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Translational Stroke Research|October 18, 2017
Inactivation of NSF ATPase Leads to Cathepsin B Release After Transient Cerebral IschemiaDong Yuan, Chunli Liu, Jiang Wu, et al.Drug Design, Development and Therapy|May 30, 2017
Design, synthesis, and biological evaluation of novel EF24 and EF31 analogs as potential IκB kinase β inhibitors for the treatment of pancreatic cancerXuemeng Xie, Jinfu Tu, Heyi You, et al.Journal of Neurochemistry|July 17, 2010
Autophagy and protein aggregation after brain ischemiaChunli Liu, Yanqin Gao, John Barrett, et al.Journal of Neurochemistry|September 28, 2004
Alterations of CaMKII after hypoxia-ischemia during brain developmentKaixiong Tang, Chunli Liu, John Kuluz, et al.Translational Stroke Research|May 26, 2018
Correction to: Inactivation of NSF ATPase Leads to Cathepsin B Release After Transient Cerebral IschemiaDong Yuan, Chunli Liu, Jiang Wu, et al.Bioscience Reports|June 6, 2019
LncRNA SAMMSON negatively regulates miR-9-3p in hepatocellular carcinoma cells and has prognostic valuesShouzhang Yang, Huajie Cai, Bingren Hu, et al.Journal of Neuroscience Research|September 12, 2007
Mechanisms of impaired mitochondrial energy metabolism in acute and chronic neurodegenerative disordersLucian Soane, Sibel Kahraman, Tibor Kristian, et al.Journal of Neuroscience Research|April 14, 2011
Mitochondrial dysfunction and nicotinamide dinucleotide catabolism as mechanisms of cell death and promising targets for neuroprotectionTibor Kristian, Irina Balan, Rosemary Schuh, et al.Experimental Neurology|December 15, 2019
NAD+ precursor modulates post-ischemic mitochondrial fragmentation and reactive oxygen species generation via SIRT3 dependent mechanismsNina Klimova, Adam Fearnow, Aaron Long, et al.Biochimica Et Biophysica Acta. Molecular Basis of Disease|September 28, 2018
Interplay between NAD+ and acetyl‑CoA metabolism in ischemia-induced mitochondrial pathophysiologyNina Klimova, Aaron Long, Susana Scafidi, et al.Pageof 10