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Journal of Cellular Physiology|September 13, 2005
Localization, specific activity, and molecular forms of acetylcholinesterase in developmental stages of the cestode Mesocestoides cortiU Kemmerling, G Cabrera, E O Campos, et al.Current Medicinal Chemistry|July 22, 2014
Effects of tetrahydrohyperforin in mouse hippocampal slices: neuroprotection, long-term potentiation and TRPC channelsC Montecinos-Oliva, A Schuller, J Parodi, et al.Journal of Cellular Physiology|February 1, 1996
Extracellular matrix regulates the amount of the beta-amyloid precursor protein and its amyloidogenic fragmentsF C Bronfman, C Soto, L Tapia, et al.Current Medicinal Chemistry|December 18, 2009
Neurobiological effects of Hyperforin and its potential in Alzheimer's disease therapyT N Griffith, L Varela-Nallar, M C Dinamarca, et al.Neuroscience Letters|November 8, 1996
Laminin inhibits amyloid-beta-peptide fibrillationF C Bronfman, J Garrido, A Alvarez, et al.Journal of Neurochemistry|August 1, 1984
Age-related responses of skeletal muscle after ectopic innervation, with particular reference to 16S acetylcholinesterase, in adult ratsM Maldonado, B U Ramírez, G Ruiz, et al.Biological Research|February 8, 2005
Plant polyphenol antioxidants and oxidative stressI Urquiaga, F LeightonJournal of Neurochemistry|August 26, 1999
Cysteine 144 is a key residue in the copper reduction by the beta-amyloid precursor proteinF H Ruiz, M González, M Bodini, et al.Cellular and Molecular Neurobiology|June 1, 1984
The electric organ of Discopyge tschudii: its innervated face and the biology of acetylcholinesteraseB Méndez, J Garrido, M Maldonado, et al.The Journal of Biological Chemistry|April 5, 1987
Acetylcholinesterase from bovine caudate nucleus is attached to membranes by a novel subunit distinct from those of acetylcholinesterases in other tissuesN C Inestrosa, W L Roberts, T L Marshall, et al.Pageof 22