Search results for "Bone substitute"

showing 10 items of 58 documents

Tissue-like self-assembly in cocultures of endothelial cells and osteoblasts and the formation of microcapillary-like structures on three-dimensional…

2007

The survival and functioning of a bone biomaterial requires a rapid and stable vascularization after implantation. However, the mechanisms involved in the context of the complex healing microenvironment are poorly understood. To evaluate the vascularization potential of bone biomaterials, angiogenic stimuli were added to human dermal microvascular endothelial cells (HDMEC) growing on three-dimensional (3-D) bone biomaterials consisting of porous hydroxyapatite, porous calcium phosphate, porous nickel-titanium, successfully being used in humans, and also silk fibroin nets. HDMEC did not migrate to form microcapillary-like structures as they did on cell culture plastic. In cocultures of HDMEC…

Materials scienceAngiogenesisBiophysicsNeovascularization PhysiologicBiocompatible MaterialsBioengineeringContext (language use)BiomaterialsTissue engineeringOsteogenesisMaterials TestingmedicineHumansBone regenerationCells CulturedOsteoblastsTissue EngineeringMesenchymal stem cellEndothelial CellsBiomaterialOsteoblastCoculture TechniquesCapillariesCell biologymedicine.anatomical_structureMechanics of MaterialsCell cultureBone SubstitutesCeramics and CompositesPorosityBiomedical engineeringBiomaterials
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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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Histological and histomorphometrical analysis of a silica matrix embedded nanocrystalline hydroxyapatite bone substitute using the subcutaneous impla…

2010

The clinical suitability of a bone substitute material is determined by the ability to induce a tissue reaction specific to its composition. The aim of this in vivo study was to analyze the tissue reaction to a silica matrix-embedded, nanocrystalline hydroxyapatite bone substitute. The subcutaneous implantation model in Wistar rats was chosen to assess the effect of silica degradation on the vascularization of the biomaterial and its biodegradation within a time period of 6 months. Already at day 10 after implantation, histomorphometrical analysis showed that the vascularization of the implantation bed reached its peak value compared to all other time points. Both vessel density and vascula…

Materials scienceBone substituteBiomedical Engineering2204 Biomedical EngineeringBioengineering610 Medicine & healthBiomaterialsSubcutaneous TissueIn vivoAbsorbable ImplantsMaterials TestingAnimalsRats WistarBone regeneration11077 Center for Applied Biotechnology and Molecular Medicine1502 Bioengineering2502 BiomaterialsBiomaterialSilicon DioxideNanocrystalline materialRatsDrug CombinationsDurapatiteGiant cellSilica matrixBone SubstitutesSubcutaneous implantationNanoparticlesFemaleBiomedical engineeringBiomedical materials (Bristol, England)
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Comparative performance of electrospun collagen nanofibers cross-linked by means of different methods.

2009

[EN] Collagen, as the major structural protein of the extracellular matrix in animals, is a versatile biomaterial of great interest in various engineering applications. Electrospun nanofibers of collagen are regarded as very promising materials for tissue engineering applications because they can reproduce the morphology of the natural bone but have as a drawback a poor structural consistency in wet conditions. In this paper, a comparative study between the performance of different cross-linking methods such as a milder enzymatic treatment procedure using transglutaminase, the use of N-[3-(dimethylamino)propyl]-N¿-ethylcarbodiimide hydrochloride/ N-hydroxysuccinimide, and genipin, and the u…

Materials scienceNanofibersExtracellular matrixBiomaterialschemistry.chemical_compoundBiopolymersTissue engineeringCell Line TumorUltraviolet lightmedicineHumansNanotechnologyGeneral Materials ScienceComposite materialAminesNucleic acid structureCell ProliferationOsteoblastsTransglutaminasesTissue EngineeringTemperatureBiomaterialOsteoblastElectrochemical TechniquesElectrospinningFibersmedicine.anatomical_structureCross-Linking ReagentschemistryChemical engineeringNanofiberBone SubstitutesGenipinMicroscopy Electron ScanningCollagenACS applied materialsinterfaces
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Bioengineered human bone tissue using autogenous osteoblasts cultured on different biomatrices

2003

Surgical treatment of critical-size posttraumatic bone defects is still a challenging problem, even in modern bone and joint surgery. Progress in cellular and molecular biology during the last decade now permits novel approaches in bone engineering. Recent conceptual and technical advances have enabled the use of mitotically expanded, bone-derived cells as a therapeutic approach for tissue repair. Using three different tissue carrier systems, we successfully cultivated human osteoblasts in a newly developed perfusion chamber. We studied cell proliferation and the expression of osteocalcin, osteopontin, bone morphogenetic protein-2A, alkaline phosphatase, and vascular endothelial growth fact…

Materials sciencemedicine.medical_treatmentBiomedical EngineeringEnzyme-Linked Immunosorbent AssayBone healingBone graftingBiomaterialsTissue engineeringBone cellmedicineAnimalsHumansOsteopontinOsteoblastsTissue EngineeringbiologyOsteoblastExtracellular MatrixCell biologyBone morphogenetic protein 7Durapatitemedicine.anatomical_structureBone Morphogenetic ProteinsBone Substitutesbiology.proteinOsteocalcinBiomedical engineeringJournal of Biomedical Materials Research
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Tilted implants for the restoration of posterior mandibles with horizontal atrophy: An alternative treatment

2013

Purpose Horizontal atrophy in the posterior mandible presents serious limitations on conventional implant placement. The purpose of this study was to evaluate the use of tilted implants angled in a buccolingual direction for restoring atrophic posterior mandibular sectors. Materials and Methods A cohort study was performed of 25 patients who had partial prostheses supported by more than 1 implant (≥1 tilted and 1 axial implant) to restore molar areas in the mandible. When the bone thickness was at least 5 mm, axial implants were placed; when the alveolar ridge was narrower, the implant was placed with tilted angulation. The beds for these tilted implants were prepared using a lingual approa…

MolarAdultMaleBone thicknessAlveolar Bone LossDentistryMandibleCohort StudiesAtrophyDental ArchAlveolar ridgemedicineHumansAgedDental ImplantsBone TransplantationCrownsbusiness.industryDental prosthesisDental Implantation EndosseousMandibleDental Implant-Abutment DesignMiddle Agedmedicine.diseaseAlternative treatmentTreatment OutcomeOtorhinolaryngologyDental Prosthesis DesignBone SubstitutesDenture Partial FixedSurgeryFemaleImplantDental Prosthesis Implant-SupportedOral SurgeryAtrophybusinessFollow-Up Studies
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ALLOGENEIC BONE GRAFTING MATERIALS – UPDATE OF THE CURRENT SCIENTIFIC STATUS

2017

Worldwide population aging and associated with it epidemics of osteoporosis, widespread of bone and joint reconstructive surgery and first of all joint replacement lead to explosive growth of interest in bone grafting.Although autografts are still the golden standard in bone regeneration, allogeneic bone substitutes have reached a state that allows for their application with satisfying clinical results. However, it has repeatedly been supposed that the different allogeneic materials underwent different purification processes, which modifies bone regeneration properties of these materials and also for different safety conditions. In the present publication, the treatment of the precursor tis…

Orthopedic surgerymedicine.medical_specialtybone graftingbusiness.industryJoint replacementRegeneration (biology)medicine.medical_treatmentOsteoporosisImplantation SiteBone graftingbone tissue regenerationmedicine.diseaseBone remodelingSurgeryallogeneic bone substitutemedicineAutogenous boneBone regenerationbusinessRD701-811Traumatology and Orthopedics of Russia
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Xenogeneic bone substitute materials-differences in processing techniques induce different extend of vascularization and foreign body giant cells: in…

2015

Pathologymedicine.medical_specialtyForeign-body giant cellOtorhinolaryngologyBone substituteIn vivobusiness.industryMedicineSurgeryAnatomyOral SurgerybusinessInternational Journal of Oral and Maxillofacial Surgery
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Potential lack of "standardized" processing techniques for production of allogeneic and xenogeneic bone blocks for application in humans.

2013

In the present study, the structure of two allogeneic and three xenogeneic bone blocks, which are used in dental and orthopedic surgery, were histologically analyzed. The ultimate goal was to assess whether the components postulated by the manufacturer can be identified after applying conventional histological and histochemical staining techniques. Three samples of each material, i.e. allogeneic material-1 and -2 as well as xenogeneic material-1, -2 and -3, were obtained commercially. After decalcification and standardized embedding processes, conventional histological staining was performed in order to detect inorganic matrix, cellular or organic matrix components. Allogeneic material-1 sh…

Pathologymedicine.medical_specialtyMaterials scienceInternationalityBiomedical EngineeringConnective tissueBiochemistryHistochemical stainingBiomaterialsHistological stainingMaterials TestingmedicineOrganic matrixMolecular BiologyBone TransplantationBone decalcificationGeneral MedicineAllograftsTrabecular bonemedicine.anatomical_structureBone SubstitutesPractice Guidelines as TopicHeterograftsOrganic componentInorganic matrixBiotechnologyBiomedical engineeringActa biomaterialia
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The Influence of Hyaluronic Acid Biofunctionalization of a Bovine Bone Substitute on Osteoblast Activity In Vitro

2021

Bovine bone substitute materials (BSMs) are used for oral bone regeneration. The objective was to analyze the influence of BSM biofunctionalization via hyaluronic acid (HA) on human osteoblasts (HOBs). BSMs with ± HA were incubated with HOBs including HOBs alone as a negative control. On days 3, 7 and 10, cell viability, migration and proliferation were analyzed by fluorescence staining, scratch wound assay and MTT assay. On days 3, 7 and 10, an increased cell viability was demonstrated for BSM+ compared with BSM− and the control (each p ≤ 0.05). The cell migration was enhanced for BSM+ compared with BSM− and the control after day 3 and day 7 (each p ≤ 0.05). At day 10, an accelerated wound…

Technology02 engineering and technologyArticleAndrology03 medical and health scienceschemistry.chemical_compound0302 clinical medicineHyaluronic acidhyaluronic acidmedicineGeneral Materials ScienceMTT assayViability assayxenograftoral regenerationBone regenerationMicroscopyQC120-168.85TbovineQH201-278.5biofunctionalizationosteoblastsOsteoblastCell migration030206 dentistrybone substituteEngineering (General). Civil engineering (General)021001 nanoscience & nanotechnologyIn vitroTK1-9971Bovine bonemedicine.anatomical_structureDescriptive and experimental mechanicschemistryElectrical engineering. Electronics. Nuclear engineeringTA1-20400210 nano-technologyMaterials
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