Showing results (1-10 of 139) with videos related to
Sort By:
Pageof 14
Biomacromolecules|December 17, 2013
Solution-state polymer assemblies influence BCS class II drug dissolution and supersaturation maintenanceMolly C Dalsin, Swapnil Tale, Theresa M ReinekeMolecular Pharmaceutics|September 23, 2017
Diblock Terpolymers Are Tunable and pH Responsive Vehicles To Increase Hydrophobic Drug Solubility for Oral AdministrationSwapnil Tale, Anatolii A Purchel, Molly C Dalsin, et al.Molecular Pharmaceutics|June 6, 2015
Dissolution and Solubility Enhancement of the Highly Lipophilic Drug Phenytoin via Interaction with Poly(N-isopropylacrylamide-co-vinylpyrrolidone) ExcipientsLakmini Widanapathirana, Swapnil Tale, Theresa M ReinekeACS Macro Letters|June 7, 2022
Stimuli-Responsive Polymers for Biological Detection and DeliveryTheresa M ReinekeACS Central Science|November 2, 2016
High-Throughput Excipient Discovery Enables Oral Delivery of Poorly Soluble PharmaceuticalsJeffrey M Ting, Swapnil Tale, Anatolii A Purchel, et al.Biomacromolecules|January 12, 2010
Degradation of poly(glycoamidoamine) DNA delivery vehicles: polyamide hydrolysis at physiological conditions promotes DNA releaseYemin Liu, Theresa M ReinekeMolecular Pharmaceutics|June 22, 2012
Exploring the mechanism of plasmid DNA nuclear internalization with polymer-based vehiclesGiovanna Grandinetti, Theresa M ReinekeBioconjugate Chemistry|January 18, 2007
Poly(glycoamidoamine)s for gene delivery. structural effects on cellular internalization, buffering capacity, and gene expressionYemin Liu, Theresa M ReinekeBioconjugate Chemistry|January 19, 2006
Poly(glycoamidoamine)s for gene delivery: stability of polyplexes and efficacy with cardiomyoblast cellsYemin Liu, Theresa M ReinekeJournal of the American Chemical Society|March 3, 2005
Hydroxyl stereochemistry and amine number within poly(glycoamidoamine)s affect intracellular DNA deliveryYemin Liu, Theresa M ReinekePageof 14