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Bioscience, Biotechnology, and Biochemistry|September 11, 2021
Effect of diglyceryl dicaprylate on Candida albicans growth and pathogenicityTomojiro Koide, Muneaki TamuraPhytomedicine : International Journal of Phytotherapy and Phytopharmacology|May 1, 2015
Middle-aged rats orally supplemented with gel-encapsulated catechin favorably increases blood cytosolic NADPH levelsMarni E Cueno, Muneaki Tamura, Kuniyasu OchiaiJournal of Oral Science|June 21, 2003
Inhibitory effect of serum globulins on the adhesion of Prevotella nigrescens to hydroxyapatiteKouichiro Kuroda, Yasuyuki Hirano, Muneaki Tamura, et al.Journal of Oral Science|August 22, 2003
The cell extract of Porphyromonas gingivalis promotes attachment of Prevotella nigrescens cells to hydroxyapatiteYasuyuki Hirano, Kouichiro Kuroda, Muneaki Tamura, et al.Experimental Gerontology|September 6, 2013
Orally supplemented catechin increases heme amounts and catalase activities in rat heart blood mitochondria: a comparison between middle-aged and young ratsMarni E Cueno, Muneaki Tamura, Kenichi Imai, et al.Microbial Pathogenesis|November 25, 2015
Varying hemin concentrations affect Porphyromonas gingivalis strains differentlyManabu Ohya, Marni E Cueno, Muneaki Tamura, et al.Cell Stress & Chaperones|September 21, 2013
Butyric acid-induced rat jugular blood cytosolic oxidative stress is associated with SIRT1 decreaseMarni E Cueno, Kenichi Imai, Muneaki Tamura, et al.Plos One|October 12, 2013
Structural differences between the avian and human H7N9 hemagglutinin proteins are attributable to modifications in salt bridge formation: a computational study with implications in viral evolutionMarni E Cueno, Kenichi Imai, Muneaki Tamura, et al.Anaerobe|July 2, 2014
Similar physiological effects in Porphyromonas gingivalis ATCC 33277 under hemin-excess and hemin-limited concentrations are putatively associated to different hydrogen peroxide functionMarni E Cueno, Muneaki Tamura, Manabu Ohya, et al.Microbial Pathogenesis|January 23, 2013
Catechin inhibits Candida albicans dimorphism by disrupting Cek1 phosphorylation and cAMP synthesisHideo Saito, Muneaki Tamura, Kenichi Imai, et al.Pageof 5