Search results for " blue"

showing 10 items of 237 documents

FRET-based method for evaluation of the efficiency of reversible and irreversible sonoporation.

2017

It is widely known that not all of the treated cells survive after introduction of exogenous molecules via any physical method. Therefore, it is important to develop methods that would allow simultaneous evaluation of both molecular delivery efficiency and cell viability. This study presents Forster resonance energy transfer (FRET)-based method that allows molecular transfer and cell viability evaluation in a single measurement by employing two common fluorescent dyes, namely, ethidium bromide and trypan blue. The method has been validated using cell sonoporation. The FRET-based method allows the efficiency evaluation of both reversible and irreversible sonoporation in a single experiment. …

0301 basic medicineMaterials scienceCell SurvivalSonicationSingle measurementBiomedical EngineeringCHO CellsBiomaterials03 medical and health scienceschemistry.chemical_compoundSonicationCricetulusEthidiumFluorescence Resonance Energy TransferAnimalsHumansViability assayFluorescent DyesTrypan BlueFluorescenceAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materials030104 developmental biologyFörster resonance energy transferchemistryBiophysicsTrypan blueEthidium bromideSonoporationJournal of biomedical optics
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The collagen type I segment long spacing (SLS) and fibrillar forms: Formation by ATP and sulphonated diazo dyes.

2016

The collagen type I segment long spacing (SLS) crystallite is a well-ordered rod-like molecular aggregate, ∼300nm in length, which is produced in vitro under mildly acidic conditions (pH 2.5-3.5) in the presence of 1mM ATP. The formation of the SLS crystallite amplifies the inherent linear structural features of individual collagen heterotrimers, due to the punctate linear distribution and summation of the bulkier amino acid side chains along the length of individual collagen heterotrimers. This can be correlated structurally with the 67nm D-banded collagen fibril that is found in vivo, and formed in vitro. Although first described many years ago, the range of conditions required for ATP-in…

0301 basic medicineMaterials sciencePolymersMethyl blueMuscle Fibers SkeletalGeneral Physics and AstronomyFibrilNegative StainingCollagen Type I03 medical and health scienceschemistry.chemical_compoundAdenosine TriphosphateStructural BiologyPolymer chemistryGeneral Materials ScienceColoring AgentsSirius RedEvans Bluechemistry.chemical_classification030102 biochemistry & molecular biologyFibrillogenesisCell BiologyPolyelectrolytesAmino acidCongo redMicroscopy Electron030104 developmental biologychemistryBiophysicsCrystalliteAzo CompoundsEvans BlueMicron (Oxford, England : 1993)
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Vital dyes in macular hole surgery

2021

Currently, surgical techniques, such as internal limiting membrane peeling, are used widely for macular holes, macular puckers, epiretinal membranes, diabetic macular edema, retinal detachment, retinal vein occlusions, vitreomacular traction, optic pit maculopathy, and Terson syndrome. This study aimed to highlight any differences regarding visual acuity and ocular tomography coherence changes after staining the internal limiting membrane with dilutions of Brilliant Blue G vs. lutein/zeaxanthin-based dyes. This study involved 30 eyes of 30 patients who had undergone posterior pole vitrectomy for idiopathic stage 4 macular hole. The study lot was divided in two subgroups, 15 eyes colored wit…

0301 basic medicinePars planaCancer Researchmedicine.medical_specialtyVisual acuityinternal limiting membranegenetic structuresmedicine.medical_treatmentlutein and zeaxanthin dyesVitrectomyVitreomacular traction03 medical and health sciences0302 clinical medicineImmunology and Microbiology (miscellaneous)intraocular dyesOptic pitmedicinestaining techniqueMacular holepars plana vitrectomybusiness.industryBrilliant Blue GcromovitrectomyRetinal detachmentGeneral MedicineArticlesmedicine.diseaseeye diseasesSurgerymacular hole030104 developmental biologymedicine.anatomical_structure030220 oncology & carcinogenesisMaculopathysense organsmedicine.symptombusinessExperimental and Therapeutic Medicine
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The essentials of marine biotechnology

2021

Coastal countries have traditionally relied on the existing marine resources (e.g., fishing, food, transport, recreation, and tourism) as well as tried to support new economic endeavors (ocean energy, desalination for water supply, and seabed mining). Modern societies and lifestyle resulted in an increased demand for dietary diversity, better health and well-being, new biomedicines, natural cosmeceuticals, environmental conservation, and sustainable energy sources. These societal needs stimulated the interest of researchers on the diverse and underexplored marine environments as promising and sustainable sources of biomolecules and biomass, and they are addressed by the emerging field of ma…

0301 basic medicine[SDV.BIO]Life Sciences [q-bio]/Biotechnologylcsh:QH1-199.5Stakeholder engagementOceanographyResponsible research and innovation (RRI)challangesNatural-productsResponsible research and innovation0302 clinical medicineMarine bioeconomyIn-silico predictionlcsh:SciencevalorizationMarine biodiversityWater Science and TechnologybiodiversityHeavy-metal detoxificationBioprospectingGlobal and Planetary ChangeBioprospectingLead-like moleculesconservationBiological SciencesSustainabilityMarine natural products[SDE]Environmental SciencesSolid-phase microextractionDeep-sea sedimentsNatural Sciencesmarine biotechnologymarine bioeconomyMarine conservationmarine biotechnology valorization biodiversity conservation challangesOcean EngineeringAquatic Sciencelcsh:General. Including nature conservation geographical distributionBioactive compoundsBlue growthWaste-water treatment03 medical and health sciencesbioprospecting ; blue growth ; marine biodiversity ; marine natural products ; sustainability ; ethics ; responsible research and innovation (RRI) ; marine bioeconomy14. Life underwaterRecreation[SDU.STU.OC]Sciences of the Universe [physics]/Earth Sciences/OceanographyEthicsResponsible Research and Innovationbusiness.industrySecondary metabolitesParticulate organic-carbonBiotechnology030104 developmental biology13. Climate actionAgricultureSustainabilitymarine biotechnology ; Blue growth ; Marine Biodiversity ; marine natural product ; sustainability ; Ethics ; Responsible research & innovationlcsh:Qbusiness030217 neurology & neurosurgeryTourism
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The shell of the invasive bivalve species Dreissena polymorpha: biochemical, elemental and textural Investigations.

2016

28 pages; International audience; The zebra mussel Dreissena polymorpha is a well-established invasive model organism. Although extensively used in environmental sciences, virtually nothing is known of the molecular process of its shell calcification. By describing the microstructure, geochemistry and biochemistry/proteomics of the shell, the present study aims at promoting this species as a model organism in biomineralization studies, in order to establish a bridge with ecotoxicology, while sketching evolutionary conclusions. The shell of D. polymorpha exhibits the classical crossed-lamellar/complex crossed lamellar combination found in several heterodont bivalves, in addition to an extern…

0301 basic medicinelcsh:MedicineInvasive Species010501 environmental sciencesProteomicsEcotoxicology01 natural sciencesBiochemistrychemistry.chemical_compoundDatabase and Informatics MethodsMaterials PhysicsLectinsMusselslcsh:ScienceMicrostructureGel ElectrophoresisStainingMineralsMultidisciplinarybiologyOrganic CompoundsPhysicsMonosaccharidesBiological EvolutionEuropeChemistry[ SDV.BBM.GTP ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]Physical SciencesFranceSequence AnalysisResearch ArticleSilver StainingBivalvesMaterials ScienceShell (structure)CarbohydratesSequence DatabasesElectrophoretic StainingResearch and Analysis MethodsDreissenaDreissenaCoomassie Blue staining03 medical and health sciencesElectrophoretic TechniquesSpecies ColonizationAnimal Shells[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]Botany[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyEcotoxicologyAnimals[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular Biology14. Life underwaterShell calcificationMolecular Biology TechniquesSequencing Techniques[SDV.IB.BIO]Life Sciences [q-bio]/Bioengineering/BiomaterialsMolecular Biology[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular Biology0105 earth and related environmental scienceslcsh:ROrganic ChemistryEcology and Environmental SciencesOrganismsChemical CompoundsBiology and Life SciencesProteinsMolluscs[ SDV.IB.BIO ] Life Sciences [q-bio]/Bioengineering/Biomaterialsbiology.organism_classificationInvertebrates030104 developmental biologyCalcium carbonateBiological DatabaseschemistrySpecimen Preparation and TreatmentZebra mussellcsh:QIntroduced SpeciesBiomineralization
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Maristem stem cells of marine/aquatic invertebrates: from basic research to innovative applications

2018

The “stem cells” discipline represents one of the most dynamic areas in biomedicine. While adult marine/aquatic invertebrate stem cell (MISC) biology is of prime research and medical interest, studies on stem cells from organisms outside the classical vertebrate (e.g., human, mouse, and zebrafish) and invertebrate (e.g., Drosophila, Caenorhabditis) models have not been pursued vigorously. Marine/aquatic invertebrates constitute the largest biodiversity and the widest phylogenetic radiation on Earth, from morphologically simple organisms (e.g., sponges, cnidarians), to the more complex mollusks, crustaceans, echinoderms, and protochordates. These organisms contain a kaleidoscope of MISC-type…

0301 basic medicinemarine/aquatic invertebratesQH301 Biologymarine/aquatic invertebrateBioactive moleculesT-NDASGeography Planning and Developmentlcsh:TJ807-830BiodiversitySettore BIO/05 - ZoologiaStem cellsblue biotechnology0302 clinical medicineBioactive moleculeBasic researchaging ; bioactive molecules ; blue biotechnology ; cancer ; cell culture ; COST Action ; Europe ; marine/aquatic invertebrates ; regeneration ; stem cellsGeneralLiterature_REFERENCE(e.g.dictionariesencyclopediasglossaries)lcsh:Environmental sciencesCancerlcsh:GE1-350quinonessea-urchin eggsStem cellGeographyPolicy and LawEcologylcsh:Environmental effects of industries and plantsManagementEuropeMarine/aquatic invertebrateStem cellCèl·lules mareEuropean communityMonitoringaging; bioactive molecules; blue biotechnology; cancer; cell culture; COST Action; Europe; marine/aquatic invertebrates; regeneration; stem cellslcsh:Renewable energy sourcesCOST ActionAging; Bioactive molecules; Blue biotechnology; Cancer; Cell culture; COST Action; Europe; Marine/aquatic invertebrates; Regeneration; Stem cells; Geography Planning and Development; Renewable Energy Sustainability and the Environment; Management Monitoring Policy and LawManagement Monitoring Policy and LawBiologyQH30103 medical and health sciencesSDG 3 - Good Health and Well-beingNear neighborunitsstem cellsbioactive moleculesevolutioncancerSDG 14 - Life Below WaterRenewable Energy14. Life underwaterSH Aquaculture. Fisheries. AnglingSHRegeneration (ecology)BiologyBiomedicineInvertebratePlanning and Developmentcell cultureScience & TechnologySustainability and the EnvironmentRenewable Energy Sustainability and the Environmentbusiness.industryMarine invertebratesagingInvertebrats marinsbioactive moleculecell_developmental_biology030104 developmental biologylcsh:TD194-19513. Climate actionregenerationproteinbusiness030217 neurology & neurosurgery
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Protective Effect of Astaxanthin on Primary Retinal Cells of the GerbilPsammomys ObesusCultured in DiabeticMilieu

2016

Astaxanthin is a major marine carotenoid with powerful antioxidant and neuroprotective properties. The in vitro protective effect of astaxanthin in adult retinal cells of the type-2 diabetic model Psammomys obesus in hyperglycemic conditions was investigated. Primary retinal cells were cultured in normal (5 mM) or high concentrations of glucose (25 and 40 mM) for 5 days and treated with 1–20 µM astaxanthin for the last 48 h of culturing. Mitochondrial dehydrogenase activity and cell viability were assessed using MTT test and trypan blue exclusion dye. Retinal cells were characterized by immunohistochemistry. The results showed that mitochondrial function increased significantly (P < 0.05) w…

0301 basic medicinemedicine.medical_specialtyAntioxidantmedicine.medical_treatmentBiophysicsGerbilNeuroprotection03 medical and health scienceschemistry.chemical_compound0302 clinical medicineAstaxanthinInternal medicinemedicineViability assayPharmacologybiologyRetinalCell Biologybiology.organism_classification030104 developmental biologyEndocrinologychemistryBiochemistry030221 ophthalmology & optometryTrypan bluePsammomysFood ScienceJournal of Food Biochemistry
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Colorimetric quantitation of trace amounts of sodium lauryl sulfate in the presence of nucleic acids and proteins

1992

A fast and sensitive procedure for the colorimetric detection of sodium lauryl sulfate (SDS) is presented. The assay is based upon the formation of a chloroform-extractable ion pair between lauryl sulfate and methylene blue that is quantified spectrophotometrically with an estimated detection limit of 150 ng of SDS. The method is suitable for the monitoring of contaminating traces of SDS in protein or nucleic acid samples that have the potential to interfere with enzymatic manipulations such as proteolytic digest, restriction analysis, or reverse transcription. Since the procedure is extremely simple and no special equipment is required it is accessible to every researcher concerned with SD…

1303 BiochemistryTrace AmountsSodiumBiophysicschemistry.chemical_element10050 Institute of Pharmacology and Toxicology610 Medicine & healthBiochemistry1307 Cell Biologychemistry.chemical_compoundNucleic Acids1312 Molecular BiologyAnimalsSulfateColorimetryMolecular BiologyDetection limitChromatographyProteinsSodium Dodecyl SulfateCell BiologyDNAReference StandardsRatsMethylene BluechemistryNucleic acidRNA570 Life sciences; biologyCattleColorimetryQuantitative analysis (chemistry)Methylene blue1304 Biophysics
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Perspectives of Chromo and Magnifying Endoscopy

2003

The goal of every routine endoscopy in the gut is the early diagnosis of malignant and premalignant changes of the mucosa. Chromo- and magnifying endoscopes are exciting new tools and offer detailed analysis of the colonic mucosal surface and pit pattern architecture. This review summarizes recent advances in endoscopic characterization of colorectal lesions using magnification endoscopy and chromoendoscopy. Surface analysis of the colon using chromoendoscopy allows a prediction between non-neoplastic and neoplastic lesions with high specificity. The precise delineation of the borders and a more detailed macroscopic analysis of the lesions are further advantages. In particular, flat adenoma…

AdenomaPathologymedicine.medical_specialtyEndoscopeAdenomaRectumColonoscopySensitivity and SpecificityChromoendoscopymedicineHumansGastrointestinal NeoplasmsIntraepithelial neoplasiaStaining and Labelingmedicine.diagnostic_testbusiness.industryGastroenterologyColonoscopymedicine.diseaseUlcerative colitisEndoscopyMethylene Bluemedicine.anatomical_structureColitis UlcerativeGentian VioletbusinessForecastingJournal of Clinical Gastroenterology
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Contribution of IL-17-producing {gamma}{delta} T cells to the efficacy of anticancer chemotherapy.

2011

IL-17 production by γδ T cells is required for tumor cell infiltration by IFN-γ–producing CD8+ T cells and inhibition of tumor growth in response to anthracyclines.

Adoptive cell transferMESH : AgedMESH : Equipment DesignCD8-Positive T-LymphocytesMESH: CatheterizationInterleukin-23MESH: Long-Term CareMice0302 clinical medicineMESH : CatheterizationT-Lymphocyte SubsetsMESH: NursingImmunology and Allergy[ SDV.IMM ] Life Sciences [q-bio]/ImmunologyInterferon gammaMESH: Quality of Health CareMESH: Professional Review OrganizationsMESH: AgedMESH : Gels0303 health sciencesMice Inbred BALB CCell DeathInterleukin-17MESH : Methylene BlueMESH : Quality of Health CareReceptors Antigen T-Cell gamma-deltaChemotherapy regimenMESH: Transplantation Autologous3. Good healthMESH: Cosmetic TechniquesTreatment Outcomemedicine.anatomical_structureMESH : Cadaver[SDV.IMM]Life Sciences [q-bio]/ImmunologyImmunogenic cell deathSarcoma ExperimentalInterleukin 17MESH : DissectionMESH : Long-Term CareMESH: Nursing CareMESH: Adipose Tissuemedicine.drugSignal TransductionMESH : Transplantation Autologous[SDV.IMM] Life Sciences [q-bio]/ImmunologyMESH : Feasibility StudiesMESH: GelsT cellMESH : MaleImmunologyMESH: DissectionAntineoplastic AgentsBiologyMESH : NursingMESH : Adipose TissueArticleMESH : Facial Muscles03 medical and health sciencesInterferon-gammaLymphocytes Tumor-InfiltratingImmune systemAntigenCell Line TumorMESH: Patient Care PlanningmedicineMESH: CadaverAnimalsMESH : Patient Care Planning030304 developmental biologyMESH: Humansbusiness.industryMESH: Facial MusclesT-cell receptorMESH : HumansCorrectionMESH: MaleMice Inbred C57BLMESH : Cosmetic TechniquesDoxorubicinImmunologyCancer researchMESH : Nursing CareMESH : Professional Review OrganizationsbusinessMESH: Feasibility StudiesCD8030215 immunologyMESH: Methylene BlueMESH: Equipment Design
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