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Molecular Pharmaceutics|May 1, 2014
Chitosan-based thermoreversible hydrogel as an in vitro tumor microenvironment for testing breast cancer therapiesChing-Ting Tsao, Forrest M Kievit, Kui Wang, et al.Advanced Healthcare Materials|November 28, 2012
3D porous chitosan-alginate scaffolds: a new matrix for studying prostate cancer cell-lymphocyte interactions in vitroStephen J Florczyk, Gang Liu, Forrest M Kievit, et al.Advanced Healthcare Materials|November 3, 2016
Culture on 3D Chitosan-Hyaluronic Acid Scaffolds Enhances Stem Cell Marker Expression and Drug Resistance in Human Glioblastoma Cancer Stem CellsKui Wang, Forrest M Kievit, Ariane E Erickson, et al.Journal of Materials Chemistry. B|January 31, 2017
3D Porous Chitosan-Alginate Scaffolds Promote Proliferation and Enrichment of Cancer Stem-Like CellsStephen J Florczyk, Forrest M Kievit, Kui Wang, et al.Experimental Brain Research|May 24, 2024
Traumatic brain injury heterogeneity affects cell death and autophagyBrandon Z McDonald, Aria W Tarudji, Haipeng Zhang, et al.Anti-Cancer Agents in Medicinal Chemistry|November 19, 2013
CCL21 and IFNγ recruit and activate tumor specific T cells in 3D scaffold model of breast cancerVy Phan-Lai, Forrest M Kievit, Stephen J Florczyk, et al.Molecular Pharmaceutics|August 21, 2010
pH-Sensitive siRNA nanovector for targeted gene silencing and cytotoxic effect in cancer cellsHyejung Mok, Omid Veiseh, Chen Fang, et al.ACS Nano|August 8, 2017
Core-Cross-Linked Nanoparticles Reduce Neuroinflammation and Improve Outcome in a Mouse Model of Traumatic Brain InjuryDasom Yoo, Alexander W Magsam, Abby M Kelly, et al.Pharmaceutical Research|June 30, 2010
Chitosan-alginate scaffold culture system for hepatocellular carcinoma increases malignancy and drug resistanceMatthew Leung, Forrest M Kievit, Stephen J Florczyk, et al.Molecular Pharmaceutics|October 9, 2013
In vivo safety evaluation of polyarginine coated magnetic nanovectorsOmid Veiseh, Forrest M Kievit, Vicki Liu, et al.Pageof 7