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The Biochemical Journal|March 4, 2010
The glycosylphosphatidylinositol anchor is a major determinant of prion binding and replicationClive Bate, Mourad Tayebi, Alun WilliamsNeuropharmacology|November 18, 2005
Prostaglandin D2 mediates neuronal damage by amyloid-beta or prions which activates microglial cellsClive Bate, Sarah Kempster, Alun WilliamsJournal of Neuroinflammation|June 23, 2014
Glimepiride reduces CD14 expression and cytokine secretion from macrophagesVictoria Ingham, Alun Williams, Clive BatePrion|February 23, 2016
Does the tail wag the dog? How the structure of a glycosylphosphatidylinositol anchor affects prion formationClive Bate, William Nolan, Alun WilliamsNeuropharmacology|June 28, 2015
An in vitro model for synaptic loss in neurodegenerative diseases suggests a neuroprotective role for valproic acid via inhibition of cPLA2 dependent signallingRobin S B Williams, Clive BateMolecular Neurodegeneration|December 9, 2010
α-synuclein induced synapse damage is enhanced by amyloid-β1-42Clive Bate, Steve Gentleman, Alun WilliamsJournal of Neuroimmunology|October 18, 2005
Microglial cells kill prion-damaged neurons in vitro by a CD14-dependent processClive Bate, Ronald Boshuizen, Alun WilliamsBMC Biology|February 14, 2008
Sequestration of free cholesterol in cell membranes by prions correlates with cytoplasmic phospholipase A2 activationClive Bate, Mourad Tayebi, Alun WilliamsNeuropharmacology|October 12, 2010
Inhibition of phospholipase A2 increased the removal of the prion derived peptide PrP82-146 from cultured neuronsClive Bate, Victoria Ingham, Alun WilliamsThe Journal of Biological Chemistry|November 11, 2015
Sialic Acid on the Glycosylphosphatidylinositol Anchor Regulates PrP-mediated Cell Signaling and Prion FormationClive Bate, William Nolan, Alun WilliamsPageof 7