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Alzheimer'S Research & Therapy|March 15, 2014
Platelet-activating factor antagonists enhance intracellular degradation of amyloid-β42 in neurons via regulation of cholesterol ester hydrolasesCharlotte Simmons, Victoria Ingham, Alun Williams, et al.Neuroreport|June 15, 2004
Microglia kill amyloid-beta1-42 damaged neurons by a CD14-dependent processClive Bate, Robert Veerhuis, Piet Eikelenboom, et al.The Journal of Biological Chemistry|June 22, 2016
Sialic Acid within the Glycosylphosphatidylinositol Anchor Targets the Cellular Prion Protein to SynapsesClive Bate, William Nolan, Harriet McHale-Owen, et al.Neurotoxicity Research|August 1, 2009
Polyunsaturated fatty acids protect against prion-mediated synapse damage in vitroClive Bate, Mourad Tayebi, Mario Salmona, et al.Plos One|December 17, 2009
Glimepiride reduces the expression of PrPc, prevents PrPSc formation and protects against prion mediated neurotoxicity in cell linesClive Bate, Mourad Tayebi, Luisa Diomede, et al.BMC Neuroscience|November 24, 2007
Squalestatin alters the intracellular trafficking of a neurotoxic prion peptideRona Wilson, Clive Bate, Ronald Boshuizen, et al.BMC Biology|September 16, 2008
Docosahexaenoic and eicosapentaenoic acids increase prion formation in neuronal cellsClive Bate, Mourad Tayebi, Luisa Diomede, et al.Neuroreport|September 28, 2002
Temporal and spatial relationship between the death of PrP-damaged neurones and microglial activationClive Bate, Ronald S Boshuizen, Jan P M Langeveld, et al.Neuropharmacology|March 22, 2008
Docosahexaenoic and eicosapentaenoic acids increase neuronal death in response to HuPrP82-146 and Abeta 1-42Clive Bate, Victoria Marshall, Laura Colombo, et al.Neuropharmacology|October 4, 2015
Glimepiride protects neurons against amyloid-β-induced synapse damageCraig Osborne, Ewan West, William Nolan, et al.Pageof 15