Matthew C. Leung, Ph.D.
Affiliations: | 2013 | Materials Science and Engineering | University of Washington, Seattle, Seattle, WA |
Area:
Materials Science Engineering, Biomedical Engineering, Cell BiologyGoogle:
"Matthew Leung"Parents
Sign in to add mentorMiqin Zhang | grad student | 2013 | University of Washington | |
(Chitosan-Based Scaffolds for Stem Cell Renewal and Differentiation.) |
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Publications
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Tsao CT, Leung M, Chang JY, et al. (2014) A simple material model to generate epidermal and dermal layers in vitro for skin regeneration. Journal of Materials Chemistry. B, Materials For Biology and Medicine. 2: 5256-5264 |
Kievit FM, Florczyk SJ, Leung MC, et al. (2014) Proliferation and enrichment of CD133(+) glioblastoma cancer stem cells on 3D chitosan-alginate scaffolds. Biomaterials. 35: 9137-43 |
Jana S, Leung M, Chang J, et al. (2014) Effect of nano- and micro-scale topological features on alignment of muscle cells and commitment of myogenic differentiation. Biofabrication. 6: 035012 |
Lou T, Leung M, Wang X, et al. (2014) Bi-layer scaffold of chitosan/PCL-nanofibrous mat and PLLA-microporous disc for skin tissue engineering. Journal of Biomedical Nanotechnology. 10: 1105-13 |
Tsao CT, Leung M, Yu-Fong Chang J, et al. (2014) A simple material model to generate epidermal and dermal layers in vitro for skin regeneration Journal of Materials Chemistry B. 2: 5256-5264 |
Leung M, Jana S, Tsao CT, et al. (2013) Tenogenic differentiation of human bone marrow stem cells via a combinatory effect of aligned chitosan-poly-caprolactone nanofibers and TGF-β3. Journal of Materials Chemistry. B. 1: 6516-6524 |
Leung M, Cooper A, Jana S, et al. (2013) Nanofiber-based in vitro system for high myogenic differentiation of human embryonic stem cells. Biomacromolecules. 14: 4207-16 |
Kievit FM, Cooper A, Jana S, et al. (2013) Aligned chitosan-polycaprolactone polyblend nanofibers promote the migration of glioblastoma cells. Advanced Healthcare Materials. 2: 1651-9 |
Florczyk SJ, Leung M, Li Z, et al. (2013) Evaluation of three-dimensional porous chitosan-alginate scaffolds in rat calvarial defects for bone regeneration applications. Journal of Biomedical Materials Research. Part A. 101: 2974-83 |
Aaberg-Jessen C, Fogh L, Halle B, et al. (2013) EXPERIMENTAL THERAPEUTICS AND PHARMACOLOGY Neuro-Oncology. 15: iii37-iii61 |