Search results for "Biomaterials"

showing 10 items of 1265 documents

Shear force comparative evaluation for surface treated and non- treated 3D interim printed materials with different types of glass-ionomer cements

2020

Background The purpose of this investigation was to compare shear force of different glass-ionomer cements on 3D printed interim material in combination with and without surface pretreatment. Material and Methods 120 rectangular specimens made of printable provisional material (Bego, Bremen, Germany) were used. After post-processing the specimens were blasted with aluminum oxide 110µm (Bego, Bremen, Germany). Extra 120 non-surface treated specimens were used as an experimental negative test group. All 240 specimens were divided randomly into 6 groups. All were cemented with a compressive load of 20 N using universal testing machine Z010 (Zwick/Roell, Ulm, Germany) to ensure a comparable cem…

Universal testing machine3d printedMaterials scienceTest groupResearchShear forceAnova testGlass ionomer cement:CIENCIAS MÉDICAS [UNESCO]Comparative evaluationCompressive loadBiomaterials and Bioengineering in DentistryUNESCO::CIENCIAS MÉDICASComposite materialGeneral Dentistry
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Influence of preheating on mechanical and surface properties of nanofilled resin composites

2019

Background Resin composite preheating is an innovative method that could be clinically beneficial by improving the handling properties, marginal adaptation, and surface properties of uncured nanofilled resin composite materials. There is conflict and unclear information regarding the effect of preheating on the microhardness, fracture toughness and surface roughness of nanofilled resin composites. Thus, it is important to assess whether dental clinicians can adopt preheating procedures without compromising composite mechanical strength. Objective: The purpose of this study was to evaluate the effect of preheating on microhardness, fracture toughness and surface roughness of nanofilled resin…

Universal testing machineMaterials scienceResearchComposite number030206 dentistry02 engineering and technology021001 nanoscience & nanotechnologymedicine.disease_cause:CIENCIAS MÉDICAS [UNESCO]Indentation hardness03 medical and health sciences0302 clinical medicineFracture toughnessIndentationMoldVickers hardness testUNESCO::CIENCIAS MÉDICASBiomaterials and Bioengineering in DentistrySurface roughnessmedicineComposite material0210 nano-technologyGeneral Dentistry
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The impact of intercellular communication for the generation of complex multicellular prevascularized tissue equivalents

2019

In reconstructive surgery the use of prevascularized soft tissue equivalents is a promising approach for wound coverage of defects after tumor resection or trauma. However, in previous studies to generate soft tissue equivalents on collagen membranes, microcapillaries were restricted to superficial areas. In this study, to understand which factors were involved in the formation of these microcapillaries, the levels of the angiogenic factors vascular endothelial growth factor (VEGF), Interleukin-8 (IL-8), and basic fibroblast growth factor (bFGF) in the supernatants of the tissue equivalents were examined at various time points and conditions. Additionally, the influence of these factors on …

Vascular Endothelial Growth Factor AMaterials science0206 medical engineeringBasic fibroblast growth factor610 MedizinBiomedical EngineeringNeovascularization PhysiologicCell Communication02 engineering and technologyBiomaterialschemistry.chemical_compoundEquivalent610 Medical sciencesmedicineHumansFibroblastCells CulturedTube formationTissue EngineeringMicrocirculationInterleukin-8Metals and AlloysEndothelial CellsSoft tissueFibroblasts021001 nanoscience & nanotechnology020601 biomedical engineeringCoculture TechniquesCell biologyVascular endothelial growth factorEndothelial stem cellmedicine.anatomical_structurechemistryCeramics and CompositesFibroblast Growth Factor 20210 nano-technologyIntracellularJournal of Biomedical Materials Research Part A
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Scaffold vascularization in vivo driven by primary human osteoblasts in concert with host inflammatory cells.

2011

Successful cell-based tissue engineering requires a rapid and thorough vascularization in order to ensure long-term implant survival and tissue integration. The vascularization of a scaffold is a complex process, and is modulated by the presence of transplanted cells, exogenous and endogenous signaling proteins, and the host tissue reaction, among other influencing factors. This paper presents evidence for the significance of pre-seeded osteoblasts for the in vivo vascularization of a biodegradable scaffold. Human osteoblasts, cultured on silk fibroin micronets in vitro, migrated throughout the interconnected pores of the scaffold and produced extensive bone matrix. When these constructs we…

Vascular Endothelial Growth Factor AScaffoldMaterials scienceTime FactorsAngiogenesisCellBiophysicsFibroinNeovascularization PhysiologicBioengineeringMice SCIDBiomaterialsProsthesis ImplantationMiceTissue engineeringIn vivomedicineAnimalsHumansCells CulturedInflammationOsteoblastsTissue ScaffoldsIn vitroCell biologymedicine.anatomical_structureMechanics of MaterialsGiant cellCeramics and CompositesBlood VesselsFibroinsBiomedical engineeringBiomaterials
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Sonic hedgehog promotes angiogenesis and osteogenesis in a coculture system consisting of primary osteoblasts and outgrowth endothelial cells.

2009

A number of previous studies documented the angiogenic potential of outgrowth endothelial cells in vitro and in vivo and provided evidence that therapeutic success could depend on coculture or coimplantation strategies. Thus, deeper insight into the molecular mechanisms underlying this pro-angiogenic effect of cocultures might provide new translational options for tissue engineering and regenerative medicine. One promising signaling pathway in bone repair involved in neoangiogenesis and bone formation is the sonic hedgehog (Shh) pathway. In this article, we focus on the effect of Shh on the formation of microvessel-like structures and osteoblastic differentiation in cocultures of primary os…

Vascular Endothelial Growth Factor Amedicine.medical_specialtyCyclopamineAngiogenesisCellular differentiationBiomedical EngineeringNeovascularization PhysiologicBioengineeringBiochemistryBiomaterialsAngiopoietin-2chemistry.chemical_compoundOsteogenesisInternal medicinemedicineAngiopoietin-1HumansHedgehog ProteinsRNA MessengerSonic hedgehogBone regenerationDNA PrimersOsteoblastsbiologyBase SequenceTissue EngineeringVeratrum AlkaloidsEndothelial CellsCell DifferentiationOriginal ArticlesHedgehog signaling pathwayCoculture TechniquesRecombinant ProteinsCell biologyCapillariesUp-RegulationVascular endothelial growth factorVascular endothelial growth factor AEndocrinologychemistrybiology.proteinSignal TransductionTissue engineering. Part A
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Renal transplantation by automatic anastomotic device in a porcine model

2015

Automatic vascular staplers for vascular anastomoses in kidney transplantation may dramatically reduce the operative time and, in particular, warm ischemia time, thus increasing the outcome of transplantation. Ten pigs underwent kidney auto-transplantation by automatic anastomotic device. Kidneys were collected by laparotomy with selective ligations at the renal hilum and perfused with cold storage solution. To overcome the shortage in length of renal hilum, a tract of the internal jugular vein was harvested to increase the length of the vessels. The anastomoses were totally performed by the use of the anastomotic device. On 10 kidney transplants, nine were successful and no complications o…

Vascular anastomosiAnastomosis deviceAnimalSwineMedicine (all)Anastomosis SurgicalBiomedical EngineeringMedicine (miscellaneous)Mechanical vascular sutureWarm ischemia timeBioengineeringKidneyIliac ArteryKidney TransplantationBiomaterialAnastomosis device; Kidney transplantation; Mechanical vascular sutures; Vascular anastomosis; Warm ischemia time; Anastomosis Surgical; Animals; Automation; Disease Models Animal; Female; Iliac Artery; Kidney; Kidney Transplantation; Renal Artery; Swine; Biomaterials; Biomedical Engineering; Bioengineering; Medicine (miscellaneous); Medicine (all)AutomationDisease Models AnimalSettore MED/18 - Chirurgia GeneraleRenal ArteryAnimalsFemale
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Visions for regenerative medicine: interface between scientific fact and science fiction.

2006

This article gives a brief overview of the authors' views on the future development of tissue engineering with respect to the challenges both to the materials and life sciences. Emphasis will be placed on the advantages of three-dimensional bioresorbable polymers in combination with relevant molecular cues and the application of autologous stem or progenitor cells. There is a requirement for much more diversity in the synthesis of so-called "intelligent" materials, which respond to external stimuli, as well as the development of novel drug and gene delivery systems. In addition, much more basic research is necessary in developmental biology and the application of modern cell and molecular b…

VisionTissue EngineeringInterface (Java)business.industryPolymersStem CellsBioresorbable polymersBiomedical EngineeringMedicine (miscellaneous)BioengineeringNanotechnologyBiocompatible MaterialsGeneral MedicineGenetic TherapyRegenerative MedicineRegenerative medicineBiomaterialsCell and molecular biologyBasic researchMedicineAnimalsHumansEngineering ethicsbusinessForecastingArtificial organs
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Unveiling Molecular Changes in Water by Small Luminescent Nanoparticles

2017

This work was supported by the Spanish Ministerio de Educación y Ciencia (MAT2013-47395-C4-1-R and MAT2016-75362-C3-1- R) and by the COST Action CM1403. L.L.-P. thanks the Universidad Autónoma de Madrid for the “Formación de Personal Investigador (FPI-UAM)” program. P.H.-G. thanks the Spanish Ministerio de Economia y Competitividad (MINECO) for the Juan de la Cierva program. The authors from the University of Belgrade acknowledge the financial support of the Ministry of Education, Science and Technological Development of the Republic of Serbia (Project Nos. 45020 and 172056). M.I.M. thanks financial support from the Spanish Ministerio de Economía y Competitividad (MICINN) Project FIS2015-69…

Work (thermodynamics)Materials scienceEnergy transferwaterNanoparticleNanotechnology02 engineering and technologyion exchange010402 general chemistry01 natural sciences7. Clean energyBiomaterialsNanofluid:NATURAL SCIENCES:Physics [Research Subject Categories]MoleculeGeneral Materials SciencenanofluidsIon exchangeGeneral Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesNanocrystalChemical physicsnanoparticlesinterparticle energy transfer0210 nano-technologyLuminescenceBiotechnology
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One- and Two-Dimensional Diffusion of Metal Atoms in Graphene

2008

In the present work, individual Au or Pt atoms in layersconsisting of one or twographene planes have been monitoredin real time at high temperature by high-resolution TEM. Weobtain information about the location of metal atoms ingrapheneandthediffusionmechanisms.Activationenergiesfordiffusion are obtained in a temperature range close to thetemperature of the technically important metal-assisted CVDprocess.Thematerialwassynthesizedinanarcdischarge

Work (thermodynamics)Materials scienceMacromolecular SubstancesSurface PropertiesDiffusionMolecular Conformationchemistry.chemical_elementMolecular physicslaw.inventionDiffusionBiomaterialsMetallawMaterials TestingNanotechnologyGeneral Materials ScienceParticle SizePlatinumNanotubes CarbonGrapheneCarbon chemistryGeneral ChemistryAtmospheric temperature rangechemistryvisual_artvisual_art.visual_art_mediumGraphiteGoldParticle sizeAtomic physicsCrystallizationCarbonBiotechnologySmall
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Experimental and numerical study of composite T-joints for marine application

2010

Abstract The aim of this work was to study the behaviour of composite T-joints used in marine applications. The effect of several parameters was investigated. In particular, three configurations were studied; i.e. with adhesive and with two different over-laminations. Moreover, the joined sections were made of different materials. These joints were subjected to a tensile load in the plane of the sheet. To quantify the effect of different designs on the strength, a variance analysis was performed. Finally, a numerical model was developed using a commercial finite element code (Ansys).

Work (thermodynamics)Materials sciencePolymers and Plasticsbusiness.industryPlane (geometry)General Chemical EngineeringComposite numberStructural engineeringFinite element stress analysisBiomaterialsUltimate tensile strengthAdhesiveComposite materialFinite element codebusiness
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