Search results for "odontoblast"

showing 10 items of 21 documents

Holocephalan (Chondrichthyes) dental plates with hypermineralized dentine as a substitute for missing teeth through developmental plasticity.

2020

All extant holocephalans (Chimaeroidei) have lost the ability to make individual teeth, as tooth germs are neither part of the embryonic development of the dental plates, nor of their continuous growth. Instead, a hypermineralized dentine with a unique mineral, whitlockin, is specifically distributed within a dentine framework into structures that give the dental plates their distinctive, species-specific morphology. Control of the regulation of this distribution must be cellular, with a dental epithelium initiating the first outer dentine, and via contact with ectomesenchymal tissue as the only embryonic cell type that can make dentine.\ud Chimaeroids have three pairs of dental plates with…

0106 biological sciencesAquatic Science010603 evolutionary biology01 natural sciencesdentitiondentinestomatognathic systemSpecies SpecificityChimaeraHarriottacpsAnimalsdevelopmentEcology Evolution Behavior and SystematicsbiologyDentitionHydrolaguswhitlockin010604 marine biology & hydrobiologyAnatomyChimaeroideibiology.organism_classificationChondrichthyesHolocephaliHolocephalistomatognathic diseasesOdontoblastDentinSharksDevelopmental plasticityToothJournal of fish biologyREFERENCES
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Inflammatory Response Mechanisms of the Dentine–Pulp Complex and the Periapical Tissues

2021

The macroscopic and microscopic anatomy of the oral cavity is complex and unique in the human body. Soft-tissue structures are in close interaction with mineralized bone, but also dentine, cementum and enamel of our teeth. These are exposed to intense mechanical and chemical stress as well as to dense microbiologic colonization. Teeth are susceptible to damage, most commonly to caries, where microorganisms from the oral cavity degrade the mineralized tissues of enamel and dentine and invade the soft connective tissue at the core, the dental pulp. However, the pulp is well-equipped to sense and fend off bacteria and their products and mounts various and intricate defense mechanisms. The fron…

0301 basic medicineCarcinogenesisRoot canalReviewimmune responselcsh:Chemistryodontoblast0302 clinical medicinePulpitislcsh:QH301-705.5SpectroscopyTissue homeostasisOdontoblastsPeriapical TissueIntracellular Signaling Peptides and ProteinsGeneral MedicineComputer Science ApplicationsCell biologyPeriradicularmedicine.anatomical_structureCarcinoma Squamous CellMouth NeoplasmsChemokinescarious lesionPeriapical GranulomaConnective tissueDental CariesBiologyNitric OxideCatalysisInorganic Chemistry03 medical and health sciencestertiary dentinestomatognathic systemAntigens NeoplasmmedicineAnimalsHumansddc:610Physical and Theoretical ChemistryApical foramenMolecular BiologyDental PulpRadicular CystNeuropeptidesOrganic ChemistryPulpitisMesenchymal Stem CellsComplement System Proteins030206 dentistryFibroblastsmedicine.diseasestomatognathic diseases030104 developmental biologyOdontoblastlcsh:Biology (General)lcsh:QD1-999DentinPulp (tooth)Nerve NetPeriapical PeriodontitisInternational Journal of Molecular Sciences
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Wnt1 Promotes Cementum and Alveolar Bone Growth in a Time-Dependent Manner

2021

The WNT/β-catenin signaling pathway plays a central role in the biology of the periodontium, yet the function of specific extracellular WNT ligands remains poorly understood. By using a Wnt1-inducible transgenic mouse model targeting Col1a1-expressing alveolar osteoblasts, odontoblasts, and cementoblasts, we demonstrate that the WNT ligand WNT1 is a strong promoter of cementum and alveolar bone formation in vivo. We induced Wnt1 expression for 1, 3, or 9 wk in Wnt1Tg mice and analyzed them at the age of 6 wk and 12 wk. Micro–computed tomography (CT) analyses of the mandibles revealed a 1.8-fold increased bone volume after 1 and 3 wk of Wnt1 expression and a 3-fold increased bone volume aft…

0301 basic medicineanimal structuresCementoblastmineralized tissue/development03 medical and health sciences0302 clinical medicinestomatognathic systemmedicineCementumGeneral DentistryDental alveolusperiodontal ligament (PDL)Chemistrybone biologyWnt signaling pathwayResearch ReportsPeriodontiumBiologicalCementogenesisCell biologycementogenesis030104 developmental biologyOdontoblastmedicine.anatomical_structure030220 oncology & carcinogenesisembryonic structuresPulp (tooth)signal transductionWnt/β-catenin signalingJournal of Dental Research
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The role of osteonectin in human tooth development: An immunohistological study

1992

We investigated immunohistologically 160 teeth and dental germs in various stages of tooth development taken from human individuals (13th week of pregnancy to the 24th year of life) to study the osteonectin expression in dental hard tissue. In the course of dentinogenesis, the predentin, the odontoblasts, and their cell processes show a positive osteonectin staining reaction. During cementogenesis, osteonectin is synthesized by cement-producing fibroblasts, cementoblasts, and cementocytes. The expression of osteonectin during dentinogenesis and cementogenesis is closely related to the development of the respective calcified tissue. All cells of the inner and outer enamel epithelium, the cel…

AdultPathologymedicine.medical_specialtyAdolescentEndocrinology Diabetes and MetabolismDentistryStratum intermediumFetusEndocrinologystomatognathic systemAmelogenesisHuman tooth developmentmedicineHumansOsteonectinOrthopedics and Sports MedicineChildDental Cementumbiologybusiness.industryChemistryInfant NewbornInfantAmelogenesisDentinogenesisFibroblastsmusculoskeletal systemImmunohistochemistryCementogenesisstomatognathic diseasesOdontoblastChild PreschoolDentinogenesisbiology.proteinOsteonectinbusinessAmeloblastToothCalcified Tissue International
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Expression Patterns and Subcellular Localization of Carbonic Anhydrases Are Developmentally Regulated during Tooth Formation

2014

Abstract Carbonic anhydrases (CAs) play fundamental roles in several physiological events, and emerging evidence points at their involvement in an array of disorders, including cancer. The expression of CAs in the different cells of teeth is unknown, let alone their expression patterns during odontogenesis. As a first step towards understanding the role of CAs during odontogenesis, we used immunohistochemistry, histochemistry and in situ hybridization to reveal hitherto unknown dynamic distribution patterns of eight CAs in mice. The most salient findings include expression of CAII/Car2 not only in maturation-stage ameloblasts (MA) but also in the papillary layer, dental papilla mesenchyme, …

BiomineralizationPathologyPhysiologylcsh:MedicineMiceLääketieteen bioteknologia - Medical biotechnologyMolecular Cell BiologyMorphogenesisMedicine and Health Scienceslcsh:ScienceIn Situ HybridizationCarbonic AnhydrasesRegulation of gene expressionMultidisciplinaryGene Expression Regulation DevelopmentalAnimal ModelsEpithelial cell rests of MalassezImmunohistochemistryCell biologyIsoenzymesProtein Transportmedicine.anatomical_structureOrgan SpecificityOdontogenesisAnatomyCellular Structures and OrganellesAmeloblastResearch ArticleCell Physiologymedicine.medical_specialtyHistologyMesenchymeMouse ModelsIn situ hybridizationBiologyResearch and Analysis MethodsGene Expression Regulation EnzymologicModel Organismsstomatognathic systemNotochordmedicineAnimalsDental papillalcsh:RBiology and Life SciencesCell BiologyMolecular DevelopmentOdontoblastAnimals Newbornlcsh:QLysosomesPhysiological ProcessesToothDevelopmental BiologyPLoS ONE
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Ontogenetic development of the holocephalan dentition: Morphological transitions of dentine in the absence of teeth.

2021

Among the cartilaginous fishes (Chondrichthyes), the Holocephali are unique in that teeth are absent both in ontogeny and adult regenerative growth. Instead, the holocephalan dentition of ever-growing nonshedding dental plates is composed of dentine, trabecular in arrangement, forming spaces into which a novel hypermineralized dentine (whitlockin) is deposited. These tissue features form a variety of specific morphologies as the defining characters of dental plates in the three families of extant holocephalans. We demonstrate how this morphology changes through ontogenetic development with continuity between morphologies, through successive growth stages of the dentition represented by the …

Cellular activityHistologyMorphology (linguistics)Ontogenystomatognathic systemAnimalsDentitionMolecular BiologyEcology Evolution Behavior and SystematicsbiologyDentitionChemistryFishesCell BiologyAnatomybiology.organism_classificationChondrichthyesHolocephaliOdontogenicstomatognathic diseasesOdontoblastDentinOdontogenesisAnatomyToothDevelopmental BiologyJournal of anatomyREFERENCES
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Presence of matrix vesicles in the body of odontoblasts and in the inner third of dentinal tissue: a scanning electron microscopic study.

2012

Objectives: The aim of this report is to present the results of a scanning electron microscopic study on the presence of matrix vesicles (MVs) found in human dentine. Study Design: Dentin tissue from 20 human bicuspids was analyzed by means of scanning electron microscopy. Results: MVs were found as outgrowths of the cellular membrane of the odontoblastic body, the more proximal portion of the odontoblastic process before entering the dentinal tubule and in the odontoblastic process within the inner third of the dentin. Size of MVs varied depending on location. In the inner third of dentin, they were seen in diverse positions; as membranal outgrowths, deriving from the odontoblastic process…

Cellular membraneScanning electron microscopeOdontologíaEndodonticsstomatognathic systemDentinmedicineHumansGeneral DentistryOdontoblastsChemistryVesicleCytoplasmic VesiclesAnatomy:CIENCIAS MÉDICAS [UNESCO]Ciencias de la saludstomatognathic diseasesOdontoblastmedicine.anatomical_structureDentinal TubuleOtorhinolaryngologyUNESCO::CIENCIAS MÉDICASDentinDentinogenesisBiophysicsSurgeryResearch-ArticleMicroscopy Electrochemical ScanningDentin mineralizationMedicina oral, patologia oral y cirugia bucal
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Cyclophosphamide-Induced Morphological Changes in Dental Root Development of ICR Mice.

2015

Background Survivors of childhood cancer are at risk of late dental development. Cyclophosphamide is one of the most commonly used chemotherapeutic agents against cancer in children. The aim of this study was to investigate the effects of cyclophosphamide on root formation in the molars of growing mice and to assess the morphological changes in these roots using three-dimensional structural images. Methods We treated 16 12-day-old ICR mice with cyclophosphamide (100 mg/kg, i.p.) and 16 control mice with saline. At 16, 20, 24, and 27 days of age, the mandibular left first molars were scanned using soft micro-computed tomography. After scanning, the structural indices were calculated using a …

Cyclophosphamidemedicine.medical_treatmentChildhood cancerPhysiologyDentistrylcsh:MedicineCell CountMandibleBiologyTooth rootImaging Three-DimensionalTooth ApexmedicineAnimalsTooth Rootlcsh:ScienceCyclophosphamideRoot formationMice Inbred ICRChemotherapyMultidisciplinaryOdontoblastsbusiness.industrylcsh:RCancermedicine.diseaseMolarOdontoblastFemalelcsh:QbusinessIcr miceResearch Articlemedicine.drugPLoS ONE
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MMP-2, MMP-9, and iNOS Expression in Human Dental Pulp Subjected to Orthodontic Traction

2009

Abstract Objective: To test the hypothesis that some metalloproteinases (MMP-2, MMP-9) and inducible nitric oxide synthetase (iNOS) enzymes in dental pulp samples do not vary when subjected to orthodontic treatment. Materials and Methods: Human dental pulps were taken from male and female patients (N=10; age 10–14 years). A straight wire technique was used with nickel-titanium or steel archwires. The increase of pressure applied on teeth was gradual. Five patients were subjected to premolar extractions after 14 months of treatment and one after 24 months. Samples were Bouin-fixed, paraffin-embedded, and afterwards processed for immunohistochemistry using anti-MMP-2, anti-MMP-9, and anti-iNO…

MaleSettore BIO/17 - IstologiaTime FactorsNitric oxide synthetaseAdolescentTooth Movement TechniquesNitric Oxide Synthase Type IIDentistryOrthodonticsMalocclusion Angle Class IIMatrix metalloproteinaseNickelFemale patientOrthodontic WiresPressurePremolarHumansMedicineBicuspidChildTitaniumOdontoblastsMMP-2Orthodontic wirebusiness.industrymedicine.diseaseImmunohistochemistryBiomechanical PhenomenaDental pulpiNOSmedicine.anatomical_structureMatrix Metalloproteinase 9SteelMatrix Metalloproteinase 2ImmunohistochemistryFemaleStress MechanicalTreatment timeMalocclusionMMP-9businessImmunohistochemistry Dental pulp MMP-2 MMP-9 iNOS.Dental AlloysFollow-Up StudiesThe Angle Orthodontist
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Histotomography of the odontoblast processes at the dentine-enamel junction of permanent healthy human teeth in the confocal laser scanning microscope

1998

The translucency of teeth allows the non-destructive subsurface visualisation of their microstructure by confocal laser scanning microscopy (CLSM) at a level of about 150 μm below the surface. The dentine–enamel junction (DEJ) is accessible only directly adjacent to the cervix of the tooth. Therefore teeth have to be sectioned for studying marginal areas of the dental hard tissue. The potential of the technique for (pseudo) three-dimensional visualisation allows the study of an array of individual confocal images, the interpretation of which is similar to that of macroscopic tomographs (CT-scan, MRI). Additionally, the extended focus mode yields the overlay of individual confocal images in …

Materials scienceConfocal laser scanning microscopeEnamel paintConfocalAnatomyHard tissuestomatognathic diseasesDentinal TubuleOdontoblaststomatognathic systemvisual_artConfocal laser scanning microscopyvisual_art.visual_art_mediumGeneral DentistryBiomedical engineeringClinical Oral Investigations
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