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Massimo Tabaton

University of Genoa, Genova, Liguria, Italy 
Alzheimer disease
"Massimo Tabaton"

Mean distance: 16.34 (cluster 28)
Cross-listing: Neuropathology Tree - Alzheimer's Tree

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Testa G, Staurenghi E, Giannelli S, et al. (2018) A silver lining for 24-hydroxycholesterol in Alzheimer's disease: The involvement of the neuroprotective enzyme sirtuin 1. Redox Biology. 17: 423-431
Perry G, Avila J, Moreira PI, et al. (2018) Preface. Journal of Alzheimer's Disease : Jad
Tamagno E, Guglielmotto M, Monteleone D, et al. (2017) The Unexpected Role of Aβ1-42 Monomers in the Pathogenesis of Alzheimer's Disease. Journal of Alzheimer's Disease : Jad
Guglielmotto M, Monteleone D, Vasciaveo V, et al. (2017) The Decrease of Uch-L1 Activity Is a Common Mechanism Responsible for Aβ 42 Accumulation in Alzheimer's and Vascular Disease. Frontiers in Aging Neuroscience. 9: 320
Manassero G, Guglielmotto M, Monteleone D, et al. (2017) Dual Mechanism of Toxicity for Extracellular Injection of Tau Oligomers versus Monomers in Human Tau Mice. Journal of Alzheimer's Disease : Jad
Manassero G, Guglielmotto M, Zamfir R, et al. (2016) Beta-amyloid 1-42 monomers, but not oligomers, produce PHF-like conformation of Tau protein. Aging Cell
Leandri M, Campbell J, Molfetta L, et al. (2015) Relationship between balance and cognitive performance in older people. Journal of Alzheimer's Disease : Jad. 45: 705-7
Monacelli F, Borghi R, Cammarata S, et al. (2015) Amnestic mild cognitive impairment and conversion to Alzheimer's disease: insulin resistance and glycoxidation as early biomarker clusters. Journal of Alzheimer's Disease : Jad. 45: 89-95
Guglielmotto M, Monteleone D, Piras A, et al. (2014) Aβ1-42 monomers or oligomers have different effects on autophagy and apoptosis. Autophagy. 10: 1827-43
Piras S, Furfaro AL, Piccini A, et al. (2014) Monomeric Aβ1-42 and RAGE: key players in neuronal differentiation. Neurobiology of Aging. 35: 1301-8
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