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Journal of Pharmaceutical Sciences|August 14, 2019
Proteolysis and Oxidation of Therapeutic Proteins After Intradermal or Subcutaneous AdministrationNinad Varkhede, Rupesh Bommana, Christian Schöneich, et al.Annals of Biomedical Engineering|October 27, 2012
Physical non-viral gene delivery methods for tissue engineeringAdam J Mellott, M Laird Forrest, Michael S DetamoreThe Journal of Pharmacology and Experimental Therapeutics|January 9, 2010
The role of lysosomes in limiting drug toxicity in miceRosemary A Ndolo, M Laird Forrest, Jeffrey P KriseBiomaterials|January 28, 2012
Multi-arm polymeric nanocarrier as a nitric oxide delivery platform for chemotherapy of head and neck squamous cell carcinomaShaofeng Duan, Shuang Cai, Qiuhong Yang, et al.Expert Opinion on Biological Therapy|December 19, 2003
Microspheres for controlled release drug deliveryNeelesh K Varde, Daniel W PackJournal of Pharmaceutical Sciences|August 23, 2007
Biochemical investigation of active intracellular transport of polymeric gene-delivery vectorsDavid M Drake, Daniel W PackJournal of Controlled Release : Official Journal of the Controlled Release Society|October 12, 2007
Influence of particle size and antacid on release and stability of plasmid DNA from uniform PLGA microspheresNeelesh K Varde, Daniel W PackJournal of Controlled Release : Official Journal of the Controlled Release Society|February 17, 2009
Efficient polyethylenimine-mediated gene delivery proceeds via a caveolar pathway in HeLa cellsNathan P Gabrielson, Daniel W PackBiomaterials|January 28, 2006
Use of thermodynamic parameters for design of double-walled microsphere fabrication methodsEmily J Pollauf, Daniel W PackBiomacromolecules|August 15, 2006
Acetylation of polyethylenimine enhances gene delivery via weakened polymer/DNA interactionsNathan P Gabrielson, Daniel W PackPageof 16