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Publications

Found 9 results
Author Title [ Type(Desc)] Year
Filters: Keyword is Amyloid beta-Peptides  [Clear All Filters]
Journal Article
Koizumi K, Wang G, Park L.  2016.  Endothelial Dysfunction and Amyloid-β-Induced Neurovascular Alterations.. Cell Mol Neurobiol. 36(2):155-65.
Zhao L, Gottesdiener AJ, Parmar M, Li M, Kaminsky SM, Chiuchiolo MJ, Sondhi D, Sullivan PM, Holtzman DM, Crystal RG et al..  2016.  Intracerebral adeno-associated virus gene delivery of apolipoprotein E2 markedly reduces brain amyloid pathology in Alzheimer's disease mouse models.. Neurobiol Aging. 44:159-172.
Park L, Wang G, Moore J, Girouard H, Zhou P, Anrather J, Iadecola C.  2014.  The key role of transient receptor potential melastatin-2 channels in amyloid-β-induced neurovascular dysfunction.. Nat Commun. 5:5318.
Ishii M, Iadecola C.  2015.  Metabolic and Non-Cognitive Manifestations of Alzheimer's Disease: The Hypothalamus as Both Culprit and Target of Pathology.. Cell Metab. 22(5):761-76.
Xia D, Lianoglou S, Sandmann T, Calvert M, Suh JH, Thomsen E, Dugas J, Pizzo ME, DeVos SL, Earr TK et al..  2022.  Novel App knock-in mouse model shows key features of amyloid pathology and reveals profound metabolic dysregulation of microglia.. Mol Neurodegener. 17(1):41.
Kawamata H, Manfredi G.  2017.  Proteinopathies and OXPHOS dysfunction in neurodegenerative diseases.. J Cell Biol. 216(12):3917-3929.
Hu X, Li X, Zhao M, Gottesdiener A, Luo W, Paul S.  2014.  Tau pathogenesis is promoted by Aβ1-42 but not Aβ1-40.. Mol Neurodegener. 9:52.
Ishii M, Wang G, Racchumi G, Dyke JP, Iadecola C.  2014.  Transgenic mice overexpressing amyloid precursor protein exhibit early metabolic deficits and a pathologically low leptin state associated with hypothalamic dysfunction in arcuate neuropeptide Y neurons.. J Neurosci. 34(27):9096-106.
Yuan P, Condello C, C Keene D, Wang Y, Bird TD, Paul SM, Luo W, Colonna M, Baddeley D, Grutzendler J.  2016.  TREM2 Haplodeficiency in Mice and Humans Impairs the Microglia Barrier Function Leading to Decreased Amyloid Compaction and Severe Axonal Dystrophy.. Neuron. 90(4):724-39.