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Aging Cell|December 21, 2022
Antiretroviral protease inhibitors induce features of cellular senescence that are reversible upon drug removalChisaka Kuehnemann, Jun-Wei B Hughes, Pierre-Yves Desprez, et al.Aging Cell|June 6, 2022
Central role for p62/SQSTM1 in the elimination of toxic tau species in a mouse model of tauopathyMaiko Ono, Masaaki Komatsu, Bin Ji, et al.Aging Cell|June 22, 2022
Nicotinamide riboside and caffeine partially restore diminished NAD availability but not altered energy metabolism in Alzheimer's diseaseWoo-In Ryu, Minqi Shen, Yoon Lee, et al.Aging Cell|June 27, 2022
Genetic trade-offs between complex diseases and longevityDingxue Hu, Yan Li, Detao Zhang, et al.Aging Cell|July 19, 2022
seRNA PAM controls skeletal muscle satellite cell proliferation and aging through trans regulation of Timp2 expression synergistically with Ddx5Karl Kam Hei So, Yile Huang, Suyang Zhang, et al.Aging Cell|July 19, 2022
Effects of cerebral amyloid angiopathy on the brain vasculomeWenjun Deng, Shuzhen Guo, Susanne J van Veluw, et al.Aging Cell|May 26, 2010
Tissue-specific dysregulation of DNA methylation in agingReid F Thompson, Gil Atzmon, Ciprian Gheorghe, et al.Aging Cell|September 30, 2010
Decrease in the osteocyte lacunar density accompanied by hypermineralized lacunar occlusion reveals failure and delay of remodeling in aged human boneBjörn Busse, Danijela Djonic, Petar Milovanovic, et al.Aging Cell|July 15, 2010
Cyclophilin D links programmed cell death and organismal aging in Podospora anserinaDiana Brust, Bertram Daum, Christine Breunig, et al.Aging Cell|July 15, 2010
The migration of mitochondrial DNA fragments to the nucleus affects the chronological aging process of Saccharomyces cerevisiaeXin Cheng, Andreas S IvessaPageof 363