Medium Osmolarity and Pericellular Matrix Development Improves Chondrocyte Survival When Photoencapsulated in Poly(Ethylene Glycol) Hydrogels at Low Densities
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Summary
The combination of antioxidants, physiological osmolarity, and the development of some PCM result in an improved robustness against free radical damage during photoencapsulation.
- Type
- article
- Published
- 2009-05-08
- Cited by
- 25
- References
- 46
- Access
- Open access
- OpenAlex
- https://openalex.org/W19331581
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:42499860
Keywords
Navy, Battlespace, Joint (building), Offensive, Pace
References
- The Pericellular Matrix as a Transducer of Biomechanical and Biochemical Signals in Articular Cartilage
- Development of Poly(Propylene Fumarate-co-Ethylene Glycol) as an Injectable Carrier for Endothelial Cells
- Effect of osmolarity on glycosaminoglycan production and cell metabolism of articular chondrocyte under three-dimensional culture system.
- Review: Photopolymerizable and Degradable Biomaterials for Tissue Engineering Applications
- DNA delivery from photocrosslinked PEG hydrogels: encapsulation efficiency, release profiles, and DNA quality.
- Expression of the human chondrocyte phenotype in vitro
- The Effects of Light Intensity, Temperature, and Comonomer Composition on the Polymerization Behavior of Dimethacrylate Dental Resins
- Lipid Peroxidation as a Possible Cause of Benzoyl Peroxide Toxicity in Rabbit Dental Pulp—A Microsomal Lipid Peroxidation in vitro
- Lipid peroxidation and activities of tyrosine aminotransferase and glutamine synthetase in hepatoma and glioma cells grown in bovine colostrum-supplemented medium
- Cytotoxicity of photosensitizers camphorquinone and 9-fluorenone with visible light irradiation on a human submandibular-duct cell line in vitro.
- The development and characterization of anin vitro system to study strain-induced cell deformation in isolated chondrocytes
- Human KVLQT1 gene shows tissue-specific imprinting and encompasses Beckwith-Wiedemann syndrome chromosomal rearrangements
- Changes in type of collagen synthesized as clones of chick chondrocytes grow and eventually lose division capacity.
- Engineering Complex Tissues
- The effects of scaffold thickness on tissue engineered cartilage in photocrosslinked poly(ethylene oxide) hydrogels.
- Ion channels and transporters involved in cell volume regulation and sensor mechanisms
- Improved quantitation and discrimination of sulphated glycosaminoglycans by use of dimethylmethylene blue.
- beta-Carotene: an unusual type of lipid antioxidant.
- Fluorometric assay of DNA in cartilage explants using Hoechst 33258.
- Method for Determining the Kinetic Parameters in Diffusion-Controlled Free-Radical Homopolymerizations
Cited by
- Tuning Hydrogel Degradation for Cartilage Tissue Engineering
- Chondrons and the Pericellular Matrix of Chondrocytes
- Cell encapsulation and cryostorage in PVA–gelatin cryogels: incorporation of carboxylated ε‐poly‐L‐lysine as cryoprotectant
- Dynamic loading stimulates chondrocyte biosynthesis when encapsulated in charged hydrogels prepared from poly(ethylene glycol) and chondroitin sulfate
- Age impacts extracellular matrix metabolism in chondrocytes encapsulated in degradable hydrogels
- Differential protein expression in human articular chondrocytes expanded in serum-free media of different medium osmolalities by DIGE.
- The role of the PCM in reducing oxidative stress induced by radical initiated photoencapsulation of chondrocytes in poly(ethylene glycol) hydrogels.
- Ionic osmolytes and intracellular calcium regulate tissue production in chondrocytes cultured in a 3D charged hydrogel.
- The Effect of Desulfation of Chondroitin Sulfate on Interactions with Positively Charged Growth Factors and Upregulation of Cartilaginous Markers in Encapsulated MSCs
- Influence of chondrocyte maturation on acute response to impact injury in PEG hydrogels.
- Semi-interpenetrating networks of hyaluronic acid in degradable PEG hydrogels for cartilage tissue engineering.
- Physiological osmolarities do not enhance long-term tissue synthesis in chondrocyte-laden degradable poly(ethylene glycol) hydrogels.
- 3D Printed Hydrogel Micro-Environments And Bioreactor Conditioning To Develop Native Heterogeneity In Tissue Engineered Heart Valves
- An Injectable Enzymatically Crosslinked Carboxymethylated Pullulan/Chondroitin Sulfate Hydrogel for Cartilage Tissue Engineering
- The Role of Chondrocyte Age in Cellular Response to External Cues and their Implications in Tissue Engineering
- pH-Sensitive Chitosan Hydrogel with Instant Gelation for Myocardial Regeneration
- The Role of Physiochemical Cues on MSC Differentiation and Tissue Regeneration in a Cartilage Biomimetic Hydrogel
- The role of chondroitin sulfate in regulating hypertrophy during MSC chondrogenesis in a cartilage mimetic hydrogel under dynamic loading
- Dynamic mechanical loading and growth factors influence chondrogenesis of induced pluripotent mesenchymal progenitor cells in a cartilage-mimetic hydrogel
- Regenerative Potential of Mandibular Condyle Cartilage and Bone Cells Compared to Costal Cartilage Cells When Seeded in Novel Gelatin Based Hydrogels
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