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Biomaterials Science|July 28, 2015
Reducible, dibromomaleimide-linked polymers for gene deliveryJames-Kevin Y Tan, Jennifer L Choi, Hua Wei, et al.Journal of Biological Engineering|October 26, 2013
Engineering biodegradable and multifunctional peptide-based polymers for gene deliveryJulie Shi, Joan G Schellinger, Suzie H PunJournal of Controlled Release : Official Journal of the Controlled Release Society|January 17, 2016
Synthesis and evaluation of multivalent M2pep peptides for targeting alternatively activated M2 macrophagesChayanon Ngambenjawong, Maryelise Cieslewicz, Joan G Schellinger, et al.ACS Macro Letters|September 18, 2013
Block copolymers containing a hydrophobic domain of membrane-lytic peptides form micellar structures and are effective gene delivery agentsJoan G Schellinger, Joshuel A Pahang, Julie Shi, et al.Journal of the American Chemical Society|September 28, 2012
Neuron-targeted copolymers with sheddable shielding blocks synthesized using a reducible, RAFT-ATRP double-head agentHua Wei, Joan G Schellinger, David S H Chu, et al.International Journal of Pharmaceutics|September 7, 2011
Reducible HPMA-co-oligolysine copolymers for nucleic acid deliveryJulie Shi, Russell N Johnson, Joan G Schellinger, et al.Organic & Biomolecular Chemistry|December 2, 2011
A general chemical synthesis platform for crosslinking multivalent single chain variable fragmentsJoan G Schellinger, Avinash Kudupudi, Arutselvan Natarajan, et al.Biomaterials Science|June 11, 2013
Comparative study of guanidine-based and lysine-based brush copolymers for plasmid deliveryPeter M Carlson, Joan G Schellinger, Joshuel A Pahang, et al.Topics in Current Chemistry|August 3, 2011
Self-assembled polypeptide and polypeptide hybrid vesicles: from synthesis to applicationUh-Joo Choe, Victor Z Sun, James-Kevin Y Tan, et al.Biomaterials|September 18, 2013
Optimization of Tet1 ligand density in HPMA-co-oligolysine copolymers for targeted neuronal gene deliveryDavid S H Chu, Joan G Schellinger, Michael J Bocek, et al.Pageof 3