Synthesis of Osteoconductive Organic—Inorganic Nanohybrids through Modification of Chitin with Alkoxysilane and Calcium Chloride
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Summary
Organic—inorganic hybrids synthesized from chitin by modification with glycidoxypropyltrimethoxysilane (GPS) and calcium chloride (CaCl2) form apatite on their surfaces in SBF within 7 days.
- Type
- article
- Published
- 2007-07-01
- Cited by
- 8
- References
- 24
- OpenAlex
- https://openalex.org/W17065165
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38574244
Keywords
Humanities, Psychology, Medicine, Philosophy
References
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- Implantable applications of chitin and chitosan.
- Rheological properties of chitin/lithium chloride, N,N-dimethyl acetamide solutions
- A novel covalently crosslinked gel of alginate and silane with the ability to form bone-like apatite.
- Apatite formation on PDMS-modified CaO-SiO2-TiO2 hybrids prepared by sol-gel process.
- Mechanism of apatite formation on CaOSiO2P2O5 glasses in a simulated body fluid
- Apatite Deposition on Organic-inorganic Hybrids Prepared from Chitin by Modification with Alkoxysilane and Calcium Salt
- Hydroxyapatite-chitin materials as potential tissue engineered bone substitutes.
- Apatite Formation Induced by Silica Gel in a Simulated Body Fluid
- Surface functional group dependence on apatite formation on self-assembled monolayers in a simulated body fluid.
- How useful is SBF in predicting in vivo bone bioactivity?
- Solutions able to reproduce in vivo surface-structure changes in bioactive glass-ceramic A-W.
- Dependence of apatite formation on silica gel on its structure : effect of heat treatment
- Surface modification of inorganic oxide particles with silane coupling agent and organic dyes
- Bioactive Ceramics: Challenges and Perspectives.
- Synthesis of bioactive organic-inorganic nanohybrid for bone repair through sol-gel processing.
Cited by
- Development of bioactive materials based on bone-bonding mechanism on metal oxides
- Apatite formation abilities and mechanical properties of hydroxyethylmethacrylate-based organic–inorganic hybrids incorporated with sulfonic groups and calcium ions
- Organic-inorganic composites designed for biomedical applications.
- Chitin and collagen as universal and alternative templates in biomineralization
- In vitro analysis of biopolymer coating with glycidoxypropyltrimethoxysilane on hernia meshes.
- Design of bone-integrating organic-inorganic composite suitable for bone repair.
- Design of bioactive bone cement based on organic-inorganic hybrids
- Biomineralization–Demineralization–Remineralization Phenomena in Nature
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