Cell signalingOlfactory receptorOdorant bindingChemistryolfactory receptorodorant bindingImpedance parameterslaw.invention[SDV.AEN] Life Sciences [q-bio]/Food and Nutritionmedicine.anatomical_structureopen-circuit voltagelawelectrochemical scanning tunneling microscopy (EC-STM)impedance[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologymedicineBiophysicsScanning tunneling microscope[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biochemistry [q-bio.BM]ReceptorTransduction (physiology)[SDV.AEN]Life Sciences [q-bio]/Food and NutritionElectrochemical potential
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