Seungjo Park

Affiliations: 
Chemical and Biological Engineering The University of Alabama, Tuscaloosa, AL 
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"Seungjo Park"
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Oladipupo OE, Prescott MC, Blevins ER, et al. (2023) Ruthenium Complexes with Protic Ligands: Influence of the Position of OH Groups and π Expansion on Luminescence and Photocytotoxicity. International Journal of Molecular Sciences. 24
Park S, Avera AD, Kim Y. (2022) BIOMANUFACTURING OF GLIOBLASTOMA ORGANOIDS EXHIBITING HIERARCHICAL AND SPATIALLY ORGANIZED TUMOR MICROENVIRONMENT VIA TRANSDIFFERENTIATION. Biotechnology and Bioengineering
Qu F, Lamb RW, Cameron CG, et al. (2021) Singlet Oxygen Formation vs Photodissociation for Light-Responsive Protic Ruthenium Anticancer Compounds: The Oxygenated Substituent Determines Which Pathway Dominates. Inorganic Chemistry
Park S, Gray JL, Altman SD, et al. (2019) Cellular uptake of protic ruthenium complexes is influenced by pH dependent passive diffusion and energy dependent efflux. Journal of Inorganic Biochemistry. 203: 110922
Hartheimer JS, Park S, Rao SS, et al. (2019) Targeting Hyaluronan Interactions for Glioblastoma Stem Cell Therapy. Cancer Microenvironment : Official Journal of the International Cancer Microenvironment Society
Qu F, Martinez K, Arcidiacono AM, et al. (2018) Sterically demanding methoxy and methyl groups in ruthenium complexes lead to enhanced quantum yields for blue light triggered photodissociation. Dalton Transactions (Cambridge, England : 2003)
Shin J, Yin Y, Park H, et al. (2018) p38 siRNA-encapsulated PLGA nanoparticles alleviate neuropathic pain behavior in rats by inhibiting microglia activation. Nanomedicine (London, England). 13: 1607-1621
Triantafillu UL, Park S, Kim Y. (2018) Fluid Shear Stress Induces Drug Resistance to Doxorubicin and Paclitaxel in the Breast Cancer Cell Line MCF7 Advanced Therapeutics. 2: 1800112
Qu F, Park S, Martinez K, et al. (2017) Ruthenium Complexes are pH-Activated Metallo Prodrugs (pHAMPs) with Light-Triggered Selective Toxicity Toward Cancer Cells. Inorganic Chemistry
Triantafillu UL, Park S, Klaassen NL, et al. (2017) Fluid shear stress induces cancer stem cell-like phenotype in MCF7 breast cancer cell line without inducing epithelial to mesenchymal transition. International Journal of Oncology
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