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Odete A. Beirão da Cruz e Silva, PhD

Affiliations: 
Health Science University of Aveiro, Aveiro, Aveiro, Portugal 
Area:
Alzheimer's disease, Molecular Biomedicine
Website:
http://www.frontiersin.org/people/odeteda%20cruz%20e%20silva/5137
Google:
"http://www.biomedexperts.com/Start/PersonDetailPage.aspx?pid=281668"
Bio:

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Mean distance: 13.66 (cluster 32)
 
SNBCP
Cross-listing: Alzheimer's Tree

BETA: Related publications

Publications

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Pereira CD, Martins F, Wiltfang J, et al. (2017) ABC Transporters Are Key Players in Alzheimer's Disease. Journal of Alzheimer's Disease : Jad
Oliveira JM, da Cruz E Silva CB, Müller T, et al. (2017) Toward Neuroproteomics in Biological Psychiatry: A Systems Approach Unravels Okadaic Acid-Induced Alterations in the Neuronal Phosphoproteome. Omics : a Journal of Integrative Biology. 21: 550-563
Serrano JB, Martins F, Sousa JC, et al. (2017) Descriptive Analysis of LAP1 Distribution and That of Associated Proteins throughout Spermatogenesis. Membranes. 7
Domingues C, da Cruz E Silva OA, Henriques AG. (2017) Impact of Cytokines and Chemokines on Alzheimer's Disease Neuropathological Hallmarks. Current Alzheimer Research
Martins F, Serrano JB, Müller T, et al. (2017) BRI2 Processing and its Neuritogenic Role Are Modulated by Protein Phosphatase 1 Complexing. Journal of Cellular Biochemistry
Serrano JB, da Cruz E Silva OA, Rebelo S. (2016) Lamina Associated Polypeptide 1 (LAP1) Interactome and Its Functional Features. Membranes. 6
Rebelo S, da Cruz E Silva EF, da Cruz E Silva OA. (2015) Genetic mutations strengthen functional association of LAP1 with DYT1 dystonia and muscular dystrophy. Mutation Research. Reviews in Mutation Research. 766: 42-7
Martins F, Rebelo S, Santos M, et al. (2015) BRI2 and BRI3 are functionally distinct phosphoproteins. Cellular Signalling
Rebelo S, Santos M, Martins F, et al. (2015) Protein phosphatase 1 is a key player in nuclear events. Cellular Signalling
da Rocha JF, da Cruz E Silva OA, Vieira SI. (2015) Analysis of the amyloid precursor protein role in neuritogenesis reveals a biphasic SH-SY5Y neuronal cell differentiation model. Journal of Neurochemistry. 134: 288-301
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