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Neurochemical Research|October 1, 1994
Role of basal lamina in Schwann cell glycolipid biosynthesisK R Brunden, R Gregory, J E Yoshino, et al.Methods in Enzymology|October 3, 1999
Inflammatory responses to amyloid fibrilsS L Yates, J Kocsis-Angle, P Embury, et al.Journal of Neuroimmunology|June 1, 1996
beta-Amyloid induces increased release of interleukin-1 beta from lipopolysaccharide-activated human monocytesD Lorton, J M Kocsis, L King, et al.Neurobiology of Aging|January 1, 1996
Deposits of A beta fibrils are not toxic to cortical and hippocampal neurons in vitroJ R Wujek, M D Dority, R C Frederickson, et al.Journal of Neuroimmunology|May 1, 1988
IgM/IgG solid-phase antibody-capture assay with biotin/125I-streptavidin amplification: application to normal human sural nerve biopsiesJ F Poduslo, G L Curran, K R Brunden, et al.Journal of the Neurological Sciences|September 1, 1990
Kinetics of production of a novel growth factor after peripheral nerve injuryM D Blexrud, D A Lee, A J Windebank, et al.The Journal of Biological Chemistry|January 10, 1984
Dependence of the activity of colicin E1 in artificial membrane vesicles on pH, membrane potential, and vesicle sizeV L Davidson, W A Cramer, L J Bishop, et al.Journal of Neurochemistry|December 1, 1993
pH-dependent binding of synthetic beta-amyloid peptides to glycosaminoglycansK R Brunden, N J Richter-Cook, N Chaturvedi, et al.Current Topics in Medicinal Chemistry|February 16, 2011
Modulation of protein-protein interactions as a therapeutic strategy for the treatment of neurodegenerative tauopathiesC Ballatore, K R Brunden, J Q Trojanowski, et al.Neurobiology of Aging|September 1, 1995
Amyloid beta protein (A beta) removal by neuroglial cells in cultureL M Shaffer, M D Dority, R Gupta-Bansal, et al.Pageof 4