Search results for "Bone substitutes"

showing 10 items of 48 documents

Bone Marrow Concentrate and Bovine Bone Mineral for Sinus Floor Augmentation

2011

Purpose: The purpose of this work was to evaluate the potential of substituting autogenous bone (AB) by bone marrow aspirate concentrate (BMAC). Both AB and BMAC were tested in combination with a bovine bone mineral (BBM) for their ability of new bone formation (NBF) in a multicentric, randomized, controlled, clinical and histological noninferiority trial.Materials and Methods: Forty-five severely atrophied maxillary sinus from 26 patients were evaluated in a partial cross-over design. As test arm, 34 sinus of 25 patients were augmented with BBM and BMAC containing mesenchymal stem cells. Eleven control sinus from 11 patients were augmented with a mixture of 70% BBM and 30% AB. Biopsies wer…

AdultMalemedicine.medical_specialtySinus Floor AugmentationOSTEOGENIC DIFFERENTIATIONBone RegenerationMaxillary sinusBiomedical EngineeringSinus Floor AugmentationBioengineeringBiochemistryMAXILLARY SINUSlaw.inventionMESENCHYMAL STEM-CELLSBIO-OSSBiomaterialsRandomized controlled trialTISSUE-ENGINEERED BONEBone MarrowOsteogenesislawmedicineAnimalsHumansSingle-Blind MethodSinus (anatomy)AgedIMPLANT PLACEMENTHYDROXYAPATITE CERAMICSBone TransplantationIntention-to-treat analysisPOROUS HYDROXYAPATITEbusiness.industryIN-VITROMiddle AgedSurgeryAUTOGENOUS BONEImplant placementBovine bonemedicine.anatomical_structureBone SubstitutesCattleFemaleBone marrowbusinessTissue Engineering. Part A
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Nanocrystalline Hydroxyapatite-Based Material Already Contributes to Implant Stability After 3 Months: A Clinical and Radiologic 3-Year Follow-up Inv…

2014

The present study reports on a 3-year clinical and radiologic follow-up investigation of dental implants placed 3 and 6 months after sinus augmentation in 14 patients. Augmentation was performed with a synthetic bone substitute material composed of nanocrystalline hydroxyapatite. The aim of the study was to determine how the integration period of the bone substitute material, that is, 3 months or 6 months, influences implant integration within the patient's upper jaw. Therefore, the following clinical and radiologic parameters were investigated: implant being in situ; Periotest value; and presence of peri-implant osteolysis, bleeding on probing, plaque, and soft tissue recession around the …

AdultMalemedicine.medical_specialtySinus Floor AugmentationTime FactorsDental PlaqueSinus Floor AugmentationDentistryOsteolysisOsseointegrationDental Prosthesis RetentionOsseointegrationMaxillamedicineHumansGingival RecessionDental Restoration FailureSinus (anatomy)AgedDental Implantsbusiness.industryMiddle AgedSurvival AnalysisSurgeryRadiographyDurapatitemedicine.anatomical_structureBone SubstitutesNanoparticlesFemaleImplantPeriodontal IndexOral SurgerybusinessFollow-Up StudiesJournal of Oral Implantology
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Efficacy of a bioactive alloplast, in the treatment of human periodontal osseous defects-a clinical study.

2010

Presently, bone replacement grafts are one of the modalities of therapy for which there is histologic evidence of regeneration coronal to the base of the previous osseous defect. Bioactive glasses are used extensively in medicine and dentistry. This study evaluated the additional efficacy of a bioactive alloplast, PerioGlas, in comparison with open flap debridement only. 8 systemically healthy volunteers were chosen, each having 2 collateral sites with ?6 mm clinical probing depth and radiographic evidence of an intrabony defect. Randomly, one defect was treated with open flap debridement plus bioactive glass (test) and the other with open flap debridement alone (control). At baseline, 3, 6…

Adultmedicine.medical_specialtyCeramicsPeriodontal DebridementRadiographymedicine.medical_treatmentDentistryBiocompatible Materialslaw.inventionYoung AdultlawMedicineHumansPeriodontal DebridementGeneral DentistryGingival recessionAgedbusiness.industryOpen flap debridementMiddle Aged:CIENCIAS MÉDICAS [UNESCO]SurgeryResorptionOtorhinolaryngologyBioactive glassDebridement (dental)Coronal planeUNESCO::CIENCIAS MÉDICASBone SubstitutesSurgerymedicine.symptombusinessMedicina oral, patologia oral y cirugia bucal
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Calcium sulfate and PTFE nonporous barrier for regeneration of experimental bone defects

2008

Made available in DSpace on 2022-04-28T18:55:46Z (GMT). No. of bitstreams: 0 Previous issue date: 2008-06-01 The aim of the study was to evaluate the possibility to obtain guided bone regeneration with two types of physical barriers (calcium sulfate and PTFE nonporous barrier) in surgical defects created in rat parietal bones. In the right parietal bone the calcium sulfate barrier filled out the whole defect and in the left parietal bone the barrier of PTFE was positioned in the floor and externally to the surgical defect. After 7, 14, 30 and 45 days four animals were sacrificed in each period and the bone containing the defects were submitted to the microscopic analysis. The results of the…

Artificial membranesBone substitutesGuided tissue regenerationCalcium sulfateUNESCO::CIENCIAS MÉDICAS:CIENCIAS MÉDICAS [UNESCO]PolytetrafluoroethyleneBone regeneration
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Modulation of platelet activation and initial cytokine release by alloplastic bone substitute materials.

2010

Objectives: Platelet-derived cytokines play a crucial role in tissue regeneration. In regenerative dental medicine, bone substitute materials (BSM) are widely used. However, initial interactions of BSM and platelets are still unknown. The aim of this study was to evaluate the potential of platelet activation and subsequent initial cytokine release by different commercial alloplastic BSM. Material and methods: Eight commercial BSM of different origins and chemical compositions (tricalcium phosphate, hydroxyapatite, bioactive glass: SiO2 and mixtures) were incubated with a platelet concentrate (platelet-rich plasma, PRP) of three healthy volunteers at room temperature for 15 min. Platelet cou…

Blood PlateletsCalcium PhosphatesVascular Endothelial Growth Factor APlatelet Aggregationmedicine.medical_treatmentPharmacologyCell Degranulationlaw.inventionlawmedicineHumansPlateletPlatelet activationPlatelet-Derived Growth FactorbiologyChemistryPlatelet CountPlatelet-Rich PlasmaGrowth factorDegranulationFlow CytometryPlatelet ActivationSilicon DioxideP-SelectinCytokineDurapatiteBioactive glassPlatelet-rich plasmaImmunologyBone Substitutesbiology.proteinOral SurgeryPlatelet-derived growth factor receptorClinical oral implants research
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Influence of a collagen membrane and recombinant platelet-derived growth factor on vertical bone augmentation in implant-fixed deproteinized bovine b…

2012

Combinations of bone substitute block materials with membrane techniques as well as with growth factors are possible options to enhance the prognosis of vertical bone augmentation. Therefore, the aim of the pilot study was to compare the influence of a collagen membrane and a signal protein (rhPDGF-BB) on vertical bone augmentation with a stable fixed block material (deproteinized bovine bone [DBB]).In 12 rabbits, a DBB-block was implant-fixed on the tibia in a split-leg-design. Included were: DBB only (control), DBB + collagen membrane (test), DBB + rhPDGF-BB (test) and DBB + rhPDGF-BB + collagen membrane (test). 24 samples were examined after 3 (n = 12) and 6 weeks (n = 12). Calculated pa…

Bone RegenerationBecaplerminDentistryPilot ProjectsBone augmentationRecombinant Platelet-Derived Growth FactorAnimalsProspective StudiesTibiaDental ImplantsChemistrybusiness.industryCollagen membraneAlveolar Ridge AugmentationProto-Oncogene Proteins c-sisBovine boneMembraneBone SubstitutesCattleCollagenRabbitsImplantOral SurgerybusinessBiomedical engineeringFixed BlockClinical Oral Implants Research
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The role of angiogenesis in implant dentistry part II: the effect of bone-grafting and barrier membrane materials on angiogenesis

2016

Background : In implant dentistry, bone substitute materials and barrier membranes are used in different treatments including guided bone regeneration (GBR), socket preservation, alveolar ridge augmentation, maxillary sinus elevation, and filling bony defects around the inserted dental implant. One of the most important factors in prognosis of treatments using these materials is the growth of new blood vessels in applied areas. Present review was performed to evaluate the effect of the bone-grafting and barrier membrane materials on angiogenesis events. Material and Methods : An electronic search was performed in PubMed, MEDLINE, and EMBASE databases via OVID using the keywords mentioned in…

Bone RegenerationMaxillary sinusBarrier membranemedicine.medical_treatmentDentistryNeovascularization PhysiologicOdontologíaReviewBone graftingNeovascularization03 medical and health sciences0302 clinical medicinemedicineHumansDental implantBone regenerationGeneral DentistryDental ImplantsSocket preservationBone Transplantationbusiness.industryDental Implantation Endosseous030206 dentistryAlveolar Ridge AugmentationAlveolar Ridge AugmentationMaxillary Sinus:CIENCIAS MÉDICAS [UNESCO]Ciencias de la salud3. Good healthmedicine.anatomical_structureOtorhinolaryngology030220 oncology & carcinogenesisBone SubstitutesUNESCO::CIENCIAS MÉDICASSurgerymedicine.symptomOral Surgerybusiness
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Microtomographic reconstruction of mandibular defects treated with xenografts and collagen-based membranes:a pre-clinical minipig model

2021

Background The goal of this study was to evaluate hard tissue response following guided bone regeneration using commercially available bovine bone grafts and collagen membranes; bilayer collagen membrane and porcine pericardium-based membrane, by means of a non-destructive three-dimensional (3D) computerized volumetric analysis following microtomography reconstruction. Material and Methods Bone regenerative properties of various bovine bone graft materials were evaluated in the Göttingen minipig model. Two standardized intraosseous defects (15mm x 8mm x 8mm) were created bilaterally of the mandible of eighteen animals (n=72 defects). Groups were nested within the same subject and randomly d…

Bone RegenerationSwineMandiblealcohol use disordermedicinePericardiumAnimalsBone formationBone regenerationGeneral DentistryUNESCO:CIENCIAS MÉDICASChemistryResearchSignificant differenceMandibleMembranes ArtificialGöttingen minipigResorptionMembranemedicine.anatomical_structureOtorhinolaryngologyBone SubstitutesHeterograftsSwine MiniaturebehavioursSurgeryCattleCollagenaddictionOral Surgeryhealthcare studentshealth literacyBiomedical engineering
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Combination of an allogenic and a xenogenic bone substitute material with injectable platelet-rich fibrin – A comparative in vitro study

2020

The aim of the in vitro study was a comparison of an allogenic (ABSM) and a xenogenic bone substitute material (XBSM) with and without injectable platelet-rich fibrin (ABSM-i-PRF & XBSM-i-PRF) on cell characteristics of human osteoblasts (HOB). Here, ABSM and XBSM (+ i-PRF = test; - i-PRF = control) were incubated with HOB for 3, 7 and 10 days. HOB viability, migration, proliferation and differentiation (RT-PCR on alkaline phosphatase (AP), bone morphogenetic protein 2 (BMP-2) and osteonectin (OCN)) were measured and compared between groups. At day 3, an increased viability, migration and proliferation was seen for ABSM-i-PRF. For viability and proliferation (days 7 and 10) and for mig…

Bone substituteBiomedical EngineeringPharmacologyFibrinCell LineInjectionsBiomaterials03 medical and health sciences0302 clinical medicineCell MovementPlatelet-Rich FibrinHumansIn vitro studyCell Proliferation030304 developmental biology0303 health sciencesOsteoblastsbiologyChemistryCell Differentiation030206 dentistrydigestive system diseasesPlatelet-rich fibrinIn vitroBone Substitutesbiology.proteinJournal of Biomaterials Applications
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An injectable bone substitute composed of beta-tricalcium phosphate granules, methylcellulose and hyaluronic acid inhibits connective tissue influx i…

2011

In this study, the in vivo tissue reaction to a new triphasic and injectable paste-like bone-substitute material composed of beta-tricalcium phosphate (β-TCP), methylcellulose and hyaluronic acid was analyzed. Using a subcutaneous implantation model, the interaction of these materials and the peri-implant tissue reaction were tested in Wistar rats for up to 60 days by means of established histological methods, including histomorphometrical analysis. The study focused on tissue integration, classification of the cellular inflammatory response and the degradation of the material. Groups composed of animals injected only with β-TCP granules, sham-operated animals and animals injected with sali…

Calcium PhosphatesBone RegenerationTime FactorsMaterials sciencemedicine.medical_treatmentBiomedical EngineeringNeovascularization PhysiologicConnective tissueMethylcelluloseBiochemistryBiomaterialsNeovascularizationchemistry.chemical_compoundCell MovementIn vivoMaterials TestingHyaluronic acidmedicineAnimalsHyaluronic AcidRats WistarMolecular BiologySalinePhagocytesGranule (cell biology)General MedicinePhosphateRatsmedicine.anatomical_structurechemistryBone SubstitutesImplantmedicine.symptomBiotechnologyBiomedical engineeringActa Biomaterialia
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