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Justin M. Saul, Ph.D.
Assistant Professor
Department of Biomedical Engineering
Wake Forest University Health Sciences
Medical Center Blvd.
Winston-Salem, NC 27157-1022
336-713-1326
jsaul@wfubmc.edu
EDUCATION:
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B.S., Chemical Engineering, Purdue University, 1999
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Ph.D., Biomedical Engineering, Case Western Reserve University, 2006
RESEARCH INTERESTS:
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Development of biomaterials for applications in targeted drug delivery, tissue engineering and non-viral gene therapy
RECENT PUBLICATIONS:
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Saul, JM; Wang, CK; Ng, CP; Pun, SH. Multilayer nanocomplexes of polymer and DNA exhibit enhanced gene delivery. Advanced Materials, 20(1), 277-287, 2008.
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Saul, JM; Linnes, MP; Ratner, BD; Giachelli, CM; Pun, SH. Two-stage delivery of non-viral gene carriers from sphere-templated fibrin scaffolds for sustained transgene expression. Biomaterials, 28(31), 4705-4716, 2007.
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Saul, JM; Annapragada, AV; Bellamkonda, RV. A dual ligand approach for enhancing selectivity of tumor-targeted drug delivery vehicles. Journal of Controlled Release, 114(3), 277-287, 2006.
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Ghaghada, KB; Saul, J; Natarajan, JV; Bellamkonda, RV; Annapragada, AV. Folate targeting of drug carriers: A mathematical model. Journal of Controlled Release, 104(1):113-128, 2005.
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Mandawat, A.; Saul, JM; Bellamkonda, RV. Targeted drug delivery through the folate receptor proceeds via ligand-induced membrane fusion. In preparation.
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Saul, JM; Linnes, MP; LeGare, SM; Giachelli, CM; Pun, SH. Two-stage delivery of non-viral gene carriers from sphere-templated fibrin scaffolds for sustained transgene expression. In preparation.
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Saul, JM; Annapragada, AV; Bellamkonda, RV. A dual ligand approach for enhancing selectivity of tumor-targeted drug delivery vehicles. Journal of Controlled Release, 114(3), 277-287.
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Ghaghada, KB; Saul, J; Natarajan, JV; Bellamkonda, RV; Annapragada, AV. Folate targeting of drug carriers: A mathematical model. Journal of Controlled Release, 104(1):113-128.
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