Melissa Krebs

Publications

Nguyen, M., Jeon, O., Krebs, M., Schapira, D., & Alsberg, E. (2014). Sustained localized presentation of RNA interfering molecules from in situ forming hydrogels to guide stem cell osteogenic differentiation. Biomaterials, 35 (24), 6278–6286.
Nguyen, M. K., Jeon, O. K., Krebs, M. K., Schapira, D. K., & Alsberg, E. K. (2014). Sustained localized presentation of RNA interfering molecules from in situ forming hydrogels to guide stem cell osteogenic differentiation. BIOMATERIALS, 35 (24), 6278-6286.
Heylman, C., Santoso, S., Krebs, M., Saidel, G. M., Alsberg, E. M., & Muschler, G. M. (2014). Modeling and experimental methods to predict oxygen distribution in bone defects following cell transplantation. MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING, 52 (4), 321-330.
Heylman, C., Santoso, S., Krebs, M., Saidel, G. M., Alsberg, E. M., & Muschler, G. M. (2014). Modeling and experimental methods to predict oxygen distribution in bone defects following cell transplantation. Medical & biological engineering & computing, 52 (4), 321–330.
Nguyen, M. K., Jeon, O. K., Krebs, M. K., Schapira, D. K., & Alsberg, E. K. (2014). Sustained localized presentation of RNA interfering molecules from in situ forming hydrogels to guide stem cell osteogenic differentiation. BIOMATERIALS, 35 (24), 6278-6286.
Corn, D., Kim, Y., Krebs, M., Mounts, T., Molter, J., Gerson, S., Alsberg, E., Dennis, J., & Lee, Z. (2013). Imaging early stage osteogenic differentiation of mesenchymal stem cells. Journal of Orthopaedic Research, 31 (6), 871–879.
Corn, D., Kim, Y., Krebs, M., Mounts, T., Molter, J., Gerson, S., Alsberg, E., Dennis, J., & Lee, Z. (2013). Imaging early stage osteogenic differentiation of mesenchymal stem cells. JOURNAL OF ORTHOPAEDIC RESEARCH, 31 (6), 871-879.
Bonino, C., Efimenko, K., Jeong, S., Krebs, M., Alsberg, E., & Khan, S. (2012). Three-Dimensional Electrospun Alginate Nanofiber Mats via Tailored Charge Repulsions. Small, 8 (12), 1928–1936.
Lee, Z., Dennis, J., Alsberg, E., Krebs, M., Welter, J., & Caplan, A. (2012). Imaging stem cell differentiation for cell-based tissue repair.. Methods in enzymology, 506 , 247-63.
Jeong, S., Jeon, O., Krebs, M., Hill, M., & Alsberg, E. (2012). Biodegradable photo-crosslinked alginate nanofibre scaffolds with tuneable physical properties, cell adhesivity and growth factor release. European cells & materials, 24 , 331.
Jeong, S., Jeon, O., Krebs, M., Hill, M., & Alsberg, E. (2012). BIODEGRADABLE PHOTO-CROSSLINKED ALGINATE NANOFIBRE SCAFFOLDS WITH TUNEABLE PHYSICAL PROPERTIES, CELL ADHESIVITY AND GROWTH FACTOR RELEASE. EUROPEAN CELLS & MATERIALS, 24 , 331-343.
Jeon, O., Powell, C., Solorio, L., Krebs, M., & Alsberg, E. (2011). Affinity-based growth factor delivery using biodegradable, photocrosslinked heparin-alginate hydrogels.. Journal of controlled release : official journal of the Controlled Release Society, 154 (3), 258-66.
Krebs, M., & Alsberg, E. (2011). ChemInform Abstract: Localized, Targeted, and Sustained siRNA Delivery. ChemInform, 42 (26), no-no.
Jeon, O., Krebs, M., & Alsberg, E. (2011). Controlled and sustained gene delivery from injectable, porous PLGA scaffolds. JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 98A (1), 72-79.
Krebs, M., & Alsberg, E. (2011). Localized, targeted, and sustained siRNA delivery. Chemistry–A European Journal, 17 (11), 3054–3062.
Jeong, S., Krebs, M., Bonino, C., Samorezov, J., Khan, S., & Alsberg, E. (2011). Electrospun Chitosan-Alginate Nanofibers with In Situ Polyelectrolyte Complexation for Use as Tissue Engineering Scaffolds. TISSUE ENGINEERING PART A, 17 (1-2), 59-70.
Jeon, O., Krebs, M., & Alsberg, E. (2011). Controlled and sustained gene delivery from injectable, porous PLGA scaffolds. Journal of Biomedical Materials Research Part A, 98 (1), 72–79.
Jeon, O., Powell, C., Solorio, L., Krebs, M., & Alsberg, E. (2011). Affinity-based growth factor delivery using biodegradable, photocrosslinked heparin-alginate hydrogels. JOURNAL OF CONTROLLED RELEASE, 154 (3), 258-266.
Bonino, C., Krebs, M., Saquing, C., Jeong, S., Shearer, K., Alsberg, E., & Khan, S. (2011). Electrospinning alginate-based nanofibers: From blends to crosslinked low molecular weight alginate-only systems. Carbohydrate Polymers, 85 (1), 111–119.
Jeong, S., Krebs, M., Bonino, C., Khan, S., & Alsberg, E. (2010). Electrospun alginate nanofibers with controlled cell adhesion for tissue engineering.. Macromolecular bioscience, 10 (8), 934-43.
Krebs, M., Salter, E., Chen, E., Sutter, K., & Alsberg, E. (2010). Calcium phosphate-DNA nanoparticle gene delivery from alginate hydrogels induces in vivo osteogenesis. Journal of Biomedical Materials Research Part A, 92 (3), 1131–1138.
Jeong, S., Krebs, M., Bonino, C., Samorezov, J., Khan, S., & Alsberg, E. (2010). Electrospun chitosan–alginate nanofibers with in situ polyelectrolyte complexation for use as tissue engineering scaffolds. Tissue Engineering Part A, 17 (1-2), 59–70.
Krebs, M., Jeon, O., & Alsberg, E. (2009). Localized and Sustained Delivery of Silencing RNA from Macroscopic Biopolymer Hydrogels. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 131 (26), 9204-+.
Erb, R., Krebs, M., Alsberg, E., Samanta, B., Rotello, V., & Yellen, B. (2009). Beyond diffusion-limited aggregation kinetics in microparticle suspensions. Physical Review E, 80 (5), 051402.
Krebs, M., Jeon, O., & Alsberg, E. (2009). Localized and sustained delivery of silencing RNA from macroscopic biopolymer hydrogels. Journal of the American chemical Society, 131 (26), 9204–9206.
Krebs, M., Erb, R., Yellen, B., Samanta, B., Bajaj, A., Rotello, V., & Alsberg, E. (2009). Formation of ordered cellular structures in suspension via label-free negative magnetophoresis. Nano letters, 9 (5), 1812–1817.
Krebs, M., Salter, E., Chen, E., Sutter, K., & Alsberg, E. (2009). Calcium phosphate-DNA nanoparticle gene delivery from alginate hydrogels inducesin vivoosteogenesis. Journal of Biomedical Materials Research Part A, 9999A , NA-NA.
Krebs, M., Sutter, K., Lin, A., Guldberg, R., & Alsberg, E. (2009). Injectable poly (lactic-co-glycolic) acid scaffolds with in situ pore formation for tissue engineering. Acta biomaterialia, 5 (8), 2847–2859.