Multi-Omic analyses characterize the ceramide/sphingomyelin pathway as a therapeutic target in Alzheimer’s disease
Baloni, Priyanka⋅Arnold, Matthias⋅Buitrago, Luna⋅Nho, Kwangsik⋅Moreno, Herman⋅Huynh, Kevin⋅Brauner, Barbara⋅Louie, Gregory⋅Kueider-Paisley, Alexandra⋅Suhre, Karsten⋅Saykin, Andrew J.⋅Ekroos, Kim⋅Meikle, Peter J.⋅Hood, Leroy⋅Price, Nathan D.⋅Price, Nathan D.⋅Price, Nathan D.⋅Price, Nathan D.⋅Price, Nathan D.⋅Arnold, Matthias⋅Blach, Colette⋅Blach, Colette⋅Kaddurah-Daouk, Rima⋅Doraiswamy, Murali⋅Mahmoudiandehkordi, Siamak⋅Mahmoudiandehkordi, Siamak⋅Welsh-Bohmer, Kathleen⋅Plassman, Brenda⋅Krumsiek, Jan⋅Batra, Richa⋅Saykin, Andrew⋅Yan, Jingwen⋅Yan, Jingwen⋅Risacher, Shannon L.⋅Risacher, Shannon L.⋅Meikle, Peter⋅Wang, Tingting⋅Ikram, Arfan⋅Ahmad, Shahzad⋅Hankemeier, Thomas⋅Hernandez, Ivan A.⋅Heinken, Almut⋅Martinelli, Filippo⋅Thiele, Ines⋅Hertel, Johannes⋅Hensen, Tim⋅Hulshof, Tim⋅Hulshof, Tim⋅Farrer, Lindsay A.⋅Au, Rhoda⋅Qiu, Wendy Wei Qiao⋅Stein, Thor⋅Karu, Naama⋅Borkowski, Kamil⋅Newman, John⋅Jia, Wei⋅Xie, Guoxiang⋅Wang, Jingye⋅Wei, Runmin⋅Rader, Dan⋅Kling, Mitchel⋅Shaw, Leslie⋅Doraiswamy, P. Murali⋅Funk, Cory C.⋅Hernández, A. Iván⋅Kastenmüller, Gabi⋅Baillie, Rebecca⋅Han, Xianlin and Kaddurah-Daouk, Rima
Communications Biology, vol. 5, (no. 1), 2022. | Journal Article