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Methods in Molecular Biology (Clifton, N.J.)|May 17, 2017
A Novel 2-DE-Based Proteomic Analysis to Identify Multiple Substrates for Specific Protease in Neuronal CellsChiho Kim, Young J OhExperimental Neurobiology|September 29, 2015
Glucose Levels in Culture Medium Determine Cell Death Mode in MPP(+)-treated Dopaminergic Neuronal CellsSo-Young Yoon, Young J OhExperimental Neurobiology|October 30, 2013
Promise of neurorestoration and mitochondrial biogenesis in Parkinson's disease with multi target drugs: an alternative to stem cell therapyMoussa Bh Youdim, Young J OhExperimental Neurobiology|June 26, 2014
Calbindin-D28K Prevents Staurosporin-induced Bax Cleavage and Membrane PermeabilizationWon-Seok Choi, Young J OhExperimental Neurobiology|April 17, 2014
Tumor Necrosis Factor-Associated Protein 1 (TRAP1) is Released from the Mitochondria Following 6-hydroxydopamine TreatmentDong-Ik Shin, Young J OhParkinsonism & Related Disorders|August 3, 2017
Breaking down autophagy and the Ubiquitin Proteasome SystemShinae Jung, Yuhyun Chung, Young J OhBiochemical and Biophysical Research Communications|October 5, 2019
Anamorsin attenuates cupric chloride-induced dopaminergic neuronal cell deathKyung-Ah Park, Nuri Yun, Young J OhGlia|March 25, 2005
Thrombin-activated microglia contribute to death of dopaminergic neurons in rat mesencephalic cultures: dual roles of mitogen-activated protein kinase signaling pathwaysDa Yong Lee, Young J Oh, Byung Kwan JinBiochemical and Biophysical Research Communications|January 22, 2004
Bcl-2 enhances neurite extension via activation of c-Jun N-terminal kinaseDae-Seok Eom, Won-Seok Choi, Young J OhBiochemical and Biophysical Research Communications|May 1, 2012
Proteomic analysis reveals a protective role for DJ-1 during 6-hydroxydopamine-induced cell deathSu-Jeong Kim, Yun-Jong Park, Young J OhPageof 7