Naser Muja
Affiliations: | Johns Hopkins University, Baltimore, MD |
Area:
Neural Cell Migration, Differentiation, and PlasticityGoogle:
"Naser Muja"Mean distance: 106866
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Publications
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Miri AK, Muja N, Kamranpour NO, et al. (2016) Ectopic bone formation in rapidly fabricated acellular injectable dense collagen-Bioglass hybrid scaffolds via gel aspiration-ejection. Biomaterials. 85: 128-41 |
Chicatun F, Pedraza CE, Muja N, et al. (2013) Effect of chitosan incorporation and scaffold geometry on chondrocyte function in dense collagen type I hydrogels. Tissue Engineering. Part A. 19: 2553-64 |
Chicatun F, Muja N, Serpooshan V, et al. (2013) Effect of chitosan incorporation on the consolidation process of highly hydrated collagen hydrogel scaffolds Soft Matter. 9: 10811-10821 |
Kim H, Walczak P, Kerr C, et al. (2012) Immunomodulation by transplanted human embryonic stem cell-derived oligodendroglial progenitors in experimental autoimmune encephalomyelitis. Stem Cells (Dayton, Ohio). 30: 2820-9 |
Kim H, Walczak P, Muja N, et al. (2012) ICV-transplanted human glial precursor cells are short-lived yet exert immunomodulatory effects in mice with EAE. Glia. 60: 1117-29 |
Ghezzi CE, Marelli B, Muja N, et al. (2012) Immediate production of a tubular dense collagen construct with bioinspired mechanical properties. Acta Biomaterialia. 8: 1813-25 |
Ghezzi CE, Marelli B, Muja N, et al. (2011) Mesenchymal stem cell-seeded multilayered dense collagen-silk fibroin hybrid for tissue engineering applications. Biotechnology Journal. 6: 1198-207 |
Ghezzi CE, Muja N, Marelli B, et al. (2011) Real time responses of fibroblasts to plastically compressed fibrillar collagen hydrogels. Biomaterials. 32: 4761-72 |
Serpooshan V, Muja N, Marelli B, et al. (2011) Fibroblast contractility and growth in plastic compressed collagen gel scaffolds with microstructures correlated with hydraulic permeability. Journal of Biomedical Materials Research. Part A. 96: 609-20 |
Serpooshan V, Quinn TM, Muja N, et al. (2011) Characterization and modelling of a dense lamella formed during self-compression of fibrillar collagen gels: Implications for biomimetic scaffolds Soft Matter. 7: 2918-2926 |