Search results for "Dental pulp."

showing 10 items of 115 documents

Application of DNA techniques for identification using human dental pulp as a source of DNA

1992

Dental pulp tissue could be obtained in most cases from materials obtained under experimental conditions and from forensic casework (air accidents, burned and putrefied bodies). Teeth extracted during dental treatment (n = 30) were stored for 6 weeks and 4 years at room temperature. In addition teeth (n = 10) extracted from jaw fragments that had been stored for 15 years at room temperature, and teeth extracted post mortem from actual identification cases (n = 8) were investigated. Following extraction from dental pulp tissue the DNA concentration was measured by fluorometry. The amount of DNA obtained from the dental pulp tissue of a single tooth varied from 6 micrograms to 50 micrograms D…

Sex Determination AnalysisImmunoblottingDot blotBiologyPolymerase Chain ReactionPathology and Forensic Medicinechemistry.chemical_compoundstomatognathic systemHumansFluorometryDental PulpSouthern blotHistocompatibility TestingDna concentrationSingle toothDNA FingerprintingMolecular biologyBlotBlotting Southernstomatognathic diseaseschemistryEvaluation Studies as TopicDegraded dnaHigh molecular weight dnaDNAForensic DentistryInternational Journal of Legal Medicine
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The colocalizations of pulp neural stem cells markers with dentin matrix protein-1, dentin sialoprotein and dentin phosphoprotein in human denticle (…

2021

Abstract Background The primary dentin, secondary dentin, and reactive tertiary dentin are formed by terminal differentiated odontoblasts, whereas atubular reparative tertiary dentin is formed by odontoblast-like cells. Odontoblast-like cells differentiate from pulpal stem cells, which express the neural stem cell markers nestin, S100β, Sox10, and P0. The denticle (pulp stone) is an unique mineralized extracellular matrix that frequently occurs in association with the neurovascular structures in the dental pulp. However, to date, the cellular origin of denticles in human dental pulp is unclear. In addition, the non-collagenous extracellular dentin matrix proteins dentin matrix protein 1 (DM…

SialoglycoproteinsMatrix (biology)Neural Stem Cellsstomatognathic systemDentinmedicineHumansDental PulpExtracellular Matrix ProteinsOdontoblastsChemistryCell DifferentiationGeneral MedicinePhosphoproteinsDentin phosphoproteinDMP1Cell biologystomatognathic diseasesmedicine.anatomical_structureDentinal TubuleOdontoblastDentinDental Pulp CalcificationPulp (tooth)AnatomyDentin sialoproteinDevelopmental BiologyAnnals of Anatomy - Anatomischer Anzeiger
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The adaptation of mechanically softened gutta-percha to the canal walls in the presence or absence of smear layer: a scanning electron microscopic st…

1995

Summary The objective of this study was to compare the adaptation of mechanically softened gutta-percha to the root canal wall in the presence and absence of smear layer. The root canals of 20 freshly extracted human maxillary incisors were cleaned and shaped. Prior to obturation, 10 root canals were irrigated with 20 ml of 50% citric acid followed by 20 ml of 5.25% sodium hypochlorite. All canals were obturated with mechanical compaction of gutta-percha and AH-26 sealer. After 72h, each tooth was fractured in half. Scanning electron microscopy demonstrated that the sealer had formed a continuous layer in contact with the canal walls, becoming progressively thinner towards the apex. The sea…

SilverMaterials scienceScanning electron microscopeRoot canalSmear layerDentistryRoot Canal Filling Materialschemistry.chemical_compoundstomatognathic systemRoot Canal ObturationmedicineHumansMethenamineGeneral DentistryTitaniumRoot Canal ObturationbiologyEpoxy Resinsbusiness.industryDental Marginal AdaptationGutta-perchabiology.organism_classificationDrug Combinationsmedicine.anatomical_structureDentinal TubulechemistrySmear LayerSodium hypochloriteDentinMicroscopy Electron ScanningDental Pulp CavityGutta-PerchabusinessBismuthLayer (electronics)Root Canal PreparationInternational Endodontic Journal
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Effectiveness of a new method of disinfecting the root canal, using Er, Cr:YSGG laser to kill Enterococcus faecalis in an infected tooth model.

2013

Some lasers have demonstrated to provide effective disinfection when used as adjunctive device to the conventional treatment. The aim of this in vitro study was to determine the effectiveness of the erbium, chromium:yttrium scandium gallium garnet (Er, Cr:YSGG) laser by measuring its bactericidal effect inside the root canal experimentally colonized with Enterococcus faecalis. The laser was tested at different irradiation times (30 and 60 s) and energy of impulses (75 and 25 mJ). A total of 52 single-rooted extracted human teeth were endodontically prepared with rotary instrumentation. All were sterilized and inoculated with a suspension of E. faecalis (105 bacteria/ml). The teeth were rand…

Sodium HypochloriteRoot canalRoot canalsDentistryDermatologyIrradiation timeLasers Solid-StateDental CariesEnterococcus faecalislaw.inventionchemistry.chemical_compoundSettore MED/28 - Malattie OdontostomatologichelawmedicineEnterococcus faecalisHumansIrradiationTooth RootGram-Positive Bacterial InfectionsPeriodontal Diseasesbiologybusiness.industryLasersbiology.organism_classificationLaserBactericidal effectModels DentalE. faecaliRoot Canal TherapyDisinfectionEr Cr:YSGG lasermedicine.anatomical_structurechemistrySodium hypochloriteSurgeryRotary instrumentationDental Pulp CavitybusinessNuclear chemistryDisinfectantsErbiumLasers in medical science
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Biomaterials coated by dental pulp cells as substrate for neural stem cell differentiation

2011

[EN] This study is focused on the development of an in vitro hybrid system, consisting in a polymeric biomaterial covered by a dental pulp cellular stroma that acts as a scaffold offering a neurotrophic support for the subsequent survival and differentiation of neural stem Cells. In the first place, the behavior of dental pulp stroma on the polymeric biomaterial based on ethyl acrylate and hydroxy ethyl acrylate copolymer was studied. For this purpose, cells from normal human third molars were grown onto 0.5-mm-diameter biomaterial discs. After cell culture, quantification of neurotrophic factors generated by the stromal cells was performed by means of an ELISA assay. In the second place, s…

Stromal cellMaterials scienceBiomedical EngineeringBiomaterialsCell therapyMiceNerve growth factorCoated Materials BiocompatibleNeural Stem Cellsstomatognathic systemNeurotrophic factorsAnimalsHumansNeural cellCells CulturedDental PulpCell ProliferationNeuronsStem cellBrain-Derived Neurotrophic FactorMetals and AlloysBiomaterialCell adhesionCell DifferentiationNeural stem cellRatsCell biologystomatognathic diseasesCell cultureMAQUINAS Y MOTORES TERMICOSCeramics and CompositesCell cultureStem cellNeural cellBiomedical engineering
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Ex vivo study of bacterial coronal leakage in indirect pulp treatment

2012

Objective: The aim of this study was to evaluate, ex vivo, bacterial coronal leakage with different antimicrobial agents applied to the dentine for indirect pulp treatment (IPT). Study Design: Sixty extracted teeth were prepared and randomly distributed into 5 groups (n=10): Group 1: no antimicrobial dentine treatment; group 2: 1% chlorhexidine (CHX)+1% thymol varnish (Cervitec®); group 3: 2 % CHX solution; group 4: 40% CHX varnish (EC40™) and group 5: Clearfil™ Protect Bond (CPB). Ten teeth served as controls. The teeth were restored using a resin-modified glass ionomer cement (GIC) and then mounted in a two-chamber device. The coronal access was exposed to Streptococcus mutans for 45 days…

VarnishGlass ionomer cementDentistryOdontologíaIn Vitro TechniquesStreptococcus mutansAnti-Infective Agentsstomatognathic systemClinical and Experimental DentistrymedicineHumansGeneral DentistryDental PulpDental LeakagePulp treatmentbiologyChemistrybusiness.industryChlorhexidine:CIENCIAS MÉDICAS [UNESCO]Antimicrobialbiology.organism_classificationCiencias de la saludStreptococcus mutansstomatognathic diseasesOtorhinolaryngologyvisual_artCoronal planeDentinUNESCO::CIENCIAS MÉDICASvisual_art.visual_art_mediumResearch-ArticleSurgerybusinessEx vivomedicine.drugMedicina Oral Patología Oral y Cirugia Bucal
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Comparative Biological Properties and Mineralization Potential of 3 Endodontic Materials for Vital Pulp Therapy: Theracal PT, Theracal LC, and Bioden…

2021

INTRODUCTION The aim of this study was to assess the biological properties and mineralization potential of the new Theracal PT (Bisco Inc, Schaumburg, IL) compared with its predecessor Theracal LC (Bisco Inc) and the hydraulic silicate-based cement Biodentine (Septodont, Saint-Maur-des-Fosses, France) on human dental pulp stem cells (hDPSCs) in vitro. METHODS Standardized sample discs were obtained for each material (n = 30) together with 1:1, 1:2, and 1:4 material eluates. Previously characterized hDPSCs were cultured with the different materials in standardized conditions, and the following assays were performed: a 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay, a woun…

chemistry.chemical_classificationReactive oxygen speciesbiologyChemistrySilicatesStem CellsALIZARIN REDOxidesCalcium CompoundsMineralization (biology)Molecular biologyStainingDrug CombinationsDentin sialophosphoproteinDental pulp stem cellsMaterials Testingbiology.proteinHumansOsteonectinCytotoxicityGeneral DentistryDental PulpJournal of endodontics
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Comparative Surface Morphology, Chemical Composition, and Cytocompatibility of Bio-C Repair, Biodentine, and ProRoot MTA on hDPCs

2020

Biocompatibility is an essential property for any vital pulp material that may interact with the dental pulp tissues. Accordingly, this study aimed to compare the chemical composition and ultrastructural morphology of Biodentine (Septodont, Saint Maur-des-Fosses, France), ProRoot MTA (Dentsply Tulsa Dental Specialties, Johnson City, TN, USA), and Bio-C Repair (Angelus, Londrina, PR, Brazil), as well as their biological effects on human dental pulp cells. Chemical element characterization of the materials was undertaken using scanning electron microscopy and energy dispersive X-ray analysis (SEM-EDX). The cytotoxicity was assessed by analyzing the cell viability (MTT assay), cell morphology …

cytocompatibilityBiocompatibilityvital pulp materialschemistry.chemical_element02 engineering and technologyCalciumCell morphologylcsh:TechnologyArticleFlow cytometry03 medical and health sciences0302 clinical medicinestomatognathic systemdental pulp cellsmedicineGeneral Materials ScienceMTT assayViability assaycalcium silicate materialsCytotoxicitylcsh:Microscopylcsh:QC120-168.85calcium silicate materialmedicine.diagnostic_testlcsh:QH201-278.5Chemistrylcsh:Tdental pulp cell030206 dentistry021001 nanoscience & nanotechnologystomatognathic diseasesendodonticlcsh:TA1-2040Pulp (tooth)lcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineering0210 nano-technologylcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971Nuclear chemistryMaterials
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In Vitro and in Vivo investigation on stem cells isolated from pulp and gingival tissues from periodontally compromised teeth.

2016

dental pulp stem cells gingival mesenchymal stem cells bone regeneration periodontitisHuman medicine
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The determination of the initial straight length in root canals of mandibular premolars--an in vitro study.

2009

Abstract The aim of the present roentgenographic in vitro study was to determine the initial straight length from the cemento-enamel junction (CEJ) to the appearance of a root canal curvature in human mandibular premolars. A total number of 282 mandibular premolars were examined. Exclusion criteria comprised root caries, extensive restorations and endodontically treated teeth. The teeth were fixed and digitally radiographed by means of a specially developed fixation device with standardized and reproducible distances with the parallel technique (Heliodent MD; Merlin 2.1). The distances from the CEJ to the first curvature (> 5°) (distance I), from the first curvature to a second curvature (d…

in vitro studyRoot canallcsh:MedicineDentistryMandibleCurvatureMandibular first molarTooth Cervixstomatognathic systemmedicineotorhinolaryngologic diseasesHumansBicuspidRoot cariesMathematicsFixation (histology)Dental Pulp Cavitybusiness.industryResearchlcsh:RMandibular premolarsMandibleGeneral MedicineTooth CervixRadiographystomatognathic diseasesmedicine.anatomical_structureroot canal curvatureDental Pulp CavitybusinessEuropean journal of medical research
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