Bioinspired mineralization and cell adhesion on surface functionalized poly(vinyl alcohol) films.
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Summary
The PPVA supports in vitro cell adhesion and promotes in vitro biomineralization in the presence of cells, evaluated using human osteosarcoma cells.
- Type
- article
- Published
- 2009-06-01
- Cited by
- 61
- References
- 31
- OpenAlex
- https://openalex.org/W19195945
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:40715357
Keywords
Quality (philosophy), Computer science, Risk analysis (engineering), Business, Epistemology
References
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- Biomaterials Science: An Introduction to Materials in Medicine
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- Persistence of complexed acidic phospholipids in rapidly mineralizing tissues is due to affinity for mineral and resistance to hydrolytic attack:In Vitro data
- Crystallization of sparingly soluble salts on functionalized polymers
- Bioinspired growth of crystalline carbonate apatite on biodegradable polymer substrata.
- Characterization of poly(vinyl alcohol)/poly(ethylene glycol) hydrogels and PVA-derived hybrids by small-angle X-ray scattering and FTIR spectroscopy
- Osteoblast adhesion on biomaterials.
- Preparation and characterization of polyvinyl alcohol-gelatin hydrogel membranes for biomedical applications
- In vitro hydroxyapatite deposition onto a film surface-grated with organophosphate polymer.
- Porous calcium phosphate coating over phosphorylated chitosan film by a biomimetic method.
- THE OVERGROWTH OF HYDROXYAPATITE ON NEW FUNCTIONALIZED POLYMERS
- Morphological evaluation of bioartificial hydrogels as potential tissue engineering scaffolds
- Effects of polymer amount and processing conditions on the in vitro behaviour of hybrid titanium dioxide/polycaprolactone composites.
- Surface functional group dependence on apatite formation on self-assembled monolayers in a simulated body fluid.
- Interaction of cultured human endothelial cells with polymeric surfaces of different wettabilities.
- Growth of a Bonelike Apatite Layer on a Substrate by a Biomimetic Process
- In vitro bone formation using muscle-derived cells: a new paradigm for bone tissue engineering using polymer-bone morphogenetic protein matrices.
Cited by
- Preparation and characterization of a photocrosslinkable bioadhesive inspired by marine mussel.
- Development and application of biomimetic electrospun nanofibers in total joint replacement
- γ-Fe2O3 nanoparticles filled polyvinyl alcohol as potential biomaterial for tissue engineering scaffold.
- In vitro mineralization of functional polymers
- Effect of erythromycin-doped calcium polyphosphate scaffold composite in a mouse pouch infection model.
- Phosphate functionalized and lactic acid containing graft copolymer: synthesis and evaluation as biomaterial for bone tissue engineering applications
- Surface-Phosphorylated Copolymer Promotes Direct Bone Bonding
- Ultrastructural evaluation of in vitro mineralized calcium phosphate phase on surface phosphorylated poly(hydroxy ethyl methacrylate-co-methyl methacrylate)
- Pig bone derived hierarchical porous carbon and its enhanced cycling performance of lithium–sulfur batteries
- The use of physiological solutions or media in calcium phosphate synthesis and processing.
- Drug co-loading and pH-sensitive release core–shell nanoparticles via layer-by-layer assembly
- Electrospun polyvinyl alcohol–collagen–hydroxyapatite nanofibers: a biomimetic extracellular matrix for osteoblastic cells
- Bone tissue response to implant surfaces functionalized with phosphate-containing polymers.
- In vitro bioactivity of chitosan/poly (d,l-lactide-co-glycolide) composites
- In situ mineralization of hydroxyapatite on poly(vinyl alcohol) monolithic scaffolds for tissue engineering
- A novel strontium-doped calcium polyphosphate/erythromycin/poly(vinyl alcohol) composite for bone tissue engineering.
- Preparation and in vitro characterization of electrospun PVA scaffolds coated with bioactive glass for bone regeneration.
- Biocompatibility of Multilayer Poly Methyl Methacrylate (PMMA)/Poly Vinyl Alcohol (PVA) Bone Plate by Electrospinning Method
- Effect of surface functionalization on the physicomechanical properties of a novel biofunctional copolymer
- Preparing two-dimensional microporous carbon from Pistachio nutshell with high areal capacitance as supercapacitor materials
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