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Biological & Pharmaceutical Bulletin|November 5, 1999
The hydroxyl radical formation system in polymorphonuclear leukocytesN Kawakami, T Hayakawa, S Shimohama, et al.Brain Research|October 31, 1994
The endogenous substrate of low molecular weight acid phosphatase in the brain is an epidermal growth factor receptorS Shimohama, S Fujimoto, T Taniguchi, et al.Brain Research|May 8, 1992
Phosphatidylinositol-specific phospholipase C activity in the postmortem human brain: no alteration in Alzheimer's diseaseS Shimohama, S Fujimoto, T Taniguchi, et al.Biochemical and Biophysical Research Communications|June 30, 2000
Activation of NADPH oxidase in Alzheimer's disease brainsS Shimohama, H Tanino, N Kawakami, et al.International Journal of Molecular Medicine|May 26, 1999
Differential involvement of small G proteins in Alzheimer's diseaseS Shimohama, S Kamiya, T Taniguchi, et al.Alzheimer Disease and Associated Disorders|January 1, 1995
Reduction of platelet phospholipase C activity in patients with Alzheimer diseaseH Matsushima, S Shimohama, S Fujimoto, et al.Annals of Neurology|June 1, 1993
Reduction of low-molecular-weight acid phosphatase activity in Alzheimer brainsS Shimohama, S Fujimoto, T Taniguchi, et al.Neurobiology of Aging|November 1, 1995
Changes in platelet phospholipase C protein level and activity in Alzheimer's diseaseH Matsushima, S Shimohama, S Fujimoto, et al.Biochimica Et Biophysica Acta|November 8, 1996
Tyrosine phosphorylation and translocation of phospholipase C-gamma 2 in polymorphonuclear leukocytes treated with pervanadateN Kawakami, S Shimohama, T Hayakawa, et al.Biological & Pharmaceutical Bulletin|July 17, 1999
Participation of cytosolic protein phosphatase in regulation of NADPH oxidase in polymorphonuclear leukocytesN Kawakami, H Takemasa, N Okamura, et al.Pageof 120