Silviya P. Zustiak, Ph.D.
Affiliations: | 2009 | Engineering, Chemical and Biochemical | University of Maryland, Baltimore County, Baltimore, MD, United States |
Area:
Chemical Engineering, Biomedical Engineering, Materials Science EngineeringGoogle:
"Silviya Zustiak"Parents
Sign in to add mentorJennie B. Leach | grad student | 2009 | UMBC | |
(Star poly(ethylene glycol) as a tunable scaffold for neural tissue engineering.) |
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Publications
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Zambuto SG, Kolluru SS, Ferchichi E, et al. (2023) Evaluation of gelatin bloom strength on gelatin methacryloyl hydrogel properties. Biorxiv : the Preprint Server For Biology |
Krebs J, Stealey S, Brown A, et al. (2023) Carrageenan-Based Crowding and Confinement Combination Approach to Increase Collagen Deposition for In Vitro Tissue Development. Gels (Basel, Switzerland). 9 |
Stealey ST, Gaharwar AK, Zustiak SP. (2023) Laponite-Based Nanocomposite Hydrogels for Drug Delivery Applications. Pharmaceuticals (Basel, Switzerland). 16 |
Clancy A, Chen D, Bruns J, et al. (2022) Hydrogel-based microfluidic device with multiplexed 3D in vitro cell culture. Scientific Reports. 12: 17781 |
Bruns J, Egan T, Mercier P, et al. (2022) Glioblastoma spheroid growth and chemotherapeutic responses in single and dual-stiffness hydrogels. Acta Biomaterialia |
Ghassemi Z, Ruesing S, Leach JB, et al. (2021) Stability of proteins encapsulated in Michael-type addition polyethylene glycol hydrogels. Biotechnology and Bioengineering |
Stealey ST, Gaharwar AK, Pozzi N, et al. (2021) Development of Nanosilicate-Hydrogel Composites for Sustained Delivery of Charged Biopharmaceutics. Acs Applied Materials & Interfaces |
Hill L, Bruns J, Zustiak SP. (2021) Hydrogel matrix presence and composition influence drug responses of encapsulated glioblastoma spheroids. Acta Biomaterialia |
Choi MH, Blanco A, Stealey S, et al. (2020) Micro-Clotting of Platelet-Rich Plasma Upon Loading in Hydrogel Microspheres Leads to Prolonged Protein Release and Slower Microsphere Degradation. Polymers. 12 |
Kroger SM, Hill L, Jain E, et al. (2020) Design of Hydrolytically Degradable Polyethylene Glycol Crosslinkers for Facile Control of Hydrogel Degradation. Macromolecular Bioscience. e2000085 |