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Bioconjugate Chemistry|October 28, 2024
pH-Responsive Micelles Containing Quinine Functionalities Enhance Intracellular Gene Delivery and ExpressionNicholas W Kreofsky, Punarbasu Roy, Theresa M ReinekeBiomacromolecules|September 26, 2024
Quinine-Based Polymers Are Versatile and Effective Vehicles for Intracellular pDNA, mRNA, and Cas9 Protein DeliveryPunarbasu Roy, Nicholas W Kreofsky, Theresa M ReinekePolyhedron|September 1, 2020
Ru(II) coordination compounds of N-N bidentate chelators with 1,2,3 triazole and isoquinoline subunits: Synthesis, spectroscopy and antimicrobial propertiesNicholas W Kreofsky, Maxwell D Dillenburg, Eric M Villa, et al.Bioconjugate Chemistry|March 11, 2025
Binary Copolymer Blending Enhances pDNA Delivery Performance and Colloidal Shelf Stability of Quinine-Based PolyplexesPunarbasu Roy, Nicholas W Kreofsky, Cristiam F Santa Chalarca, et al.JACS Au|July 28, 2023
Enhancing pDNA Delivery with Hydroquinine Polymers by Modulating Structure and CompositionPunarbasu Roy, Nicholas W Kreofsky, Mary E Brown, et al.Bioconjugate Chemistry|July 12, 2023
Blended Block Polycation Micelles Enhance Antisense Oligonucleotide DeliveryMckenna G Hanson, Christian J Grimme, Nicholas W Kreofsky, et al.Biomacromolecules|August 28, 2025
Blending Carbohydrate and Quinine-Based Polymers Imparts Colloidal Stability, Improved Performance, and Cell Specificity for mRNA DeliveryNicholas W Kreofsky, Punarbasu Roy, Ruma Ghosh, et al.Biomacromolecules|December 27, 2023
Cinchona Alkaloid Polymers Demonstrate Highly Efficient Gene Delivery Dependent on Stereochemistry, Methoxy Substitution, and LengthNicholas W Kreofsky, Punarbasu Roy, Mary E Brown, et al.Pageof 1