Showing results (71-80 of 121) with videos related to
Sort By:
Pageof 13
Neurobiology of Disease|January 20, 2023
Deletion of equilibrative nucleoside transporter 2 disturbs energy metabolism and exacerbates disease progression in an experimental model of Huntington's diseaseChing-Ya Chen, Fang-Yi Chou, Ya-Gin Chang, et al.Molecular Pharmacology|April 18, 2006
Rescue of p53 blockage by the A(2A) adenosine receptor via a novel interacting protein, translin-associated protein XChung-Nan Sun, Hsiao-Chun Cheng, Jui-Ling Chou, et al.Human Molecular Genetics|May 16, 2009
The A2A adenosine receptor rescues the urea cycle deficiency of Huntington's disease by enhancing the activity of the ubiquitin-proteasome systemMing-Chang Chiang, Hui-Mei Chen, Hsing-Lin Lai, et al.Neurobiology of Disease|May 26, 2026
ROS-HIF1α-driven glycolytic reprogramming sustains ATP production in Huntington's diseaseChing-Wen Wu, Ching-Pang Chang, Dennis W Hwang, et al.Human Molecular Genetics|November 16, 2014
Disruption of the nuclear membrane by perinuclear inclusions of mutant huntingtin causes cell-cycle re-entry and striatal cell death in mouse and cell models of Huntington's diseaseKuan-Yu Liu, Yu-Chiau Shyu, Brett A Barbaro, et al.Plos One|August 19, 2011
Human mesenchymal stem cells prolong survival and ameliorate motor deficit through trophic support in Huntington's disease mouse modelsYuan-Ta Lin, Yijuang Chern, Che-Kun James Shen, et al.Neurobiology of Disease|November 3, 2024
The role of adiponectin-AMPK axis in TDP-43 mislocalization and disease severity in ALSYu-Ju Liu, Chia-Wei Lee, Yi-Chu Liao, et al.Cell & Bioscience|January 4, 2026
Anti-seizure potential of J4, an equilibrative nucleoside transporter 1 inhibitor, in a mouse model of tuberous sclerosis complex in response to pentylenetetrazolChristine Chin-Jung Hsieh, Nai-Kuei Huang, Szu-Yu Tung, et al.FEBS Letters|May 15, 2010
Impaired water reabsorption in mice deficient in the type VI adenylyl cyclase (AC6)Chen-Li Chien, Yu-Shuo Wu, Hsing-Lin Lai, et al.Experimental Neurology|June 4, 2013
Lack of type VI adenylyl cyclase (AC6) leads to abnormal sympathetic tone in neonatal miceChen-Li Chien, Meng-Syuan Lin, Hsing-Lin Lai, et al.Pageof 13