Serena Best
Affiliations: | biomaterials | University of London, London, England, United Kingdom |
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Publications
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Lawton JM, Habib M, Ma B, et al. (2018) Correction to: The effect of cationically-modified phosphorylcholine polymers on human osteoblasts in vitro and their effect on bone formation in vivo. Journal of Materials Science. Materials in Medicine. 29: 26 |
Lawton JM, Habib M, Ma B, et al. (2017) The effect of cationically-modified phosphorylcholine polymers on human osteoblasts in vitro and their effect on bone formation in vivo. Journal of Materials Science. Materials in Medicine. 28: 144 |
Bennett SM, Arumugam M, Wilberforce S, et al. (2016) The effect of particle size on the in vivo degradation of poly(D,L-lactide-co-glycolide)/α-tricalcium phosphate micro- and nanocomposites. Acta Biomaterialia |
Friederichs RJ, Brooks RA, Ueda M, et al. (2015) In vitro osteoclast formation and resorption of silicon-substituted hydroxyapatite ceramics. Journal of Biomedical Materials Research. Part A. 103: 3312-22 |
Meyer F, Wardale J, Best S, et al. (2012) Effects of lactic acid and glycolic acid on human osteoblasts: a way to understand PLGA involvement in PLGA/calcium phosphate composite failure. Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society. 30: 864-71 |
Juhasz JA, Best SM, Bonfield W. (2010) Preparation of novel bioactive nano-calcium phosphate-hydrogel composites. Science and Technology of Advanced Materials. 11: 014103 |
Lynn AK, Best SM, Cameron RE, et al. (2010) Design of a multiphase osteochondral scaffold. I. Control of chemical composition. Journal of Biomedical Materials Research. Part A. 92: 1057-65 |
San Thian E, Ahmad Z, Huang J, et al. (2008) The role of electrosprayed apatite nanocrystals in guiding osteoblast behaviour. Biomaterials. 29: 1833-43 |
Juhasz JA, Best SM, Auffret AD, et al. (2008) Biological control of apatite growth in simulated body fluid and human blood serum. Journal of Materials Science. Materials in Medicine. 19: 1823-9 |
Huang J, Lin YW, Fu XW, et al. (2007) Development of nano-sized hydroxyapatite reinforced composites for tissue engineering scaffolds. Journal of Materials Science. Materials in Medicine. 18: 2151-7 |