Abdulgader A. Baoum, Ph.D.

Affiliations: 
2011 Pharmaceutical Chemistry University of Kansas, Lawrence, KS, United States 
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J. D. Land grad student 2011 University of Kansas
 (Nonviral Vectors for Gene Delivery.)
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Xie SX, Baoum A, Alhakamy NA, et al. (2018) Calcium enhances gene expression when using low molecular weight poly-L-lysine delivery vehicles. International Journal of Pharmaceutics
Yuan D, Shi J, Du X, et al. (2016) The enzyme-instructed assembly of the core of yeast prion Sup35 to form supramolecular hydrogels Journal of Materials Chemistry B. 4: 1318-1323
Yuan D, Du X, Shi J, et al. (2015) Synthesis and evaluation of the biostability and cell compatibility of novel conjugates of nucleobase, peptidic epitope, and saccharide Beilstein Journal of Organic Chemistry. 11: 1352-1359
Yuan D, Du X, Shi J, et al. (2014) Synthesis of novel conjugates of a saccharide, amino acids, nucleobase and the evaluation of their cell compatibility. Beilstein Journal of Organic Chemistry. 10: 2406-13
Baoum AA, Middaugh CR, Berkland C. (2014) DNA complexed with TAT peptide and condensed using calcium possesses unique structural features compared to PEI polyplexes. International Journal of Pharmaceutics. 465: 11-7
Kawabata A, Baoum A, Ohta N, et al. (2012) Intratracheal administration of a nanoparticle-based therapy with the angiotensin II type 2 receptor gene attenuates lung cancer growth. Cancer Research. 72: 2057-67
Baoum A, Ovcharenko D, Berkland C. (2012) Calcium condensed cell penetrating peptide complexes offer highly efficient, low toxicity gene silencing. International Journal of Pharmaceutics. 427: 134-42
Khondee S, Baoum A, Siahaan TJ, et al. (2011) Calcium condensed LABL-TAT complexes effectively target gene delivery to ICAM-1 expressing cells. Molecular Pharmaceutics. 8: 788-98
Baoum AA, Berkland C. (2011) Calcium condensation of DNA complexed with cell-penetrating peptides offers efficient, noncytotoxic gene delivery. Journal of Pharmaceutical Sciences. 100: 1637-42
Fakhari A, Baoum A, Siahaan TJ, et al. (2011) Controlling ligand surface density optimizes nanoparticle binding to ICAM-1. Journal of Pharmaceutical Sciences. 100: 1045-56
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