Search results for " tissue regeneration"

showing 10 items of 47 documents

Biostable Scaffolds of Polyacrylate Polymers Implanted in the Articular Cartilage Induce Hyaline-Like Cartilage Regeneration in Rabbits

2017

[EN] Purpose: To study the influence of scaffold properties on the organization of ¿in vivo¿ cartilage regeneration. Our hypothesis is that stress transmission to the cells seeded inside the scaffold pores or surrounding it, which is highly dependent on the scaffold properties, determine differentiation of both mesenchymal cells and dedifferentiated autologous chondrocytes. Methods: Four series of porous scaffolds made of different polyacrylate polymers, previously seeded with cultured rabbit chondrocytes or without cells preseeded, were implanted in cartilage defects in rabbits. Subchondral bone was always injured during the surgery in order to allow blood to reach the implantation site an…

Cartilage ArticularHyalinScaffold0206 medical engineeringBiomedical EngineeringMedicine (miscellaneous)Biocompatible MaterialsBioengineering02 engineering and technologyBiomaterialsBiopolymersChondrocytesTissue engineeringIn vivomedicineAnimalsRegenerationTissue engineeringOriginal Research ArticleHyalineScaffoldschemistry.chemical_classificationTissue ScaffoldsGuided Tissue RegenerationRegeneration (biology)CartilageMesenchymal stem cellCell DifferentiationMesenchymal Stem CellsGeneral MedicinePolymerAnatomy021001 nanoscience & nanotechnology020601 biomedical engineeringAnimal modelsDisease Models AnimalCartilagemedicine.anatomical_structureAcrylateschemistryFISICA APLICADAMAQUINAS Y MOTORES TERMICOSRabbits0210 nano-technologyBiomedical engineeringThe International Journal of Artificial Organs
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Dynamic processes involved in the pre-vascularization of silk fibroin constructs for bone regeneration using outgrowth endothelial cells

2009

For successful bone regeneration tissue engineered bone constructs combining both aspects, namely a high osteogenic potential and a rapid connection to the vascular network are needed. In this study we assessed the formation of pre-vascular structures by human outgrowth endothelial cells (OEC) from progenitors in the peripheral blood and the osteogenic differentiation of primary human osteoblasts (pOB) on micrometric silk fibroin scaffolds. The rational was to gain more insight into the dynamic processes involved in the differentiation and functionality of both cell types depending on culture time in vitro. Vascular tube formation by OEC was assessed quantitatively at one and 4 weeks of cul…

Cell typeBone RegenerationAngiogenesisBiophysicsNeovascularization PhysiologicFibroinBioengineeringMatrix (biology)BiologyBiomaterialsTissue engineeringOsteogenesisHumansProgenitor cellBone regenerationCells CulturedTube formationTissue EngineeringTissue ScaffoldsGuided Tissue RegenerationEndothelial CellsCoculture TechniquesCell biologyMechanics of MaterialsCeramics and CompositesFibroinsBiomarkersBiomedical engineeringBiomaterials
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In vitro and in vivo characterization of porcine acellular dermal matrix for gingival augmentation procedures

2013

Recently, porcine acellular dermal matrix (PADM) has been proposed as a possible alternative to autogenous grafts in periodontal plastic surgery. The aim of the present study was to investigate the in vitro responses of four different oral cell lines cultured on a novel PADM. Furthermore, tissue reaction to PADM was evaluated histologically after subcutaneous implantation in mice.Human gingival fibroblasts (HGF), human osteoblast-like cells, human umbilical vein endothelial cells and human oral keratinocytes (HOK) were cultured and transferred on to the PADM. A tissue culture polystyrene surface served as the control. The viability of all tested cell lines on PADM was measured by using the …

Keratinocytesmedicine.medical_specialtyTime FactorsCell SurvivalCell TransplantationSwineCell Culture TechniquesGingivaMice NudeTetrazolium SaltsAdenylate kinaseUmbilical veinCell LineAndrologyMiceSubcutaneous TissueIn vivoHuman Umbilical Vein Endothelial CellsmedicineAnimalsHumansCytotoxic T cellAcellular DermisColoring AgentsGingivoplastyOsteoblastsTissue EngineeringTissue ScaffoldsAugmentation procedureChemistryAdenylate KinaseSoft tissueFibroblastsIn vitroSurgeryThiazolesCell cultureGuided Tissue Regeneration PeriodontalPeriodonticsColorimetryFemaleIndicators and ReagentsJournal of Periodontal Research
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Polyurethane and PTFE membranes for guided bone regeneration: histopathological and ultrastructural evaluation.

2010

Made available in DSpace on 2013-08-12T18:17:36Z (GMT). No. of bitstreams: 0 Previous issue date: 2010-03-01 Made available in DSpace on 2013-09-30T18:35:07Z (GMT). No. of bitstreams: 0 Previous issue date: 2010-03-01 Submitted by Vitor Silverio Rodrigues (vitorsrodrigues@reitoria.unesp.br) on 2014-05-20T14:04:24Z No. of bitstreams: 0 Made available in DSpace on 2014-05-20T14:04:24Z (GMT). No. of bitstreams: 0 Previous issue date: 2010-03-01 Objective: The purpose of this study was to research a membrane material for use in guided bone regeneration. Study design: In this study, 25 male Wistar rats were used to analyze the biocompatibility and degradation process of biomembranes. The morphol…

MaleBone RegenerationBiocompatibilitybone substitutesPolyurethanesBone and Boneschemistry.chemical_compoundbone regenerationmedicineAnimalsRats WistarBone regenerationGeneral DentistryPolytetrafluoroethylenePolyurethanepolytetrafluoroethylenePolytetrafluoroethyleneGuided tissue regenerationGuided Tissue RegenerationGranulation tissueMembranes ArtificialAnatomy:CIENCIAS MÉDICAS [UNESCO]RatsMembranemedicine.anatomical_structureOtorhinolaryngologychemistryGiant cellpolyurethaneUNESCO::CIENCIAS MÉDICASUltrastructureSurgeryartificial membranesBiomedical engineeringMedicina oral, patologia oral y cirugia bucal
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Evaluation of the tissue reaction to a new bilayered collagen matrix in vivo and its translation to the clinic.

2011

This study evaluates a new collagen matrix that is designed with a bilayered structure in order to promote guided tissue regeneration and integration within the host tissue. This material induced a mild tissue reaction when assessed in a murine model and was well integrated within the host tissue, persisting in the implantation bed throughout the in vivo study. A more porous layer was rapidly infiltrated by host mesenchymal cells, while a layer designed to be a barrier allowed cell attachment and host tissue integration, but at the same time remained impermeable to invading cells for the first 30 days of the study. The tissue reaction was favorable, and unlike a typical foreign body respons…

MaleMaterials scienceBiomedical EngineeringConnective tissueNeovascularization PhysiologicBioengineeringContext (language use)Pilot ProjectsMatrix (biology)BiomaterialsMiceMaterials TestingmedicineAnimalsHumansTissue ScaffoldsRegeneration (biology)Foreign-Body ReactionMesenchymal stem cellGranulation tissueSoft tissueBiomaterialCell biologymedicine.anatomical_structureGuided Tissue Regeneration PeriodontalMicroscopy Electron ScanningFemaleCollagenPorosityBiomedical engineeringBiomedical materials (Bristol, England)
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A New Prosthetic Implant for Inguinal Hernia Repair: Its Features in a Porcine Experimental Model

2011

Even after more than 100 years of inguinal hernia repair, the rate of complications and recurrence remains unacceptably high. In the last decades, few effective advances in surgical technique and materials have been made. The authors see them as minor adjustments in the shape and materials of the prosthetic implants. Still, the underlying genesis of inguinal hernia remains undefined. Based upon this, it seems the surgical repair of inguinal protrusions cannot be based upon the pathogenesis because the etiology to date has not been addressed. Most hernia repairs are performed with some degree of point fixation (sutures/tacks) to stop the mesh from migrating and creating high recurrence rates…

MaleSettore MED/18 - Chirurgia GeneraleTissue ScaffoldsHernia Inguinal Biocompatible materials Prostheses and implants Incorporation Guided tissue regeneration Tissue scaffoldingGuided Tissue RegenerationSwineAnimalsits features in a porcine experimental model [A new prosthetic implant for inguinal hernia repair]Hernia InguinalProstheses and ImplantsA new prosthetic implant for inguinal hernia repair: its features in a porcine experimental modelPolypropylenes
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Developing cellular systems in vitro to simulate regeneration.

2014

In the past two decades, cellular systems in vitro have progressed from predominantly monocellular testing models to study the toxic effects of new biomaterials for replacement to relevant human coculture systems for regeneration, often a combination of progenitor cells with novel biomaterials. Considerable progress has been made in understanding cellular cross talk and its contribution to the vascularization of bone. Future challenges include using the established physiological, that is, nonactivated, stem cell niches as a platform to develop coculture models, which will enable the true in situ regenerative niche to be investigated. Hypoxia and a changing inflammatory status are factors th…

MaleTissue EngineeringGuided Tissue RegenerationRegeneration (biology)NicheBiomedical EngineeringBioengineeringBiologyBiochemistryIn vitroCoculture TechniquesCell biologyBiomaterialsBatch Cell Culture TechniquesSelf-healing hydrogelsHumansRegenerationFemaleProgenitor cellStem cellStem Cell NicheBiomedical engineeringForecastingTissue engineering. Part A
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?Reliability of new poly (lactic-co-glycolic acid) membranes treated with oxygen plasma plus silicon dioxide layers for pre-prosthetic guided bone re…

2017

Background: The use of cold plasmas may improve the surface roughness of poly(lactic-co-glycolic) acid (PLGA) membranes, which may stimulate the adhesion of osteogenic mediators and cells, thus accelerating the biodegradation of the barriers. Moreover, the incorporation of metallic-oxide particles to the surface of these membranes may enhance their osteoinductive capacity. Therefore, the aim of this paper was to evaluate the reliability of a new PLGA membrane after being treated with oxygen plasma (PO) plus silicon dioxide (SiO) layers for guided bone regeneration (GBR) processes. Material and Methods: Circumferential bone defects (diameter: 11 mm; depth: 3 mm) were created on the top of ei…

Malemedicine.medical_specialtyBone RegenerationSilicon dioxide02 engineering and technologyBone tissue03 medical and health scienceschemistry.chemical_compound0302 clinical medicinePolylactic Acid-Polyglycolic Acid CopolymermedicineAnimalsLactic AcidBone regenerationGeneral DentistryGlycolic acidNanocompositeResearchoxygen plasma (PO2)technology industry and agricultureMembraneMembranes Artificial030206 dentistryAdhesionBiodegradationSilicon Dioxide021001 nanoscience & nanotechnology:CIENCIAS MÉDICAS [UNESCO]SurgeryOxygenDental ImplantationPLGASilicon dioxide layersmedicine.anatomical_structureMembraneOtorhinolaryngologychemistryUNESCO::CIENCIAS MÉDICASGuided Tissue Regeneration PeriodontalSurgeryRabbitsOral Surgery0210 nano-technologyPolyglycolic AcidPoly(lactic-co-glycolic acid) (PLGA)Guided bone regeneration (GBR)Biomedical engineering
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The effect of postsurgical administration of a selective cyclo-oxygenase-2 inhibitor on the healing of intrabony defects following treatment with ena…

2003

Regenerative treatment with enamel matrix proteins (EMD) has been shown to promote regeneration in intrabony periodontal defects. However, up to now various postoperative regimens such as the routine administration of nonsteroidal anti-inflammatory drugs (NSAIDs) were often used in combination with enamel matrix proteins. Therefore, it cannot be excluded that the results might have been influenced by the effect of the postoperative medication. The aim of this randomized, controlled, blinded, clinical investigation was to determine the effect of postsurgical administration of a selective cyclo-oxygenase-2 inhibitor on the healing of intrabony periodontal defects following regenerative period…

Malemedicine.medical_specialtyGingival and periodontal pocketBleeding on probingUrologyAlveolar Bone LossDentistryLactonesDental Enamel ProteinsOral administrationPeriodontal Attachment LossmedicineHumansPeriodontal PocketCyclooxygenase InhibitorsGingival RecessionSingle-Blind MethodSulfonesGeneral DentistryGingival recessionRofecoxibWound HealingCyclooxygenase 2 Inhibitorsbusiness.industryAnti-Inflammatory Agents Non-SteroidalDental Plaque IndexMembrane ProteinsIsoenzymesRegimenClinical attachment lossCyclooxygenase 2Prostaglandin-Endoperoxide SynthasesSystemic administrationGuided Tissue Regeneration PeriodontalFemalemedicine.symptomPeriodontal Indexbusinessmedicine.drugClinical oral investigations
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Mesenchymal stem cell proliferation and differentiation on load-bearing trabecular Nitinol scaffolds.

2013

Bone tissue regeneration in load-bearing regions of the body requires high-strength porous scaffolds capable of supporting angiogenesis and osteogenesis. 70% porous Nitinol (NiTi) scaffolds with a regular 3-D architecture resembling trabecular bone were produced from Ni foams using an original reactive vapor infiltration technique. The "trabecular Nitinol" scaffolds possessed a high compressive strength of 79 MPa and high permeability of 6.9×10(-6) cm2. The scaffolds were further modified to produce a near Ni-free surface layer and evaluated in terms of Ni ion release and human mesenchymal stem cell (hMSC) proliferation (AlamarBlue), differentiation (alkaline phosphatase activity, ALP) and …

Materials scienceAngiogenesisSurface PropertiesBiomedical EngineeringNeovascularization PhysiologicBone tissueBiochemistryLoad bearingBiomaterialsExtracellular matrixOsteogenesisMaterials TestingmedicineAlloysHumansMesenchymal stem cell proliferationMolecular BiologyCells CulturedCell ProliferationOsteoblastsTissue ScaffoldsGuided Tissue RegenerationMesenchymal stem cellEndothelial CellsCell DifferentiationMesenchymal Stem CellsGeneral MedicineEquipment DesignEquipment Failure Analysismedicine.anatomical_structureNickel titaniumBone SubstitutesAlkaline phosphataseBiotechnologyBiomedical engineeringActa biomaterialia
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