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Biomaterials|March 13, 2013
Cellular uptake and activity of heparin functionalised cerium oxide nanoparticles in monocytesS R Simon Ting, John M Whitelock, Romana Tomic, et al.
Histochemistry and Cell Biology|August 30, 2011
Colocalization in vivo and association in vitro of perlecan and elastinAnthony J Hayes, Megan S Lord, Susan M Smith, et al.
Connective Tissue Research|October 5, 2011
Not all lubricin isoforms are substituted with a glycosaminoglycan chainMegan S Lord, Ruby P Estrella, Christine Y Chuang, et al.
Molecular Biology of the Cell|June 13, 2003
Perlecan up-regulation of FRNK suppresses smooth muscle cell proliferation via inhibition of FAK signalingHeather A Walker, John M Whitelock, Pamela J Garl, et al.
Nano-Micro Letters|October 24, 2023
Biocatalytic Buoyancy-Driven Nanobots for Autonomous Cell Recognition and EnrichmentZiyi Guo, Chenchen Zhuang, Yihang Song, et al.
ACS Biomaterials Science & Engineering|January 18, 2021
Microchannels Are an Architectural Cue That Promotes Integration and Vascularization of Silk Biomaterials in VivoFengying Tang, Xue D Manz, Andre Bongers, et al.
Journal of Materials Chemistry. B|April 9, 2020
Synthesis and characterization of water soluble biomimetic chitosans for bone and cartilage tissue regenerationMegan S Lord, Bonny M Tsoi, Brooke L Farrugia, et al.
BMC Biotechnology|September 13, 2012
Perlecan domain 1 recombinant proteoglycan augments BMP-2 activity and osteogenesisArthur A Decarlo, Maria Belousova, April L Ellis, et al.
Journal of Controlled Release : Official Journal of the Controlled Release Society|February 13, 2017
Perlecan and vascular endothelial growth factor-encoding DNA-loaded chitosan scaffolds promote angiogenesis and wound healingMegan S Lord, April L Ellis, Brooke L Farrugia, et al.
Biochemistry|May 29, 2010
Heparan sulfate-dependent signaling of fibroblast growth factor 18 by chondrocyte-derived perlecanChristine Y Chuang, Megan S Lord, James Melrose, et al.
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