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Nanomedicine (London, England)|April 14, 2015
Osteoclastogenesis/osteoblastogenesis using human bone marrow-derived cocultures on nanotopographical polymer surfacesPeter S Young, Penelope M Tsimbouri, Nikolaj Gadegaard, et al.Journal of Tissue Engineering|June 7, 2014
Investigation of the limits of nanoscale filopodial interactionsLaura E McNamara, Terje Sjöström, Krishna Seunarine, et al.ACS Applied Bio Materials|September 9, 2020
Chiral Tartaric Acid Improves Fracture Toughness of Bioactive Brushite-Collagen Bone CementsStylianos O Sarrigiannidis, Hanan Moussa, Oana Dobre, et al.Acta Biomaterialia|February 12, 2009
Fabrication of pillar-like titania nanostructures on titanium and their interactions with human skeletal stem cellsTerje Sjöström, Matthew J Dalby, Andrew Hart, et al.Plos One|February 15, 2018
Nanoparticle-antagomiR based targeting of miR-31 to induce osterix and osteocalcin expression in mesenchymal stem cellsMark McCully, João Conde, Pedro V Baptista, et al.European Cells & Materials|February 4, 2005
Morphological and microarray analysis of human fibroblasts cultured on nanocolumns produced by colloidal lithographyM J Dalby, M O Riehle, D S Sutherland, et al.Acta Biomaterialia|December 24, 2008
Differential in-gel electrophoresis (DIGE) analysis of human bone marrow osteoprogenitor cell contact guidanceFahsai Kantawong, Richard Burchmore, Chris D W Wilkinson, et al.Integrative Biology : Quantitative Biosciences From Nano to Macro|March 8, 2012
Surface mobility regulates skeletal stem cell differentiationCristina González-García, David Moratal, Richard O C Oreffo, et al.IEEE Transactions on Nanobioscience|May 13, 2006
Fibroblast signaling events in response to nanotopography: a gene array studyMatthew J Dalby, Stephen J Yarwood, Heather J H Johnstone, et al.IEEE Transactions on Nanobioscience|May 13, 2006
Interactions of human blood and tissue cell types with 95-nm-high nanotopographyMatthew J Dalby, George E Marshall, Heather J H Johnstone, et al.Pageof 28