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Journal of the American Chemical Society|February 19, 2026
PROTAC-Mediated Degradation of mHTT Aggregates Attenuates Neurotoxicity in Cellular and R6/2 Mouse Models of Huntington's DiseasePo-Chao Lu, Yung-An Huang, Niaz Wali, et al.
Human Molecular Genetics|August 13, 2015
Elucidating the role of the A2A adenosine receptor in neurodegeneration using neurons derived from Huntington's disease iPSCsFeng-Lan Chiu, Jun-Tasi Lin, Ching-Yu Chuang, et al.
Journal of Biomedical Science|September 6, 2017
The type VI adenylyl cyclase protects cardiomyocytes from β-adrenergic stress by a PKA/STAT3-dependent pathwayYu-Shuo Wu, Chien-Chang Chen, Chen-Li Chien, et al.
Experimental Neurology|September 17, 2013
Neurovascular abnormalities in humans and mice with Huntington's diseaseChien-Yuan Lin, Yi-Hua Hsu, Ming-Huang Lin, et al.
Scientific Reports|March 3, 2016
Type VI adenylyl cyclase negatively regulates GluN2B-mediated LTD and spatial reversal learningChing-Pang Chang, Cheng-Ta Lee, Wen-Hsien Hou, et al.
Annals of Neurology|April 28, 2015
Aberrant astrocytes impair vascular reactivity in Huntington diseaseHan-Yun Hsiao, Yu-Chen Chen, Chien-Hsiang Huang, et al.
Neurobiology of Disease|August 29, 2016
Equilibrative nucleoside transporter ENT1 as a biomarker of Huntington diseaseXavier Guitart, Jordi Bonaventura, William Rea, et al.
Movement Disorders : Official Journal of the Movement Disorder Society|March 7, 2019
Enhanced Na+ -K+ -2Cl- cotransporter 1 underlies motor dysfunction in huntington's diseaseYi-Ting Hsu, Ya-Gin Chang, Yu-Chao Liu, et al.
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