David A. Soscia, Ph.D.
Affiliations: | 2012 | Nanoscale Science and Engineering-Nanoscale Engineering | State University of New York, Albany, Albany, NY, United States |
Area:
Biomedical Engineering, Nanotechnology, General Biophysics, Materials Science EngineeringGoogle:
"David Soscia"Parents
Sign in to add mentorJames Castracane | grad student | 2012 | SUNY Albany | |
(Micropatterned electrospun nanofibrous substrates as scaffolds for engineered salivary glands.) |
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Publications
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Soscia DA, Lam D, Tooker AC, et al. (2020) A flexible 3-dimensional microelectrode array for in vitro brain models. Lab On a Chip |
Moya ML, Triplett M, Simon M, et al. (2019) A Reconfigurable In Vitro Model for Studying the Blood-Brain Barrier. Annals of Biomedical Engineering |
Lam D, Enright HA, Peters SKG, et al. (2019) Optimizing cell encapsulation condition in ECM-Collagen I hydrogels to support 3D neuronal cultures. Journal of Neuroscience Methods. 108460 |
Soscia DA, Sequeira SJ, Schramm RA, et al. (2013) Salivary gland cell differentiation and organization on micropatterned PLGA nanofiber craters. Biomaterials. 34: 6773-84 |
Cantara SI, Soscia DA, Sequeira SJ, et al. (2012) Selective functionalization of nanofiber scaffolds to regulate salivary gland epithelial cell proliferation and polarity. Biomaterials. 33: 8372-82 |
Sequeira SJ, Soscia DA, Oztan B, et al. (2012) The regulation of focal adhesion complex formation and salivary gland epithelial cell organization by nanofibrous PLGA scaffolds. Biomaterials. 33: 3175-86 |
Jean-Gilles R, Soscia D, Sequeira S, et al. (2010) Novel Modeling Approach to Generate a Polymeric Nanofiber Scaffold for Salivary Gland Cells. Journal of Nanotechnology in Engineering and Medicine. 1: 31008 |
Soscia DA, Raof NA, Xie Y, et al. (2010) Antibiotic-loaded PLGA nanofibers for wound healing applications Advanced Engineering Materials. 12 |