Search results for "GLYCOSAMINOGLYCANS"

showing 10 items of 57 documents

Metachromatic staining and electron dense reaction of glycosaminoglycans by means of Cuprolinic Blue

1987

The cationic phthalocyanin-like dye Cuprolinic Blue, unlike phthalocyanin dyes such as Alcian Blue or Astra Blue, can definitely exhibit a clear metachromatic reaction with appropriate substrates. The application of Cuprolinic Blue to epoxy-embedded semithin sections revealed that mast cell cytoplasmic granules, goblet cell mucin and cartilage matrix stained in violet shades (metachromatic), whereas nuclear chromatin presented a bright blue coloration (orthochromatic). The metachromatic structures showed a high degree of contrast when ultrathin sections treated with Cuprolinic Blue were examined by electron microscopy. Cytophotometric measurements of stained components from the large intest…

MaleCuprolinic blueIndolesBone matrixCytoplasmic Granuleslaw.inventionGlycosaminoglycanMicelawOrganometallic CompoundsmedicineAnimalsMast CellsIntestinal MucosaColoring AgentsGlycosaminoglycansGoblet cellHistocytochemistryChemistryMetachromasiaMucinsCell BiologyAnatomyMast cellRatsStainingmedicine.anatomical_structureSpectrophotometryBiophysicsFemaleAnatomyElectron microscopeThe Histochemical Journal
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A barium method for the cytochemical detection of sulfated glycosaminoglycans in mast cells and basophilic leukocytes.

1999

Barium ions precipitate inorganic as well as organic sulfate compounds and they can be detected by a reaction with sodium rhodizonate. In this work, we describe the use of a barium method for the selective demonstration of sulfated glycosaminoglycans in cytoplasmic granules of mast cells and basophilic leukocytes. Methanol-fixed smears of mouse peritoneal mast cells and rat bone marrow basophils were treated with 5% BaCl2 for 10 min, followed by staining with either 0.2% sodium rhodizonate in 50% ethanol for 2 h at 60 degrees C, or 0.01% brilliant green in distilled water for 1 min. Light microscopic observation revealed a strong staining reaction of the cytoplasmic granules of these cell t…

MaleHistologychemistry.chemical_elementBone Marrow CellsCytoplasmic GranulesGlycosaminoglycanchemistry.chemical_compoundMiceSulfationmedicineAnimalsPeritoneal LavageMast CellsRats WistarColoring AgentsPeritoneal CavityGlycosaminoglycansMice Inbred BALB CCyclohexanonesHistocytochemistryBariumCell BiologyGeneral MedicineMast cellMolecular biologyStainingBasophilsRatsBasophilicQuaternary Ammonium Compoundsmedicine.anatomical_structureBiochemistryDistilled waterchemistryBrilliant greenBariumElectron Probe MicroanalysisActa histochemica
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Ruthenium red staining of polyanion containing structures in sections from epoxy-resin embedded tissues

1984

Summary Staining by ruthenium red (0.5 mg/ml in borate buffer at pH = 9.2) has been used for light and electron microscopic visualization of polyanion containing structures in sections from glutaraldehyde-fixed, epoxy-embedded tissues. This staining technique can be applied in a simple and rapid way, showing the reactive cell components with suitable resolution and contrast. Preliminary spectrophotometric studies show the correspondence in absorption characteristics of the dye which is bound to polyanions in situ or in vitro .

MaleIn situRuthenium redHistologyStaining techniqueRutheniumSalivary GlandsMicechemistry.chemical_compoundTongueBone MarrowTestisAnimalsIntestine LargeGlycosaminoglycansStaining and LabelingEpoxy ResinsUterusResolution (electron density)Cell BiologyGeneral MedicineEpoxyRuthenium RedRatsStainingMicroscopy ElectronBiochemistrychemistrySpectrophotometryBORATE BUFFERvisual_artvisual_art.visual_art_mediumDrosophilaFemaleAbsorption (chemistry)Nuclear chemistryActa Histochemica
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Ultrastructure and formation of the physogastric termite queen cuticle

1982

0040-8166 (Print) Journal Article; The physogastric termite queen is the most striking example in insects of growth in size without cuticular moulting. This phenomenon has been studied with electron microscopy and histochemical tests in two species of higher termites, Cubitermes fungifaber and Macrotermes bellicosus. The abdominal hypertrophy (physogastry) is allowed by growth of the arthrodial membranes of the swarming imago. The growth is slow (over several years) but important: the cuticular dry weight is multiplied by 20 in C. fungifaber, by 100-150 in M. bellicosus. The termite queen cuticle arises from the transformation of the cuticle of the swarming imago or imaginal cuticle (unfold…

MaleInsectaMembranes/ultrastructureSwarming (honey bee)Arthropod cuticleElectronMacrotermes bellicosusAnimalsGlycosaminoglycansGlycosaminoglycans/analysisMicroscopyMembranesbiologyHistocytochemistryCell BiologyGeneral MedicineAnatomyPeriodic Acid-Schiff Reactionbiology.organism_classificationMicroscopy ElectronCubitermes fungifaberUltrastructureFemaleMoultingInsects/analysis/*growth & development/ultrastructureDevelopmental Biology
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Biodegradable collagen matrix implant versus mitomycin-C in trabeculectomy: five-year follow-up.

2015

Background Clinical studies comparing trabeculectomy augmented with Ologen implant (OLO) versus trabeculectomy plus mitomycin-C (MMC) show contradictory results. To obtain long-term data, we report an extended 5-year follow-up trial evaluating the safety and efficacy of OLO as adjuvant compared to low-dosage MMC in trabeculectomy. Methods Forty glaucoma patients (40 eyes) assigned to trabeculectomy with MMC or Ologen. Primary outcome: target IOP at ≤21, ≤17 and ≤15 mmHg; complete and qualified success endpoint rates. Secondary outcomes: visual acuity (VA), mean deviation (MD), bleb evaluation, according to Moorfields Bleb Grading System (MBGS); spectral domain OCT (SD-OCT) bleb examination;…

MaleIntraocular pressureVisual acuitygenetic structuresmedicine.medical_treatmentVisual AcuityGlaucomaExfoliation Syndrome0302 clinical medicineAbsorbable ImplantsTrabeculectomyExtended 5-yrs follow-upExtended 5-yrs follow-up; Mitomycin-C; Ologen; Trabeculectomy;GlycosaminoglycansGeneral MedicineMiddle AgedMitomycin-CFemaleCollagenmedicine.symptomGlaucoma Open-AngleTomography Optical CoherenceHumanResearch ArticleAdultmedicine.medical_specialtyAlkylating AgentsMitomycinTrabeculectomyOlogenFollow-Up Studie03 medical and health sciencesAbsorbable ImplantOphthalmologymedicineHumansIntraocular PressureAgedSettore MED/30 - Malattie Apparato Visivobusiness.industryMitomycin CFive year follow upANTIGLAUCOMA MEDICATIONSAlkylating Agentmedicine.diseaseeye diseasesSurgeryOphthalmologyGlycosaminoglycan030221 ophthalmology & optometryImplantsense organsbusiness030217 neurology & neurosurgeryFollow-Up StudiesBMC ophthalmology
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Biodegradable collagen matrix implant vs mitomycin-C as an adjuvant in trabeculectomy: a 24-month, randomized clinical trial

2011

AIM: To verify the safety and efficacy of Ologen (OLO) implant as adjuvant compared with low-dosage mitomycin-C (MMC) in trabeculectomy. METHODS: This was a prospective randomized clinical trial with a 24-month follow-up. Forty glaucoma patients (40 eyes) were assigned to trabeculectomy with MMC or OLO. Primary outcome includes target IOP at ≤21, ≤17, and ≤15 mm Hg; complete (target IOP without medications), and qualified success (target IOP regardless of medications). Secondary outcomes include bleb evaluation, according to Moorfields Bleb Grading System (MBGS); spectral domain optical coherence tomography (SD-OCT) examination; number of glaucoma medications; and frequency of postoperative…

MaleIntraocular pressuremedicine.medical_specialtymedicine.medical_treatmentMitomycinGlaucomaTrabeculectomyMatrix (biology)law.inventionRandomized controlled triallawAbsorbable ImplantsmedicineTrabeculectomyHumansProspective StudiesIntraocular PressureAgedGlycosaminoglycansIntraoperative CareSettore MED/30 - Malattie Apparato Visivobusiness.industryMitomycin CGlaucomaProstheses and ImplantsMiddle AgedOlogen MMC trabeculectomymedicine.diseaseSurgeryOphthalmologyCross-Linking ReagentsClinical StudyFemaleImplantCollagenbusinessAdjuvantTomography Optical Coherence
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Early kinetics of integration of collagen-glycosaminoglycan regenerative scaffolds in a diabetic mouse model.

2013

Collagen-glycosaminoglycan scaffolds, originally designed to treat severe burns, are now commonly used in patients with complex wounds associated with diabetes mellitus. In this study, the authors investigated how the thickness of the scaffold would affect cellular integration with the diabetic host and whether this can be accelerated using subatmospheric pressure wound therapy devices.Collagen-glycosaminoglycan scaffolds, 500 to 2000-μm thick, were applied to dorsal wounds in genetically diabetic mice. In addition, 1000-μm collagen-glycosaminoglycan scaffolds with and without silicone were treated with a subatmospheric pressure device (-125 mmHg). On days 5 and 10, cellular and vascular in…

MaleScaffoldPathologymedicine.medical_specialtyMice Inbred StrainsGlycosaminoglycanDiabetes ComplicationsMiceTissue scaffoldsDiabetes mellitusMedicineAnimalsRegenerationSevere burnIn patientGlycosaminoglycansSkinintegumentary systemTissue Scaffoldsbusiness.industryDiabetic mouseAnatomymedicine.diseaseKineticsWounds and InjuriesSurgeryCollagenbusinessPlastic and reconstructive surgery
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Cycloastragenol as an Exogenous Enhancer of Chondrogenic Differentiation of Human Adipose-Derived Mesenchymal Stem Cells. A Morphological Study

2020

Stem cell therapy and tissue engineering represent a promising approach for cartilage regeneration. However, they present limits in terms of mechanical properties and premature de-differentiation of engineered cartilage. Cycloastragenol (CAG), a triterpenoid saponin compound and a hydrolysis product of the main ingredient in Astragalus membranaceous, has been explored for cartilage regeneration. The aim of this study was to investigate CAG&rsquo

MaleSettore BIO/17 - IstologiaSapogeninsTime Factorscycloastragenolhuman adipose-derived mesenchymal stem cellsArticleExtracellular matrixchemistry.chemical_compoundTissue engineeringchondrocyte phenotypemedicineHumansCycloastragenolAggrecanscartilage regenerationCell Shapelcsh:QH301-705.5AggrecanCells CulturedGlycoproteinsGlycosaminoglycansCell DeathChemistryCartilageRegeneration (biology)Mesenchymal stem cellCell DifferentiationMesenchymal Stem CellsSOX9 Transcription FactorGeneral MedicineMiddle AgedChondrogenesisCell biologycartilage regeneration; chondrocyte phenotype; cycloastragenol; human adipose-derived mesenchymal stem cells; hypertrophy; tissue engineeringmedicine.anatomical_structurelcsh:Biology (General)tissue engineeringFemaleCollagenhypertrophyChondrogenesiscartilage regeneration; chondrocyte phenotype; cycloastragenol; human adipose-derived mesenchymal stem cells; hypertrophy; tissue engineering; Aggrecans; Cell Death; Cell Differentiation; Cell Shape; Cells Cultured; Chondrogenesis; Collagen; Female; Glycoproteins; Glycosaminoglycans; Humans; Male; Mesenchymal Stem Cells; Middle Aged; SOX9 Transcription Factor; Sapogenins; Time FactorsCells
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Perlecan-Induced Suppression of Smooth Muscle Cell Proliferation Is Mediated Through Increased Activity of the Tumor Suppressor PTEN

2004

We were interested in the elucidation of the interaction between the heparan sulfate proteoglycan, perlecan, and PTEN in the regulation of vascular smooth muscle cell (SMC) growth. We verified serum-stimulated DNA synthesis, and Akt and FAK phosphorylation were significantly reduced in SMCs overexpressing wild-type PTEN. Our previous studies showed perlecan is a potent inhibitor of serum-stimulated SMC growth. We report in the present study, compared with SMCs plated on fibronectin, serum-stimulated SMCs plated on perlecan exhibited increased PTEN activity, decreased FAK and Akt activities, and high levels of p27, consistent with SMC growth arrest. Adenoviral-mediated overexpression of cons…

MaleVascular smooth musclePhysiology:CIENCIAS MÉDICAS ::Farmacodinámica [UNESCO]Aorta ThoracicBasement MembraneCulture Media Serum-FreeMuscle Smooth VascularRats Sprague-DawleyMicePhosphorylationCells CulturedGlycosaminoglycansbiologyProtein-Tyrosine KinasesCell cycle:CIENCIAS MÉDICAS [UNESCO]musculoskeletal systemUNESCO::CIENCIAS MÉDICAS ::FarmacodinámicaUNESCO::CIENCIAS MÉDICAScardiovascular systemPhosphorylationSmooth muscle cell proliferationCardiology and Cardiovascular MedicineCell DivisionDNA ReplicationBasement membraneRecombinant Fusion ProteinsPerlecanProtein Serine-Threonine KinasesVascular injurySmooth muscle cell proliferation ; Restenosis ; Vascular injury ; Vascular development ; Basement membraneCatheterizationProto-Oncogene ProteinsAnimalsPTENProtein kinase BRestenosisCell growthVascular developmentOligonucleotides AntisenseFibronectinsRatsFibronectinFocal Adhesion Kinase 1Focal Adhesion Protein-Tyrosine Kinasesbiology.proteinCancer researchHeparitin SulfateCarotid Artery InjuriesProtein Processing Post-TranslationalProto-Oncogene Proteins c-aktHeparan Sulfate ProteoglycansCirculation Research
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Human nasoseptal chondrocytes maintain their differentiated phenotype on PLLA scaffolds produced by thermally induced phase separation and supplement…

2018

Damage of hyaline cartilage such as nasoseptal cartilage requires proper reconstruction, which remains challenging due to its low intrinsic repair capacity. Implantation of autologous chondrocytes in combination with a biomimetic biomaterial represents a promising strategy to support cartilage repair. Despite so far mostly tested for bone tissue engineering, bioactive glass (BG) could exert stimulatory effects on chondrogenesis. The aim of this work was to produce and characterize composite porous poly(L-lactide) (PLLA)/1393BG scaffolds via thermally induced phase separation (TIPS) technique and assess their effects on chondrogenesis of nasoseptal chondrocytes. The PLLA scaffolds without or…

Malecartilage tissue engineering02 engineering and technologyBiochemistrylaw.inventionExtracellular matrixX-Ray DiffractionlawOrthopedics and Sports MedicineGlycosaminoglycansExtracellular Matrix Proteins0303 health sciencesSettore ING-IND/24 - Principi Di Ingegneria ChimicaCalorimetry Differential ScanningTissue ScaffoldsChemistryHyaline cartilageTemperatureSettore ING-IND/34 - Bioingegneria IndustrialeCell DifferentiationMiddle AgedPhenotypemedicine.anatomical_structureBioactive glassFemaleAdultPolyesters0206 medical engineeringType II collagenNoseChondrocyteYoung Adult03 medical and health sciencesChondrocytesRheumatologymedicineHumanspoly(L)lactic acidCollagen Type IIMolecular BiologyAggrecan030304 developmental biologyCartilagenasoseptal chondrocyteCell BiologyChondrogenesis020601 biomedical engineeringBioactive glass 1393Gene Expression RegulationBiophysicschondrogenesiGlassCollagen Type X
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