Gregory A. Hudalla
Affiliations: | 2010 | Biomedical Engineering | University of Wisconsin, Madison, Madison, WI |
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Parents
Sign in to add mentorWilliam Leo Murphy | grad student | 2010 | UW Madison | |
(Chemically well-defined cell culture substrates to characterize the influence of extracellular factors on mesenchymal stem cell function.) |
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Publications
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Shao Q, Wong KM, Seroski DT, et al. (2020) Anatomy of a selectively coassembled β-sheet peptide nanofiber. Proceedings of the National Academy of Sciences of the United States of America |
Wong KM, Wang Y, Seroski DT, et al. (2020) Molecular complementarity and structural heterogeneity within co-assembled peptide β-sheet nanofibers. Nanoscale |
Liu R, Boehlein SK, Tracy WF, et al. (2020) Characterizing the Physical Properties and Cell Compatibility of Phytoglycogen Extracted from Different Sweet Corn Varieties. Molecules (Basel, Switzerland). 25 |
Liu R, Hudalla GA. (2019) Using Self-Assembling Peptides to Integrate Biomolecules into Functional Supramolecular Biomaterials. Molecules (Basel, Switzerland). 24 |
Fettis MM, Farhadi SA, Hudalla GA. (2019) A chimeric, multivalent assembly of galectin-1 and galectin-3 with enhanced extracellular activity. Biomaterials Science |
Farhadi SA, Bracho-Sanchez E, Fettis MM, et al. (2018) Locally anchoring enzymes to tissues via extracellular glycan recognition. Nature Communications. 9: 4943 |
Restuccia A, Hudalla GA. (2018) Tuning carbohydrate density enhances protein binding and inhibition by glycosylated β-sheet peptide nanofibers. Biomaterials Science |
Fettis M, Hudalla GA. (2018) Engineering ROS-resistant Galectin-1 Dimers with Enhanced Lectin Activity. Bioconjugate Chemistry |
Restuccia A, Fettis MM, Farhadi SA, et al. (2018) Evaluation of Self-Assembled Glycopeptide Nanofibers Modified with N,N′-Diacetyllactosamine for Selective Galectin-3 Recognition and Inhibition Acs Biomaterials Science & Engineering. 4: 3451-3459 |
Fettis MM, Wei Y, Restuccia A, et al. (2016) Microgels with tunable affinity-controlled protein release via desolvation of self-assembled peptide nanofibers. Journal of Materials Chemistry. B. 4: 3054-3064 |