Gretchen W. Baneyx, Ph.D.

Affiliations: 
2001 University of Washington, Seattle, Seattle, WA 
Area:
Biomedical Engineering, Cell Biology
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"Gretchen Baneyx"

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Viola Vogel grad student 2001 University of Washington
 (The role of mechanical tension in fibronectin matrix assembly.)
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Correia BE, Bates JT, Loomis RJ, et al. (2014) Proof of principle for epitope-focused vaccine design. Nature. 507: 201-6
Touryan LA, Baneyx G, Vogel V. (2009) Exploiting fluorescence resonance energy transfer to probe structural changes in a macromolecule during adsorption and incorporation into a growing biomineral crystal. Colloids and Surfaces. B, Biointerfaces. 74: 401-9
Antia M, Baneyx G, Kubow KE, et al. (2008) Fibronectin in aging extracellular matrix fibrils is progressively unfolded by cells and elicits an enhanced rigidity response. Faraday Discussions. 139: 229-49; discussion 3
Antia M, Islas LD, Boness DA, et al. (2006) Single molecule fluorescence studies of surface-adsorbed fibronectin. Biomaterials. 27: 679-90
Barker TH, Baneyx G, Cardó-Vila M, et al. (2005) SPARC regulates extracellular matrix organization through its modulation of integrin-linked kinase activity. The Journal of Biological Chemistry. 280: 36483-93
Vogel V, Baneyx G. (2003) THE TISSUE ENGINEERING PUZZLE: A Molecular Perspective Annual Review of Biomedical Engineering. 5: 441-463
Baneyx G, Baugh L, Vogel V. (2002) Fibronectin extension and unfolding within cell matrix fibrils controlled by cytoskeletal tension Proceedings of the National Academy of Sciences of the United States of America. 99: 5139-5143
Baneyx G, Baugh L, Vogel V. (2001) Coexisting conformations of fibronectin in cell culture imaged using fluorescence resonance energy transfer Proceedings of the National Academy of Sciences of the United States of America. 98: 14464-14468
Vogel V, Thomas WE, Craig DW, et al. (2001) Structural insights into the mechanical regulation of molecular recognition sites Trends in Biotechnology. 19: 416-423
Baneyx G, Vogel V. (1999) Self-assembly of fibronectin into fibrillar networks underneath dipalmitoyl phosphatidylcholine monolayers: Role of lipid matrix and tensile forces Proceedings of the National Academy of Sciences of the United States of America. 96: 12518-12523
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