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Tissue Engineering|June 22, 2007
Design and fabrication of sub-mm-sized modules containing encapsulated cells for modular tissue engineeringAlison P McGuigan, Michael V SeftonJournal of Biomaterials Science. Polymer Edition|December 15, 2010
Patterning collagen/poloxamine-methacrylate hydrogels for tissue-engineering-inspired microfluidic and laser lithography applicationsOmar F Khan, Michael V SeftonJournal of Biomaterials Science. Polymer Edition|December 15, 2010
A poloxamine-polylysine acrylate scaffold for modular tissue engineeringEma C Ciucurel, Michael V SeftonJournal of Biomedical Materials Research. Part A|May 29, 2007
Poly(butyl methacrylate-co-methacrylic acid) tissue engineering scaffold with pro-angiogenic potential in vivoMark J Butler, Michael V SeftonTissue Engineering|April 19, 2007
Design criteria for a modular tissue-engineered constructAlison P McGuigan, Michael V SeftonBiomaterials|May 19, 2004
Biomaterial-associated thrombosis: roles of coagulation factors, complement, platelets and leukocytesMaud B Gorbet, Michael V SeftonTissue Engineering. Part A|November 8, 2014
Tuning graft- and host-derived vascularization in modular tissue constructs: a potential role of HIF1 activationGabrielle C Lam, Michael V SeftonTissue Engineering. Part A|December 27, 2018
Hypoxia-Inducible Factor Drives Vascularization of Modularly Assembled Engineered TissueGabrielle C Lam, Michael V SeftonChemical Society Reviews|June 16, 2020
Molecular and cellular cues governing nanomaterial-mucosae interactions: from nanomedicine to nanotoxicologyJosé das Neves, Roni Sverdlov Arzi, Alejandro SosnikPolymers|April 11, 2019
Permeability of Novel Chitosan-g-Poly(Methyl Methacrylate) Amphiphilic Nanoparticles in a Model of Small Intestine In VitroImrit Noi, Inbar Schlachet, Murali Kumarasamy, et al.Pageof 23