Search results for " Dental Pulp"

showing 10 items of 10 documents

Dental pulp stem cells for bone tissue engineering: a review of the current literature and a look to the future.

2018

The aim of this narrative review is to investigate the implication of mesenchymal stem cells harvested from human dental pulp in in vivo bone tissue regeneration. We focused on studies related to roles of human dental pulp stem cells in in vivo bone regeneration. A total of 1021 studies were identified; after the assessment of eligibility, only 39 studies were included in the review. The evaluated information of the studies regards the experimental strategies (e.g., the isolation method, the scaffold, the in vivo animal models). The overall main evidences highlighted from the analysis are that dental pulp stem cells and human-exfoliated deciduous teeth stem cells supported by a suitable sc…

0301 basic medicineEmbryologyBiomedical EngineeringDentistryregenerative medicinehuman dental pulpBone tissueRegenerative medicinebone03 medical and health sciences0302 clinical medicinestomatognathic systemTissue engineeringDental pulp stem cellsMedicineBone regenerationbusiness.industryRegeneration (biology)Mesenchymal stem cell030206 dentistrystem cellstomatognathic diseases030104 developmental biologymedicine.anatomical_structuretissue engineeringStem cellbusinessRegenerative medicine
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Role of p16INK4a and BMI-1 in oxidative stress-induced premature senescence in human dental pulp stem cells

2017

Human dental pulp stem cells (hDPSCs) are a source for cell therapy. Before implantation, an in vitro expansion step is necessary, with the inconvenience that hDPSCs undergo senescence following a certain number of passages, loosing their stemness properties. Long-term in vitro culture of hDPSCs at 21% (ambient oxygen tension) compared with 3–6% oxygen tension (physiological oxygen tension) caused an oxidative stress-related premature senescence, as evidenced by increased β-galactosidase activity and increased lysil oxidase expression, which is mediated by p16INK4a pathway. Furthermore, hDPSCs cultured at 21% oxygen tension underwent a downregulation of OCT4, SOX2, KLF4 and c-MYC factors, w…

AdultMale0301 basic medicineSenescenceAginghDPSCs human dental pulp stem cellsMSC mesenchymal stem cellsAdolescentCellular differentiationClinical BiochemistryCell Culture TechniquesOSKM OCT4 SOX2 KLF4 and c-MYCBiologymedicine.disease_causeBiochemistryCell therapyKruppel-Like Factor 4Young Adult03 medical and health sciencesDental pulp stem cellsmedicineHumansOxygen tensionlcsh:QH301-705.5SIPS stress-induced premature senescenceCells CulturedCellular SenescenceCyclin-Dependent Kinase Inhibitor p16Dental PulpMDA malondialdehydePolycomb Repressive Complex 1lcsh:R5-920Stem CellsOrganic ChemistryCell DifferentiationOxygen tensionCell biologyOxygenOxidative Stress030104 developmental biologylcsh:Biology (General)Cell cultureRegenerative medicineImmunologyFemaleStem celllcsh:Medicine (General)Oxidative stressResearch PaperRedox Biology
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The effect of glass ionomer and adhesive cements on substance P expression in human dental pul

2013

Objectives: The purpose of this study was to quantify the effect of glass ionomer and adhesive cements on SP expression in healthy human dental pulp. Study Design: Forty pulp samples were obtained from healthy premolars where extraction was indicated for orthodontic reasons. In thirty of these premolars a Class V cavity preparation was performed and teeth were equally divided in three groups: Experimental Group I: Glass Ionomer cement was placed in the cavity. Experimental Group II: Adhesive Cement was placed in the cavity. Positive control group: Class V cavities only. The remaining ten healthy premolars where extracted without treatment and served as a negative control group. All pulp sam…

Group iiGlass ionomer cementAcrylic ResinsAdhesive CementDentistryPositive controlSubstance POdontologíaHuman Dental PulpSubstance PEndodonticschemistry.chemical_compoundstomatognathic systemHumansGeneral DentistryDental Pulpbusiness.industryChemistryGlass IonomerSignificant difference:CIENCIAS MÉDICAS [UNESCO]Silicon DioxideCiencias de la saludResin CementsOtorhinolaryngologyUNESCO::CIENCIAS MÉDICASPulp (tooth)SurgeryResearch-ArticleAdhesivebusinessAdhesive cement
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Does the orthodontic treatment induces dental pulp cellular death? Caspase-3 and-9, HSP60 and TUNEL expression

2011

Objective: To evaluate the hypothesis of human dental pulp cell death during orthodontic treatement (O.T) and the degree of apoptosis through the expression level of the proteins Caspase-3,-9, TUNEL and HSP60. Materials and methods: Human dental Pulp were coming from both male and female patients (N=20; age 10-14years). The technique used was the Straight Wire, which involves Nickel-Titanium or Steel archwires. The increase of pressure applied on teeth was gradual. Some patients were subjected to a premolar extraction after 3 months treatment, and others after 6 months. Samples were Bouin-fixed, paraffin-embedded and afterwards processed for immunohistochemistry using anti-caspase-3,-9 anti…

Key Words: Caspase-9 orthodontic treatment Dental Pulp
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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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Root and Root Canal Configuration Characterization Using Microcomputed Tomography: A Systematic Review

2022

This systematic review’s objective was to conduct a complete analysis of the literature on the root canal morphology using advanced micro-computed tomography. The electronic web databases PubMed, Scopus, and Cochrane were examined for research papers concerning the chosen keywords, evaluating the root canal morphology using Micro-CT, published up to 2021. The articles were searched using MeSH keywords and searched digitally on four specialty journal websites. DARE2 extended (Database of Attributes of Reviews of Effects) was used to assess bias risk. The information was gathered from 18 published studies that strictly met the criteria for inclusion. In the included studies, a total of …

Micro-CTendodonticsdental anatomy; dental pulp; dental diagnostic imaging; endodontics; morphology; Micro-CT; root; root canaldental anatomymorphologyGeneral Medicinedental diagnostic imagingdental pulproot canalroot
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Expression of β-Endorphin and Caspase-9 in Orthodontically Treated Dental Pulp.

2009

Introduction. For several years, our histology laboratory has worked in co-operation with the Winchmore Hill Dental Practice studying the activity of Acetylcholinesterase and some neuropeptides (CGRP, Sub. P, Enkephalins, Endorphins)(1) in orthodontic treated human dental pulp to clarify force's action. It seems that recent data do not yet, fully elucidate the exact effects of the force applied on teeth. For this reason we are investigating whether the traction is involved in some cases of pulpal death. In this study we focused on the expression of Caspase-9 and β-Endorphine. Materials and Methods. The expression of the 2 peptides has been identified through immunohistochemistry assay: not …

Settore BIO/17 - IstologiaB-endorphin Caspase-9 dental pulp
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B-Endorphin in Human Dental Pulp During Orthodontic Treatments

2008

Settore BIO/17 - IstologiaB-endorphin Human dental Pulp Orthodontic Treatment
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Expression of beta-Endorphin and Caspase-9 in orthodontically treated dental pulp

2009

Settore BIO/17 - Istologiabeta-Endorphin Caspase-9 Dental pulp
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In vivo investigation on stem cells isolated from dental pulp and gingival tissues from periodontally compromised teeth

2015

stem cells dental pulp gingival tissue periodontally teeth regenerative medicine
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