Mia L. Huang, Ph.D.
Affiliations: | 2012 | Chemistry | New York University, New York, NY, United States |
Area:
General Chemistry, BiochemistryGoogle:
"Mia Huang"Mean distance: (not calculated yet)
Parents
Sign in to add mentorKent Kirshenbaum | grad student | 2012 | NYU | |
(Mimicking biopolymer function with sequence-specific peptoid oligomers.) | ||||
Kamil Godula | post-doc | 2013-2018 | UCSD |
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Publications
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Chatterjee S, Stephenson TN, Michalak AL, et al. (2019) Silencing glycosaminoglycan functions in mouse embryonic stem cells with small molecule antagonists. Methods in Enzymology. 626: 249-270 |
Naticchia MR, Laubach LK, Tota EM, et al. (2018) Embryonic stem cell engineering with glycomimetic FGF2/BMP4 co-receptor drives mesodermal differentiation in 3D culture. Acs Chemical Biology |
Huang ML, Tota EM, Lucas TM, et al. (2018) Influencing early stages of neuromuscular junction formation through glycocalyx engineering. Acs Chemical Neuroscience |
Huang ML, Tota EM, Verespy S, et al. (2018) Glycocalyx Scaffolding to Control Cell Surface Glycan Displays. Current Protocols in Chemical Biology. 10: e40 |
Andreev K, Martynowycz MW, Huang ML, et al. (2018) Hydrophobic interactions modulate antimicrobial peptoid selectivity towards anionic lipid membranes. Biochimica Et Biophysica Acta |
Andreev K, Martynowycz MW, Huang ML, et al. (2018) Hydrophobic Interactions Modulate Peptide Cell Specificity Biophysical Journal. 114: 455a |
Raitman I, Huang ML, Williams SA, et al. (2017) Heparin-fibronectin interactions in the development of extracellular matrix insolubility. Matrix Biology : Journal of the International Society For Matrix Biology |
Huang ML, Michalak AL, Fisher CJ, et al. (2017) Small Molecule Antagonist Of Cell Surface Glycosaminoglycans Restricts Mouse Embryonic Stem Cells In A Pluripotent State. Stem Cells (Dayton, Ohio) |
Huang ML, Purcell SC, Verespy Iii S, et al. (2017) Glycocalyx scaffolding with synthetic nanoscale glycomaterials. Biomaterials Science |
Lin AE, Autran CA, Szyszka A, et al. (2017) Human milk oligosaccharides inhibit growth of group B Streptococcus. The Journal of Biological Chemistry |