Selina Wray

Affiliations: 
UCL Institute of Neurology, London, England, United Kingdom 
Area:
Alzheimer's Disease, Dementia, Neurodegeneration
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"Selina Wray"
Cross-listing: Neurotree

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Publications

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Arber C, Casey JM, Crawford S, et al. (2023) Microglia produce the amyloidogenic ABri peptide in familial British dementia. Biorxiv : the Preprint Server For Biology
Willumsen N, Arber C, Lovejoy C, et al. (2022) The PSEN1 E280G mutation leads to increased amyloid-β43 production in induced pluripotent stem cell neurons and deposition in brain tissue. Brain Communications. 5: fcac321
Wei J, Arber C, Wray S, et al. (2022) Human myeloid progenitor glucocorticoid receptor activation causes genomic instability, type 1 IFN- response pathway activation and senescence in differentiated microglia; an early life stress model. Glia
Pantazis CB, Yang A, Lara E, et al. (2022) A reference human induced pluripotent stem cell line for large-scale collaborative studies. Cell Stem Cell. 29: 1685-1702.e22
Gabriele RMC, Abel E, Fox NC, et al. (2022) Knockdown of Amyloid Precursor Protein: Biological Consequences and Clinical Opportunities. Frontiers in Neuroscience. 16: 835645
Gomez-Suaga P, Mórotz GM, Markovinovic A, et al. (2022) Disruption of ER-mitochondria tethering and signalling in C9orf72-associated amyotrophic lateral sclerosis and frontotemporal dementia. Aging Cell. e13549
Lines G, Arber C, Preza E, et al. (2021) Investigating changes in the proteostasis capabilities of iPSC-neurons during development and in FTD using iPSC-neurons with MAPT mutations. Alzheimer's & Dementia : the Journal of the Alzheimer's Association. 17: e058308
Mallach A, Gobom J, Arber C, et al. (2021) Differential Stimulation of Pluripotent Stem Cell-Derived Human Microglia Leads to Exosomal Proteomic Changes Affecting Neurons. Cells. 10
Mallach A, Gobom J, Zetterberg H, et al. (2021) The influence of the R47H triggering receptor expressed on myeloid cells 2 variant on microglial exosome profiles. Brain Communications. 3: fcab009
Kopach O, Esteras N, Wray S, et al. (2021) Genetically engineered MAPT 10+16 mutation causes pathophysiological excitability of human iPSC-derived neurons related to 4R tau-induced dementia. Cell Death & Disease. 12: 716
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