Search results for "TISSUE REGENERATION"

showing 10 items of 58 documents

A High Throughput Phenotypic Screening reveals compounds that counteract premature osteogenic differentiation of HGPS iPS-derived mesenchymal stem ce…

2016

AbstractHutchinson-Gilford progeria syndrome (HGPS) is a rare fatal genetic disorder that causes systemic accelerated aging in children. Thanks to the pluripotency and self-renewal properties of induced pluripotent stem cells (iPSC), HGPS iPSC-based modeling opens up the possibility of access to different relevant cell types for pharmacological approaches. In this study, 2800 small molecules were explored using high-throughput screening, looking for compounds that could potentially reduce the alkaline phosphatase activity of HGPS mesenchymal stem cells (MSCs) committed into osteogenic differentiation. Results revealed seven compounds that normalized the osteogenic differentiation process an…

0301 basic medicineCell typecongenital hereditary and neonatal diseases and abnormalitiesPhenotypic screeningInduced Pluripotent Stem CellsRetinoic acidTretinoinBiologyArticle03 medical and health scienceschemistry.chemical_compoundProgeriaOsteogenesis[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]medicineHumansInduced pluripotent stem cellChildIsotretinoinGeneticsProgeriaMultidisciplinaryintegumentary systemGuided Tissue RegenerationMesenchymal stem cellnutritional and metabolic diseasesAging PrematureCell DifferentiationMesenchymal Stem Cellsmedicine.diseaseProgerinAlkaline PhosphataseLamin Type A3. Good healthCell biologyHigh-Throughput Screening Assays030104 developmental biologychemistryGene Expression Regulation[ SDV.BBM.GTP ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]Alkaline phosphataseScientific Reports
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Growth and Osteogenic Differentiation of Discarded Gingiva-Derived Mesenchymal Stem Cells on a Commercial Scaffold

2020

Background In periodontal patients with jawbone resorption, the autologous bone graft is considered a "gold standard" procedure for the placing of dental prosthesis; however, this procedure is a costly intervention and poses the risk of clinical complications. Thanks to the use of adult mesenchymal stem cells, smart biomaterials, and active biomolecules, regenerative medicine and bone tissue engineering represent a valid alternative to the traditional procedures. Aims In the past, mesenchymal stem cells isolated from periodontally compromised gingiva were considered a biological waste and discarded during surgical procedures. This study aims to test the osteoconductive activity of FISIOGRAF…

0301 basic medicinePathologymedicine.medical_specialtyScaffoldperiodontal diseaseMatriderm®waste gingival tissueoral MSCsperiodontally compromised GMSCsRegenerative medicineBone resorptionSettore MED/13 - EndocrinologiaCell and Developmental Biology03 medical and health sciences0302 clinical medicineSettore MED/28 - Malattie OdontostomatologicheSettore BIO/13 - Biologia ApplicataBiopsymedicineFISIOGRAFT Bone Granular®Viability assaylcsh:QH301-705.5Original Researchautologous bone tissue regenerationmedicine.diagnostic_testCell growthbusiness.industryMesenchymal stem cellCell Biologyperiodontal disease bone resorption waste gingival tissue oral MSCs periodontally compromised GMSCs FISIOGRAFT Bone Granular R Matriderm R autologous bone tissue regenerationResorption030104 developmental biologylcsh:Biology (General)030220 oncology & carcinogenesisbusinessbone resorptionDevelopmental Biology
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Cold Atmospheric Plasma Promotes Regeneration-Associated Cell Functions of Murine Cementoblasts In Vitro

2021

The aim of the study was to examine the efficacy of cold atmospheric plasma (CAP) on the mineralization and cell proliferation of murine dental cementoblasts. Cells were treated with CAP and enamel matrix derivates (EMD). Gene expression of alkaline phosphatase (ALP), bone gamma-carboxyglutamate protein (BGLAP), periostin (POSTN), osteopontin (OPN), osterix (OSX), collagen type I alpha 1 chain (COL1A1), dentin matrix acidic phosphoprotein (DMP)1, RUNX family transcription factor (RUNX)2, and marker of proliferation Ki-67 (KI67) was quantified by real-time PCR. Protein expression was analyzed by immunocytochemistry and ELISA. ALP activity was determined by ALP assay. Von Kossa and alizarin r…

0301 basic medicinePlasma GasesGene Expressioncold atmospheric plasmaMice0302 clinical medicineCell MovementmineralizationOsteopontinBiology (General)CementogenesisSpectroscopyDental CementumbiologyChemistryCell DifferentiationGeneral Medicinetraumatic dental injuriesdental hard tissue regeneration therapyComputer Science ApplicationsChemistryAlkaline phosphatasecementoblastsemdogainQH301-705.5Cell SurvivalproliferationCementoblastOsteocalcinPeriostinArticleCatalysisCell LineInorganic Chemistry03 medical and health sciencesCalcification Physiologicstomatognathic systemAnimalsViability assayPhysical and Theoretical ChemistryQD1-999Molecular BiologyCell ProliferationCell growthOrganic Chemistry030206 dentistryMolecular biologyDMP1Collagen type I alpha 1030104 developmental biologyGene Expression Regulationbiology.proteinOsteopontinTranscriptomeInternational Journal of Molecular Sciences
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Biocompatibility of various collagen membranes in cultures of human PDL fibroblasts and human osteoblast-like cells

2004

The aim of the present study was to evaluate the biocompatibility of differently cross-linked collagen membranes in cultures of human PDL fibroblasts and human osteoblast-like cells. Four collagen membranes [BioGide (BG), BioMend (BM), Ossix (OS) and TutoDent (TD)] were tested. Cells plated on culture dishes (CD) served as positive controls. Six specimens of each membrane were incubated with (1) human PDL fibroblasts [2 x 10(4) cells] (n=24), and (2) human osteoblast-like cells (SaOs-2) [2 x 10(4) cells] (n=24) under standardized conditions. After 7 days, adherent cells were stained with hematoxylin and counted using a reflected light microscope and the cell density per square millimeter wa…

AdultBiocompatibilityPeriodontal LigamentFibrillar CollagensCellH&E stainBiocompatible MaterialsCell morphologyStatistics NonparametricMaterials TestingCell AdhesionTumor Cells CulturedmedicineHumansPeriodontal fiberCell adhesionCells CulturedOsteoblastsChemistryMembranes ArtificialOsteoblastFibroblastsMolecular biologyCross-Linking Reagentsmedicine.anatomical_structureMembraneImmunologyGuided Tissue Regeneration PeriodontalMicroscopy Electron ScanningFemaleOral SurgeryClinical Oral Implants Research
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Treatment of intrabony defects using guided tissue regeneration and autogenous spongiosa alone or combined with hydroxyapatite/beta-tricalcium phosph…

2007

The aim of this case-control study was to investigate the clinical regeneration of deep intrabony defects using guided tissue regeneration (GTR) with autogenous spongiosa (ASB) alone or using GTR with a mixture of ASB with a bovine-derived xenograft (BDX) or a synthetic composite bone substitute (hydroxyapatite/beta-tricalcium phosphate [HA/beta-TCP]).Sixty-four patients with a total of 93 intrabony defects of 2- or 3-wall morphology and an intrabony component (IC)or=4 mm participated in this study. Defects were treated with a bioabsorbable membrane and ASB alone or ASB mixed with HA/beta-TCP or BDX. Clinical parameters measured at baseline and 12 months after surgery included IC, bleeding …

AdultCalcium PhosphatesMaleBone substituteBleeding on probingTransplantation HeterologousDentistrymedicineAnimalsHumansBone regenerationPeriodontitisAgedPeriodontitisβ tricalcium phosphatebusiness.industryRegeneration (biology)SmokingAlveolar Ridge AugmentationAlveolar Ridge AugmentationMiddle Agedmedicine.diseaseTreatment efficacyBone SubstitutesGuided Tissue Regeneration PeriodontalPeriodonticsCattleFemaleHydroxyapatitesmedicine.symptombusinessEpidemiologic MethodsJournal of periodontology
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Herpes Simplex I virus impairs regenerative outcomes of periodontal regenerative therapy in intrabony defects: a pilot study.

2011

Aim To evaluate the impact of herpesvirus type-1 and -2 on the clinical outcomes of periodontal regenerative procedures in isolated deep intrabony pockets, in an experimental population with no detectable periodontal pathogens. Materials and Methods Seventeen periodontal intraosseous defects in 17 moderate-to-advanced periodontitis patients were treated with regenerative therapy and amelogenins. Microbiological evaluation was performed at baseline (after the completion of initial therapy) and at 1 year to exclude the presence of periodontal pathogens. Herpesviruses-1 and -2 DNA were quantified in the pocket tissues associated to the intrabony defect using molecular assays. Clinical attachme…

AdultMaleBone RegenerationCONTROLLED CLINICAL-TRIALHerpesvirus 2 HumanHEALING RESPONSEPopulationAlveolar Bone LossDentistryHerpesvirus 1 HumanACCESS FLAPStatistics NonparametricYoung AdultDental Enamel ProteinsEnamel matrix derivativemedicineAggressive periodontitisHumansPeriodontal PocketGingival RecessionYoung adulteducationBone regenerationGingival recessionGUIDED TISSUE REGENERATIONBONY DEFECTSPeriodontitiseducation.field_of_studybusiness.industryAGGRESSIVE PERIODONTITISMiddle Agedmedicine.diseaseMICROBIOTAHUMAN HERPESVIRUSESPREVALENCEGUIDED TISSUE REGENERATION MINIMALLY INVASIVE SURGICAL TECHNIQUE CONTROLLED CLINICAL-TRIAL AGGRESSIVE PERIODONTITIS HUMAN HERPESVIRUSES HEALING RESPONSE BONY DEFECTS ACCESS FLAP PREVALENCE MICROBIOTAReal-time polymerase chain reactionTreatment OutcomeChronic PeriodontitisDNA ViralGuided Tissue Regeneration PeriodontalPeriodonticsFemaleMINIMALLY INVASIVE SURGICAL TECHNIQUEmedicine.symptombusinessJournal of clinical periodontology
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Vertical guided bone regeneration with bioabsorbable barriers.

2007

Guided bone regeneration (GBR) is a very useful surgical technique to increase limited alveolar bone for implant placement. The use of non-resorbable barriers is well established; however, bioabsorbable collagen membranes may simplify the surgical technique and make it more predictable.Vertical ridge augmentation was performed on 11 patients at the time of implant placement. The part of the implant out of bone was covered with autogenous bone/graft, and a slow-resorption collagen membrane was placed on top. Gingival tissues were closed with horizontal mattress and interrupted sutures. Second-stage surgery was performed 4 to 6 months later, and healing abutments were placed. The length of th…

AdultMaleBone RegenerationDentistryMandibleOsseointegrationAbsorbable ImplantsMedicineHumansBone regenerationDental alveolusBone Transplantationbusiness.industryDental Implantation EndosseousMandibleMembranes ArtificialVertical DimensionAlveolar Ridge AugmentationAlveolar Ridge AugmentationMiddle AgedAbsorbable ImplantsImplant placementGuided Tissue Regeneration PeriodontalPeriodonticsFemaleImplantCollagenbusinessJournal of periodontology
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Immediate Implant Placement in Fresh Mandibular Molar Extraction Socket: 8-Year Results. A Case Report

2010

Abstract Recently, successful implant placement in fresh extraction sockets has been reported. In this case report, we present the results of an immediate implant placement in a fresh extraction socket of a mandibular molar with simultaneous bone regeneration using a nonresorbable membrane and no other graft materials. Clinical and radiographic findings acquired 8 years after implant placement demonstrated a stable peri-implant situation and confirmed a satisfactory treatment result.

AdultMaleMolarAlveolar Bone LossDentistryMandibleTreatment resultsTooth FracturesDental Implants Single-ToothHumansMedicineTooth SocketBone regenerationPolytetrafluoroethyleneOrthodonticsSocket preservationCrownsbusiness.industryDental Implantation EndosseousDental prosthesisExtraction (chemistry)Membranes ArtificialImmediate implantMolarTooth ExtractionGuided Tissue Regeneration PeriodontalDental Prosthesis Implant-SupportedOral SurgerybusinessMandibular molarFollow-Up StudiesJournal of Oral Implantology
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Maintenance of Class III Trifurcated Molars Versus Implant Placement in Regenerated Extraction Sockets: Long-Term Results of 2 Cases

2011

Studies to date have reached differing conclusions regarding the long-term prognosis of teeth with class III furcation involvement. Replacement of such teeth with implants could be an alternative. This report compares the treatment outcomes of 2 cases with similar disease progression: 1 treated by implant therapy and 1 maintained with nonsurgical periodontal treatment. Two patients with advanced chronic periodontitis and class III furcation involvement of all molars were treated. Case 1 received a conservative periodontal and antibiotic treatment, followed by 15 years of maintenance. In case 2, the molars were extracted and replaced with implants, and the implants were observed for 7 years.…

AdultMaleMolarDentistryMandibleClass iiiFurcation InvolvementTooth LossMaxillaHumansMedicineTooth SocketDental ImplantsOrthodonticsSocket preservationbusiness.industryFurcation DefectsDental Implantation EndosseousDental Plaque IndexMandibleAlveolar Ridge AugmentationLong term resultsMolarSurvival AnalysisImplant placementTreatment OutcomeMaxillaChronic PeriodontitisTooth ExtractionGuided Tissue Regeneration PeriodontalDental ScalingFemaleOral SurgerybusinessFollow-Up StudiesJournal of Oral Implantology
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Bovine pericardium based non-cross linked collagen matrix for successful root coverage, a clinical study in human

2012

Abstract Introduction The aim of this study was to clinically assess the capacity of a novel bovine pericardium based, non-cross linked collagen matrix in root coverage. Methods 62 gingival recessions of Miller class I or II were treated. The matrix was adapted underneath a coronal repositioned split thickness flap. Clinical values were assessed at baseline and after six months. Results The mean recession in each patient was 2.2 mm at baseline. 6 Months after surgery 86.7% of the exposed root surfaces were covered. On average 0,3 mm of recession remained. The clinical attachment level changed from 3.5 ± 1.3 mm to 1,8 ( ± 0,7) mm during the observational time period. No statistically signifi…

AdultMalePathologymedicine.medical_specialtylcsh:Specialties of internal medicineBovine pericardiumClinical NeurologyConnective tissueMatrix (biology)Gingival recessionClinical studylcsh:RC581-951medicineAnimalsHumansroot coverageddc:610Tooth RootGeneral Dentistryconnective tissueTissue Scaffoldsbusiness.industryDentistry(all)Researchguided tissue regenerationAnatomycollagen matrixMiddle Agedbovine pericardiumRoot coveragemedicine.anatomical_structureOtorhinolaryngologycardiovascular systemHead and neck surgeryGuided Tissue Regeneration PeriodontalCattleFemaleNeurology (clinical)CollagenbusinessPericardiumHead & Face Medicine
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