Search results for "Biomaterials"

showing 10 items of 1265 documents

Delivery of siHIF‐1α to Reconstruct Tumor Normoxic Microenvironment for Effective Chemotherapeutic and Photodynamic Anticancer Treatments

2021

The tumor hypoxic microenvironment not only induces genetic and epigenetic changes in tumor cells, immature vessels formation for oxygen demand, but also compromises the efficiency of therapeutic interventions. On the other hand, conventional therapeutic approaches which kill tumor cells or destroy tumor blood vessels to block nutrition and oxygen supply usually facilitate even harsher microenvironment. Thus, simultaneously relieving the strained response of tumor cells and blood vessels represents a promising strategy to reverse the adverse tumor hypoxic microenvironment. In the present study, an integrated amphiphilic system (RSCD) is designed based on Angiotensin II receptor blocker cand…

medicine.medical_treatmentPhotodynamic therapy02 engineering and technology010402 general chemistry01 natural sciencesBiomaterialsNeovascularizationchemistry.chemical_compoundIn vivoCell Line TumorTumor MicroenvironmentmedicineHumansGeneral Materials ScienceRNA Small InterferingHypoxiaChemotherapyTumor microenvironmentGeneral ChemistryHypoxia-Inducible Factor 1 alpha Subunit021001 nanoscience & nanotechnologyCell HypoxiaIn vitro0104 chemical sciencesOxygenchemistryDrug deliveryCancer researchmedicine.symptomGrowth inhibition0210 nano-technologyBiotechnologySmall
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V un VI grupas metaloīdu sorbcijas izpēte uz modificētiem biomateriālu sorbentiem

2015

Promocijas darbā veikta augstas pievienotās vērtības sorbentu izstrāde, izmantojot vienu no Latvijas nozīmīgākajiem vietējiem derīgajiem izrakteņiem, un pētītas to izmantošanas iespējas. Promocijas darbā sintezēti sorbenti, kuru pamatā ir biomateriāli, kas modificēti ar dzelzs savienojumiem. Izvērtētas kūdras kā sorbenta izmantošanas iespējas, kā arī pētītas kūdras modificēšanas metodes un to ietekme uz sorbcijas kapacitāti. Bez kūdras izmantoti arī tādi materiāli kā sūnas, skaidas, salmi, niedres, humīnskābes un salīdzinājumam arī smiltis, kas arī modificēti ar dzelzs savienojumiem. Sintezētie sorbenti raksturoti, izmantojot skenējošo elektronmikroskopiju (SEM), Furjē tanformācijas infrasa…

metalloidssorptionVides zinātnearsēnsantimonyarsenicEnvironmental scienceantimonsmetaloīdikūdrasorbentstelūrstelluriumbiomateriālipeatsorbentisorbcijabiomaterials
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Comparisons of processing and strength properties of two adhesive systems for composite joints

2007

Abstract In the present study rheological, static and impact tests are carried out on two adhesive resins usually employed in marine applications; then single lap joint tests are conducted on composites joints evidencing the effect of the curing time of both resins on the mechanical properties of the joint. The applicability and workability conditions of the adhesive resins are determined evaluating the curing evolution by a preliminary rheological analysis; then the relation of curing properties with the mechanical performances of the resins themselves and with ones of the composite joints is estimated. Static flexural and Izod impact tests are performed on the resins at increasing time af…

musculoskeletal diseasesCuring timeMaterials sciencePolymers and PlasticsAdhesive bondingGeneral Chemical EngineeringComposite numberIzod impact strength testEpoxySingle lap shear testBiomaterialsStructural adhesiveSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiLap jointFlexural strengthvisual_artvisual_art.visual_art_mediumAdhesiveComposite materialCuring (chemistry)International Journal of Adhesion and Adhesives
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Bioengineered in vitro 3D model of myotonic dystrophy type 1 human skeletal muscle

2021

Abstract Myotonic dystrophy type 1 (DM1) is the most common hereditary myopathy in the adult population. The disease is characterized by progressive skeletal muscle degeneration that produces severe disability. At present, there is still no effective treatment for DM1 patients, but the breakthroughs in understanding the molecular pathogenic mechanisms in DM1 have allowed the testing of new therapeutic strategies. Animal models and in vitro two-dimensional cell cultures have been essential for these advances. However, serious concerns exist regarding how faithfully these models reproduce the biological complexity of the disease. Biofabrication tools can be applied to engineer human three-dim…

musculoskeletal diseasesDistròfia muscularcongenital hereditary and neonatal diseases and abnormalitiesCellular differentiation0206 medical engineeringBiomedical EngineeringBioengineering02 engineering and technologyBiologyBiochemistryMyotonic dystrophyBiomaterials3D cell culturemedicineMyocyteTissue engineeringMyopathyMyogenesisSkeletal muscleGeneral MedicineMuscular dystrophy021001 nanoscience & nanotechnologymedicine.disease020601 biomedical engineering3. Good healthCell biologymedicine.anatomical_structureEnginyeria de teixitsCell culturemedicine.symptom0210 nano-technologyBiotechnologyBiofabrication
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The role of biosilica in the osteoprotegerin/RANKL ratio in human osteoblast-like cells

2010

Abstract Earlier studies have demonstrated that biosilica, synthesized by the enzyme silicatein, induces hydroxyapatite formation in osteoblast-like SaOS-2 cells. Here we study the effect of biosilica on the expressions of osteoprotegerin [OPG] and the receptor activator for NF-κB ligand [RANKL] in the SaOS-2 cell model. We show that during growth of SaOS-2 cells on biosiliceous matrices hydroxyapatite formation is induced, while syntheses of cartilaginous proteoglycans and sulfated glycosaminoglycans are down-regulated. Furthermore, quantitative real-time RT-PCR analysis revealed a strong time-depended increase in expression of OPG in biosilica exposed SaOS-2 cells while the steady-state e…

musculoskeletal diseasesMaterials scienceCell Culture TechniquesBiophysicsBiocompatible MaterialsBioengineeringCell LineBiomaterialsGlycosaminoglycanSulfationOsteoprotegerinMaterials TestingmedicineAnimalsHumansReceptorchemistry.chemical_classificationOsteoblastsbiologyActivator (genetics)RANK LigandOsteoprotegerinOsteoblastSilicon DioxideCathepsinsExtracellular MatrixCell biologyEnzymemedicine.anatomical_structurechemistryBiochemistryMechanics of MaterialsRANKLCeramics and Compositesbiology.proteinBiomaterials
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Mechanisms of cell death in canine parvovirus-infected cells provide intuitive insights to developing nanotools for medicine

2010

Jonna Nykky, Jenni E Tuusa, Sanna Kirjavainen, Matti Vuento, Leona GilbertNanoscience Center and Department of Biological and Environmental Science, University of Jyväskylä, FinlandAbstract: Viruses have great potential as nanotools in medicine for gene transfer, targeted gene delivery, and oncolytic cancer virotherapy. Here we have studied cell death mechanisms of canine parvovirus (CPV) to increase the knowledge on the CPV life cycle in order to facilitate the development of better parvovirus vectors. Morphological studies of CPV-infected Norden laboratory feline kidney (NLFK) cells and canine fibroma cells (A72) displayed characteristic apoptotic events. Apoptosis was f…

nekroosianimal diseasesvirusesGene ExpressionPharmaceutical ScienceApoptosisViral Nonstructural Proteinsnecrosis0302 clinical medicineInternational Journal of NanomedicineDrug DiscoveryCaspaseOriginal ResearchMembrane Potential MitochondrialOncolytic Virotherapy0303 health sciencesCell DeathbiologynanoparticleCell Cycleapoptosiscanine parvovirusCanine parvovirusGeneral MedicineFlow Cytometry3. Good healthNanomedicineCaspases030220 oncology & carcinogenesisvirotherapyProgrammed cell deathParvovirus CaninenanopartikkeliBiophysicsBioengineeringDNA FragmentationGene deliveryCell LineBiomaterials03 medical and health sciencesDogsMicroscopy Electron TransmissionAnimalsHumansVirotherapyapoptoosi030304 developmental biologyParvovirusOrganic Chemistrybiology.organism_classificationVirologyOncolytic viruskoiran parvovirusviroterapiaMicroscopy FluorescenceApoptosisCatsbiology.proteinDNA DamageHeLa CellsInternational Journal of Nanomedicine
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Cell-cycle control in cell-biomaterial interactions

2000

Current biocompatibility testing involves the demonstration of cell proliferation, which is usually interpreted as a sign of positive biocompatibility when the materials sustain cell proliferation. As the field of biomaterials research is rapidly moving toward tissue-engineered devices and hybrid organs, control of cell function has become a main topic. Cell function, which involves specific differentiation pathways, cannot be separated from cell-cycle control. The study of cell-cycle control is an important extension of routine proliferation assays and has extensive roots in developmental and tumor biology. We studied the expression of the tumour suppressor gene p53 and the proliferation-a…

p53BiocompatibilityBiomedical EngineeringFOCAL ADHESION KINASEHUMAN BONEPROTEINBiologyFlow cytometryBiomaterialsFocal adhesionbiomaterials testing methodsmedicineKI-67BREAST-CANCERmedicine.diagnostic_testCell growthINDUCTIONPROLIFERATIONBiomaterialCell cycleCell biologyAPOPTOSISEndothelial stem cellFibronectinDNA-DAMAGEImmunologybiology.proteinendothelial cellcell cycleGROWTH ARRESTJournal of Biomedical Materials Research
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Assessment of the lower limb biomechanics in patients after tibiofibular syndesmosis injury treatment

2021

Purpose: There is no consensus as to the number of bone cortices engaged in tibiofibular syndesmosis treatment. The purpose of our study was to assess the weight distribution on the lower limbs after tricortical or quadricortical syndesmosis fixation and different timing of screw removal. Methods: A total of 55 patients who underwent treatment for acute tibiofibular syndesmosis injury were analyzed in this study. The Zebris pedobarographic platform was used to measure the distribution of body weight on the lower limbs. The study population was stratified by the time to syndesmotic screw removal (8–15 weeks versus 16–22 weeks) and the number of bone cortices involved in fixation (three [tric…

pedobarographic platformBiomaterialsBiomedical EngineeringBiophysicsBioengineeringweight distributionlower limbstibiofibular syndesmosis injurysymmetryActa of Bioengineering and Biomechanics
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Antibacterial Efficiency of Surface-Immobilized Flavobacterium-Infecting Bacteriophage

2019

Control of bacterial diseases by bacteriophages (phages) is gaining more interest due to increasing antibiotic resistance. This has led to technologies to attach phages on surfaces to form a biomaterial that can functionally display phages that interact with bacteria, to carry out successful infection cycles. Such a material could be applied in many environments, where the target pathogens are expected. Although this approach has been applied successfully in a few studies already, the basis of the antibacterial effect by the immobilized phages is unclear, and the interpretation of the results depends on the study. Here, we studied the phage attachment density, their detachment rate and infe…

phage therapybakteeritauditPhage therapypinnatvirusesmedicine.medical_treatmentBiomedical Engineering02 engineering and technologyAntibacterial effectbakteriofagitMicrobiologyBiomaterialsBacteriophage03 medical and health sciencesAntibiotic resistancemedicinevesiviljely (kalatalous)Infectivitysurface adsorbed bacteriophages0303 health sciencesantibacterial surfacesbiology030306 microbiologyChemistryBiochemistry (medical)biomaterialBiomaterialGeneral Chemistry021001 nanoscience & nanotechnologybiology.organism_classificationfagiterapiaaquaculturevirus material0210 nano-technologybiomateriaalitBacteriaFlavobacteriumACS Applied Bio Materials
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On the high-pressure phase stability and elastic properties ofβ-titanium alloys

2017

We have studied the compressibility and stability of different β-titanium alloys at high pressure, including binary Ti–Mo, Ti–24Nb–4Zr–8Sn (Ti2448) and Ti–36Nb–2Ta–0.3O (gum metal). We observed stability of the β phase in these alloys to 40 GPa, well into the ω phase region in the P–T diagram of pure titanium. Gum metal was pressurised above 70 GPa and forms a phase with a crystal structure similar to the η phase of pure Ti. The bulk moduli determined for the different alloys range from 97  ±  3 GPa (Ti2448) to 124  ±  6 GPa (Ti–16.8Mo–0.13O).

phase stabilityMECHANISMMaterials scienceFluids & Plasmas0204 Condensed Matter PhysicsThermodynamicschemistry.chemical_element02 engineering and technologyCrystal structure01 natural sciencestitanium alloysPhase (matter)0103 physical sciencesGeneral Materials Sciencetitanium0912 Materials EngineeringSUPERELASTICITY010302 applied physicsScience & Technology1007 NanotechnologyPhase stabilityPhysicsDiagramMetallurgyGum metal021001 nanoscience & nanotechnologyCondensed Matter PhysicsTI-24NB-4ZR-8SNSTATEMARTENSITIC-TRANSFORMATIONPhysics Condensed Matterdiamond anvil cellchemistryMETALHigh pressurePhysical SciencesCompressibilityTI0210 nano-technologybiomaterialsTitaniumJournal of Physics: Condensed Matter
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