0000000000135635

AUTHOR

Salvatore Sauro

0000-0002-2527-8776

showing 13 related works from this author

Efficacy of removing Thermafil and GuttaCore from straight root canal systems using a novel non-surgical root canal re-treatment system : a micro-com…

2021

The present study aims to evaluate the effectiveness of an XP-endo non-surgical root canal re-treatment system in removing both GuttaCore and Thermafil gutta-percha carrier-based root canal filling materials from straight root canal systems using micro-computed tomography (micro-CT) analysis. The study was performed on 20 single-rooted upper teeth, which were randomly allocated into the following study groups: Group A, Thermafil and AH Plus sealer (n = 10)

Study groupsmedicine.medical_specialtynon-surgical root canal re-treatmentEndodontics.Root canalEndodoncia.ThermafilDentistrylcsh:MedicineArticleDientes - Cavidades - Preparación.03 medical and health sciencesTeeth - Roots - Planing.0302 clinical medicinemedicineTeeth - Tomography.030212 general & internal medicinemicro-computed tomographyroot canal filling materialDental therapeutics - Equipment and supplies.Upper teethTerapéutica dental - Aparatos y material.Treatment systembusiness.industryMicro computed tomographylcsh:R030206 dentistryGeneral MedicineRoot Canal Filling MaterialsEndodonticsendodonticsmedicine.anatomical_structureDientes - Tomografía.GuttaCorebusiness
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The influence of soft acidic drinks in exposing dentinal tubules after non-surgical periodontal treatment: a SEM investigation on the protective effe…

2007

Objective: The aim of this study was to investigate the different smear layer morphologies produced by instrumentation with a hand curette and a periodontal sonic scaler for potential removal by soft acidic solution. The effect of a new oxalate-containing phytocomplex spray in preventing tubules exposure after citric acid solution application was also evaluated. Methods: Thirty recently extracted human teeth were used to obtain root dentinal fragments and divided in two groups: Curette treatment (CRT) root planed applying 30 working strokes to each surface using a Gracey?s curette 5-6 and Ultrasonic scaler (USC) treated using a periodontal scaler mounted on an ultrasonic hand-piece for 30 s…

curettesOxalatesRootacidic drinksUNESCO::CIENCIAS MÉDICASultrasonic instrumentsPhytocomplexesnon-surgical periodontal treatmentsdentine hypersensitivity:CIENCIAS MÉDICAS [UNESCO]smear layer
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The Efficacy of Rotary, Reciprocating, and Combined Non-Surgical Endodontic Retreatment Techniques in Removing a Carrier-Based Root Canal Filling Mat…

2020

The aim of this study is to analyze and compare the efficacy of three non-surgical endodontic retreatment techniques in removing a carrier-based root canal filling material from straight root canal systems. The study was performed on 99 single-rooted extracted teeth using the ProTaper Gold endodontic rotary system up to the F2 file (Dentsply Maillefer, Baillagues, Switzerland), which were sealed with GuttaCore (Dentsply Maillefer, Ballaigues, Switzerland) and AH plus epoxy resin sealer (Dentsply DeTrey, Konstanz, Germany) and randomly assigned to the following non-surgical retreatment techniques: ProTaper Retreatment endodontic rotary instruments (D1&ndash

medicine.medical_specialtyEndodontics.Root canalEndodoncia.Dentistrylcsh:MedicineArticleDientes - Cavidades - Preparación.03 medical and health sciencesReciprocating motionTeeth - Roots - Planing.0302 clinical medicine0502 economics and businessmedicineTeeth - Tomography.Statistical analysisTeeth - Extraction - Treatment.Materiales dentales.Odontología restauradora.micro-computed tomographyroot canal filling materialEndodontic retreatmentnon-surgical endodontic retreatmentreciprocating movementbusiness.industryMicro computed tomography05 social scienceslcsh:RMaterial removal030206 dentistryGeneral MedicineEndodonticsExtracción dental - Tratamiento.humanitiesDientes - Infecciones - Tratamiento.medicine.anatomical_structureDientes - Tomografía.050211 marketingDental materials.businessTeeth - Infections - Treatment.Dentistry Operative.Journal of Clinical Medicine
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Remineralization effects of conventional and experimental ion-releasing materials in chemically or bacterially-induced dentin caries lesions

2019

Abstract Objectives The aim of this study was to evaluate the remineralization effects of conventional and experimental ion-releasing materials on different artificial dentin carious lesions. Methods Forty human dentin discs were submitted to different demineralization protocols for simulated caries lesion: (D1) Shallow chemically-induced caries, (D2) deep chemically-induced caries, (D3) deep bacterially-induced caries. Each disc was divided in five parts; one of those served as baseline control. The remaining parts of each disc (n = 12–16/group) were treated using the following materials: EXP, an experimental resin-based bioactive material consisting of a self-etch primer and an adhesive c…

Mineral trioxide aggregateMaterials scienceGlass ionomer cementDentistry02 engineering and technologyDental CariesComposite ResinsIndentation hardness03 medical and health sciences0302 clinical medicineDentinmedicineHumansGeneral Materials ScienceGeneral DentistryCementRemineralisationbusiness.industry030206 dentistry021001 nanoscience & nanotechnologyDemineralizationmedicine.anatomical_structureGlass Ionomer CementsMechanics of MaterialsTooth RemineralizationDentinAdhesive0210 nano-technologybusinessDental Materials
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The influence of NiTi alloy on the cyclic fatigue resistance of endodontic files

2020

Background: The aim of this study was to analyze the influence of NiTi alloy in endodontic rotary instruments on cyclic fatigue resistance. Methods: One hundred and sixty-four (164) sterile endodontic rotary files were selected and distributed into the following study groups: A: 25.08 F2 ProTaper Universal (PTU) (n = 41)

medicine.medical_specialtyCyclic stressEndodontics.Titanium in Dentistry.Titanio - Aplicaciones en Odontología.Endodoncia.NiTi alloylcsh:Medicine02 engineering and technologyDental metallurgy.ArticleDientes - Cavidades - Preparación.Niti alloy03 medical and health sciencesTeeth - Roots - Planing.0302 clinical medicineCM-Blue WiremedicineEndodontic filesNickel in Dentistry.Statistical analysisDental therapeutics - Equipment and supplies.OrthodonticsTerapéutica dental - Aparatos y material.business.industrylcsh:RAleaciones en odontología.Direct observationAnova test030206 dentistryGeneral Medicine021001 nanoscience & nanotechnologyEndodonticscyclic fatigueNíquel - Aplicaciones en Odontología.endodonticsM-WireNickel titaniumCM-Gold Wire0210 nano-technologybusiness
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Ultramorphology and dentine permeability changes induced by prophylactic procedures on exposed dentinal tubules in middle dentine

2010

Objectives: The purpose of this study was to evaluate the changes in dentinal permeability (i.e. hydraulic conductance) after prophylactic treatments performed using prophy-powders with air-polishing system or prophy-pastes on exposed middle dentine. The changes in dentine morphology were evaluated by SEM. Study design: Commercial prophylactic pastes and air-polishing powders were tested in this study. Dentine discs from human third molars were used to study the quantitative reduction of the dentine permeability under simulated pulpal pressure (20 cm H 2O). Further specimens were gold-coated and analysed using observed a SEM. Results: The results of this study showed different dentine perme…

MolarSmear layerDentistryIn Vitro Techniqueslaw.inventionstomatognathic systemlawDentine permeabilityDentinmedicineDentifriceHumansGeneral Dentistrybusiness.industryChemistryDental Prophylaxis:CIENCIAS MÉDICAS [UNESCO]Dentin Permeabilitystomatognathic diseasesDentinal Tubulemedicine.anatomical_structureOtorhinolaryngologyPermeability (electromagnetism)Bioactive glassDentinUNESCO::CIENCIAS MÉDICASMicroscopy Electron ScanningSurgerybusiness
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Effects of ions-releasing restorative materials on the dentine bonding longevity of modern universal adhesives after load-cycle and prolonged artific…

2019

This study aimed at evaluating the microtensile bond strength (MTBS) and fractographic features of dentine-bonded specimens created using universal adhesives applied in etch-and-rinse (ER) or self-etching (SE) mode in combination with modern ion-releasing resin-modified glass-ionomer cement (RMGIC)-based materials after load cycling and artificial saliva aging. Two universal adhesives (FTB: Futurabond M+, VOCO, Germany

SalivaComposite numberGlass ionomer cement02 engineering and technologyCementos dentales.lcsh:TechnologyAdhesivos dentales.dentineDental adhesives.0302 clinical medicineGeneral Materials ScienceComposite materiallcsh:QC120-168.85Bond strengthGlass-ionomer cements021001 nanoscience & nanotechnologyDentin.adhesionRestorative materialAdhesionDental materials.0210 nano-technologylcsh:TK1-9971cycling mechanical stressMaterials scienceLongevityArticle03 medical and health sciencesstomatognathic systemlongevityOdontología restauradora.Materiales dentales.lcsh:MicroscopyDentina.Cementlcsh:QH201-278.5Dental cements.lcsh:Tglass-ionomer cementstechnology industry and agricultureCycling mechanical stressDentine030206 dentistryUniversal adhesiveslcsh:TA1-2040lcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineeringAdhesiveuniversal adhesiveslcsh:Engineering (General). Civil engineering (General)Dentistry Operative.
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Determining the effects of Eugenol on the bond strength of resin-based restorative materials to dentin : a meta-analysis of the literature

2020

Este artículo se encuentra disponible en la siguiente URL: https://www.mdpi.com/2076-3417/10/3/1070/htm Este artículo pertenece al número especial " Permanent and long-term biodegradable biomaterials". The aim of this study was to determine whether the residual presence of eugenol in coronal dentin may compromise the bond strength of resin-based restorative materials. A search was performed on MEDLINE/Pubmed, Scopus, and by hand search for relevant papers. No restriction was applied for language and publication date. The studies selected for analysis tested specimens with reduced size (micro-shear bond strength ( SBS) and micro-tensile bond strength ( TBS)) of adhesive systems and resin-bas…

adhesivedental cementsDentistryDental bondingCementos dentales.lcsh:TechnologyAdhesivos dentales.Dental adhesives.lcsh:Chemistrychemistry.chemical_compound0302 clinical medicineDentinGeneral Materials Science030212 general & internal medicinelcsh:QH301-705.5InstrumentationFluid Flow and Transfer ProcessesBond strengthGeneral EngineeringDental Adhesiveslcsh:QC1-999Computer Science ApplicationsEugenolmedicine.anatomical_structureReduced sizeDental materials.eugenoldentin03 medical and health sciencesstomatognathic systemDental cementmedicinezinc oxide–eugenol cementMateriales dentales.Odontología restauradora.Dental cements.dental bondinglcsh:Tbusiness.industryProcess Chemistry and Technology030206 dentistrylcsh:Biology (General)lcsh:QD1-999chemistrylcsh:TA1-2040Eugenol - Physiological effect.Adhesivelcsh:Engineering (General). Civil engineering (General)businesslcsh:PhysicsDentistry Operative.Eugenol - Efectos fisiológicos.
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Effects of Polyacrylic Acid Pre-Treatment on Bonded-Dentine Interfaces Created with a Modern Bioactive Resin-Modified Glass Ionomer Cement and Subjec…

2018

Objectives: Resin-modified glass ionomer cements (RMGIC) are considered excellent restorative materials with unique therapeutic and anti-cariogenic activity. However, concerns exist regarding the use of polyacrylic acid as a dentine conditioner as it may influence the bonding performance of RMGIC. The aim of this study was to evaluate the effect of different protocols for cycling mechanical stress on the bond durability and interfacial ultramorphology of a modern RMGIC applied to dentine pre-treated with/without polyacrylic acid conditioner (PAA). Methods: The RMGIC was applied onto human dentine specimens prepared with silicon-carbide (SiC) abrasive paper with or without the use of a PAA c…

polyacrylic acid treatmentGlass ionomer cement02 engineering and technologyCementos dentales.lcsh:TechnologyAdhesivos dentales.Dental adhesives.dentinechemistry.chemical_compound0302 clinical medicineDentinGeneral Materials ScienceComposite materiallcsh:QC120-168.85bioactiveBond strengthPolyacrylic acidAbrasive021001 nanoscience & nanotechnologyDentin.adhesionmedicine.anatomical_structureDental materials.0210 nano-technologylcsh:TK1-9971cycling mechanical stressresin-modified glass ionomer cementsPolyacrylic acid - Therapeutic use.Materials scienceArticle03 medical and health sciencesstomatognathic systemlongevityDental cementmedicineMateriales dentales.Odontología restauradora.lcsh:MicroscopyDentina.CementRemineralisationDental cements.lcsh:QH201-278.5lcsh:T030206 dentistrychemistrylcsh:TA1-2040lcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineeringlcsh:Engineering (General). Civil engineering (General)Ácido poliacrílico - Uso terapéutico.Dentistry Operative.Materials
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The effect of dentine pre-treatment using bioglass and/or polyacrylic acid on the interfacial characteristics of resin-modified glass ionomer cements.

2018

Objective To evaluate the effect of load-cycle aging and/or 6 months artificial saliva (AS) storage on bond durability and interfacial ultramorphology of resin-modified glass ionomer cement (RMGIC) applied to dentine air-abraded using Bioglass 45S5 (BAG) with/without polyacrylic acid (PAA) conditioning.Methods RMGIC (Ionolux, VOCO) was applied onto human dentine specimens prepared with silicon-carbide abrasive paper or air-abraded with BAG with or without the use of PAA conditioning. Half of bonded-teeth were submitted to load cycling (150,000 cycles) and half immersed in deionised water for 24 h. They were cut into matchsticks and submitted immediately to microtensile bond strength (μTBS) …

Pre treatmentAdultCeramicsMaterials scienceSurface PropertiesGlass ionomer cementAcrylic Resins02 engineering and technologylaw.invention03 medical and health scienceschemistry.chemical_compoundTooth FracturesYoung Adult0302 clinical medicinestomatognathic systemlawBioglass 45S5Tensile StrengthLoad cyclingMaterials TestingHumansDental Restoration FailureComposite materialGeneral DentistryDental LeakageBond strengthPolyacrylic acidDental BondingResin modified030206 dentistry021001 nanoscience & nanotechnologyMolarResin CementsAir Abrasion DentalchemistryGlass Ionomer CementsBioactive glassDentin-Bonding AgentsDentinGlass0210 nano-technologyJournal of dentistry
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Microtensile bond strength of resin-post interfaces created with interpenetrating polymer network posts or cross-linked posts.

2008

Objective: The purpose of this study was to evaluate the microtensile strength of composite bonded to interpenetrating polymer network (IPN) or cross-linked glass fibre posts and to observe the failure modes by using light and scanning electron microscopy. Methods: Twenty posts containing IPN resin matrix and 20 posts containing cross-linked epoxy polymer matrix were used for testing. One half of the posts from each type was treated with Stick Resin, the other half was treated with OptiBond. Composite resin was used to build up a block on the bonding surface. Tensile strength data was analysed statistically using the non-parametric Kaplan-Meier survival analysis. The distribution of failure…

UNESCO::CIENCIAS MÉDICAS:CIENCIAS MÉDICAS [UNESCO]
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In-situ nano-silica deposition and air-abrasion with Bioglass 45S5 or aluminium oxide: Effects on methacrylate bonding to yttria-tetragonal zirconia …

2015

This study aimed at assessing the bonding performance after water storage (24 h/6-month) of a methacrylate-based cement applied onto Yttria-Tetragonal Zirconia Polycrystal(Y-TZP) pre-treated using an innovative in-situ silica nanoparticle deposition method and/or air-abrasion with Bioglass 45S5 (BAG) or aluminium oxide (AlO). Pre-sintered blocks of Y-TZP were coated with nano-silica using an experimental in-situ deposition method or used as received (control/silica-free). Air-abrasion was performed with AlO or BAG particles both on silica-coated and control Y-TZP specimens. All the specimens were then analysed using SEM– EDX. Further specimens were treated as described above, bonded using a…

Materials sciencePolymers and PlasticsBond strengthGeneral Chemical EngineeringMethacrylateBiomaterialschemistry.chemical_compoundchemistryvisual_artvisual_art.visual_art_mediumAluminium oxideCubic zirconiaCeramicAdhesiveComposite materialLayer (electronics)Yttria-stabilized zirconiaInternational Journal of Adhesion and Adhesives
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Bioactivity of bioceramic materials used in the dentin-pulp complex therapy : a systematic review

2019

Este es el artículo que se ha publicado de forma definitiva en: https://www.mdpi.com/1996-1944/12/7/1015 Dentistry-applied bioceramic materials are ceramic materials that are categorized asbioinert, bioactive and biodegradable. They share a common characteristic of being specificallydesigned to fulfil their function; they are able to act as root canal sealers, cements, root repair or fillingmaterials. Bioactivity is only attributed to those materials which are capable of inducing a desiredtissue response from the host. The aim of this study is to present a systematic review of availableliterature investigating bioactivity of dentistry-applied bioceramic materials towards dental pulp stemcel…

Mineral trioxide aggregateRoot canalCélulas madre - Uso terapéutico.02 engineering and technologyBioceramicReviewlcsh:TechnologyStem cells - Therapeutic use.03 medical and health sciences0302 clinical medicinesystematic reviewDental pulp stem cellsPulpa dental.DentinmedicineGeneral Materials ScienceMateriales dentales.lcsh:Microscopylcsh:QC120-168.85lcsh:QH201-278.5lcsh:TChemistryIn vitro toxicologyCerámica dental.030206 dentistry021001 nanoscience & nanotechnologybioceramic materialsdental pulp stem cellsOdontogenicmedicine.anatomical_structurelcsh:TA1-2040bioactivityPulp (tooth)lcsh:Descriptive and experimental mechanicsDental materials.lcsh:Electrical engineering. Electronics. Nuclear engineeringDental ceramics.lcsh:Engineering (General). Civil engineering (General)0210 nano-technologylcsh:TK1-9971Dental pulp.Biomedical engineering
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