Publication Type Journal Article
Title Sol-gel-derived glass scaffold with high pore interconnectivity and enhanced bioactivity
Authors Ana C. Marques Rui M. Almeida Amath Thiema Shaojie Wang Matthias M. Falk Himanshu Jain
Groups
Journal JOURNAL OF MATERIALS RESEARCH
Year 2009
Month December
Volume 24
Number 12
Pages 3495-3502
Abstract We report on the preparation of a bioactive CaO-SiO2 monolithic scaffold with interconnected bimodal nanomacro porosity, which simulates the morphology of a natural trabecular bone, by a newly developed modified sol-gel process. This method inherently creates nanopores, whose average diameter can be tailored to approximately 5-20 nm by solvent exchange. To achieve interconnected macroporosity (pores similar to 5-300 mu m in size), a polymer [poly(ethylene oxide)] is added, which causes phase separation simultaneously with the sol-gel transition. High-resolution scanning electron microscopy and mercury intrusion porosimetry demonstrate a high degree of three-dimensional interconnectivity and sharp distributions of pore size. In vitro bioactivity tests in simulated body fluid (SBF) show bioactivity of the material after soaking for approximately 5 h, as verified by the formation of a hydroxyapatite layer deep into the scaffold structure. Analysis of the SBF after the reaction indicates the dissolution of the samples, another desired feature of temporary scaffolds for bone regeneration. MG63 osteoblast-like cells seeded on our sol-gel glass samples responded better to samples with nanopores enlarged by a solvent exchange process than to the one with normal nanopores. Thus, the benefits of the high surface area achieved by sol-gel and solvent exchange procedures are most clearly demonstrated for the first time.
DOI http://dx.doi.org/10.1557/JMR.2009.0440
ISBN
Publisher
Book Title
ISSN 0884-2914
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Conference Name
Bibtex ID ISI:000272412500002
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