Polymeric Drug Delivery Techniques
Translating Polymer Science for Drug Delivery
Rapid advances in medicine and biotechnology have driven the field of drug discovery and led to the development of many new highly potent and target-specific drug candidates.
This guide is intended to provide an overview of polymeric drug delivery systems as well as provide the corresponding example formulation protocols and product information required to utilize these techniques in the laboratory.
Featured Articles
Polymer Micelles for Drug Delivery
Authors: Alice Du, Martina Stenzel
Crosslinked Chitosan Nanoparticles and Chemical Modifications for Drug Delivery Applications
Authors: Shady Farah, Joshua Doloff, Daniel Anderson, Robert Langer
Formulation of Poly(ethylene glycol) Hydrogels for Drug Delivery
Authors: Tyler Lieberthal, W. John Kao
Polyoxazolines: An Alternative to Polyethylene Glycol
Authors: Nicolynn Davis
Biodegradable Colloidal Carriers in Drug Delivery Applications
Authors: Bin Wu, Theresa Logan
Poly(N-isopropylacrylamide)-based Stimuli-responsive Materials
Authors: Ganga Panambur, Nicolynn Davis
Protein PEGylation
Authors: Steve Brocchini
Dendritic Polyester Scaffolds: Functional and Biocompatible Precision Polymers for Drug Delivery Applications
Authors: Sandra García-Gallego, Michael Malkoch
Lipid-polymer Hybrid Nanoparticles for Drug Delivery Applications
Authors: Sangeetha Krishnamurthy, Juliana M. Chan
Shape Change Poly(N-isopropylacrylamide) Microstructures for Drug Delivery
Authors: Tanvi Shroff, ChangKyu Yoon,David H. Gracias
Poly(2-oxazoline)s for Drug Delivery
Authors: Rainer Jordan, Robert Luxenhofer, Alexander V. Kabanov
Linear and Branched PEIs as Nonviral Vectors for Gene Delivery
Authors: Philip Dimitrov, Nicolynn Davis
"Rapid advances in medicine and biotechnology have driven the field of drug discovery and led to the development of many new highly potent and target-specific drug candidates.
Despite the fast pace of research & early-stage discovery, many drug candidates fail during preclinical evaluation due to poor efficacy, limited bioavailability, and other challenges associated with effective drug delivery."
Nicolynn Davis, Ph.D.
Materials Science Head of Product Innovation
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