By Chengtie Wu, Jiang Chang, Yin Xiao
Bioceramics play an incredible function in repairing and regenerating faulty or broken bone. each year, greater than 500,000 bone graft methods are played within the usa and nearly 2.2 million are carried out world wide. Advanced Bioactive Inorganic fabrics for Bone Regeneration and Drug supply reviews the most recent advances within the box of bioceramics. The booklet summarizes leading edge strategies, bioceramic layout, and strategies for cloth synthesis and drug supply.
Offering tips for biomedical engineering researchers and fabric scientists, the ebook explores:
- Novel mesoporous bioactive glasses and silicate-based ceramics for bone regeneration and drug supply
- Bioactive silicate ceramics, together with their mechanical houses, interplay with bone-forming cells, and in vivo osteogenesis and angiogenesis
- Silica nanospheres with a core-shell constitution and their particular houses for controllable drug supply
- The 3D-printing strategy to arrange complex bioceramic scaffolds for bone tissue engineering applications―including the training, mechanical power, and organic homes of 3D-printed porous scaffolds of calcium phosphate cement and silicate bioceramics
- Biomimetic education and controllable crystal development and biomineralization of bioceramics
- Inorganic and natural composite fabrics and their targeted organic, electric, and mechanical houses that allow the layout of good bone regeneration and gene supply systems
A accomplished survey of the learn development of bioceramics and their purposes in bone fix and regeneration, this quantity is designed to augment examine and profession improvement for these during this box and to facilitate additional learn and possibilities for brand new solutions.
Read or Download Advanced bioactive inorganic materials for bone regeneration and drug delivery PDF
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Additional resources for Advanced bioactive inorganic materials for bone regeneration and drug delivery
Li, X. , 2009. Effect of pore size on the growth of hydroxyapatite from mesoporous CaO-SiO(2) substrate. Ind Eng Chem Res 48: 8829–36. , 2011. Porous Ca-Si-based nanospheres: A potential intra-canal disinfectant for infected canal treatment. Mater Lett 81: 16–19. , 2011. Luminescent, mesoporous, and bioactive europium-doped calcium silicate (MCS: Eu3+) as a drug carrier. J Colloid Interface Sci 357: 280–5. , 2011. Synthesis of a well-ordered mesoporous 58S bioactive glass by a simple method. Int J Appl Ceram Technol 8: 547–52.
Mesoporous bioactive glasses for controlled drug release. Micropor Mesopor Mat 109: 210–5. , Li, Y. , and Li, D. , 2010. Synthesis and in vitro bioactivity of CaO-SiO2P2O5 mesoporous microspheres. Microporous Mesoporous Mater 135: 67–73. Zhao, Y. , Loo, S. , Chen, Y. , 2008. In situ SAXRD study of sol-gel induced well-ordered mesoporous bioglasses for drug delivery. J Biomed Mater Res A 85: 1032–42. , and Greenspan, D. , 2000. Processing and properties of sol-gel bioactive glasses. J Biomed Mater Res 53: 694–701.
Hua, Z. , 2008. One-pot synthesis of magnetic and mesoporous bioactive glass composites and their sustained drug release property. Acta Mater 56: 3260–5. , 2009. MBG/PLGA composite microspheres with prolonged drug release. J Biomed Mater Res B Appl Biomater 89: 148–54. Lin, H. , Wang, W. , Hsiung, P. , 2010. Light-sensitive intelligent drug delivery systems of coumarin-modified mesoporous bioactive glass. Acta Biomater 6: 3256–63. , Yang, P. , 2009. Luminescent and mesoporous europium-doped bioactive glasses (MBG) as a drug carrier.
Advanced bioactive inorganic materials for bone regeneration and drug delivery by Chengtie Wu, Jiang Chang, Yin Xiao
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