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Macromolecular Bioscience|June 14, 2018
Impact of Cationic Charge Density and PEGylated Poly(amino acid) Tercopolymer Architecture on Their Use as Gene Delivery Vehicles. Part 1: Synthesis, Self-Assembly, and DNA ComplexationDavid Ulkoski, Carmen ScholzPolymers|April 11, 2019
Synthesis and Application of Aurophilic Poly(Cysteine) and Poly(Cysteine)-Containing CopolymersDavid Ulkoski, Carmen ScholzMacromolecular Bioscience|July 4, 2018
Impact of Cationic Charge Density and PEGylated Poly(Amino Acid) Tercopolymer Architecture on Their Use as Gene Delivery Vehicles. Part 2: DNA Protection, Stability, Cytotoxicity, and Transfection EfficiencyDavid Ulkoski, Carmen ScholzExpert Opinion on Drug Delivery|September 10, 2019
Recent advances in polymeric materials for the delivery of RNA therapeuticsDavid Ulkoski, Annette Bak, John T Wilson, et al.ACS Applied Bio Materials|January 11, 2022
High-Throughput Automation of Endosomolytic Polymers for mRNA DeliveryDavid Ulkoski, Michael J Munson, Max E Jacobson, et al.Nanoscale|January 13, 2022
Development of a high-throughput platform for screening lipid nanoparticles for mRNA deliveryLili Cui, Sara Pereira, Silvia Sonzini, et al.Proceedings of the National Academy of Sciences of the United States of America|January 4, 2024
Lipid shape and packing are key for optimal design of pH-sensitive mRNA lipid nanoparticlesGiulio Tesei, Ya-Wen Hsiao, Aleksandra Dabkowska, et al.ACS Applied Materials & Interfaces|November 14, 2025
Effects of Serum Incubation on Lipid Nanoparticle PEG Shedding, mRNA Retention, and Membrane InteractionsSimon Niederkofler, Petteri Parkkila, Nima Aliakbarinodehi, et al.Journal of Controlled Release : Official Journal of the Controlled Release Society|November 22, 2011
Versatile cationic lipids for siRNA deliveryJeff Sparks, Gregory Slobodkin, Majed Matar, et al.ACS Nano|April 23, 2024
Nanoparticle Retinoic Acid-Inducible Gene I Agonist for Cancer ImmunotherapyLihong Wang-Bishop, Mohamed Wehbe, Lucinda E Pastora, et al.Pageof 1