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Nihon Yakurigaku Zasshi. Folia Pharmacologica Japonica|November 3, 2022
[Regulation of inflammatory response based on interaction among AGEs, DAMPs, and/or cytokines]Masahiro Watanabe, Takao Toyomura, Shuji Mori
Journal of Cell Science|October 19, 2006
The a3 isoform of V-ATPase regulates insulin secretion from pancreatic beta-cellsGe-Hong Sun-Wada, Takao Toyomura, Yoshiko Murata, et al.
International Immunopharmacology|June 1, 2026
IL-4/IL-13 signaling suppresses ABT-263-induced apoptosis in senescent human fibroblastsTakashi Nishinaka, Hidenori Wake, Masahiro Watanabe, et al.
Biotechnology and Applied Biochemistry|October 27, 2019
Differential contribution of possible pattern-recognition receptors to advanced glycation end product-induced cellular responses in macrophage-like RAW264.7 cellsMasahiro Watanabe, Takao Toyomura, Hidenori Wake, et al.
Biotechnology and Applied Biochemistry|November 8, 2018
The C-terminal region of tumor necrosis factor like weak inducer of apoptosis is required for interaction with advanced glycation end productsMasahiro Watanabe, Takao Toyomura, Hidenori Wake, et al.
Molecular and Cellular Biochemistry|April 30, 2017
Advanced glycation end products attenuate the function of tumor necrosis factor-like weak inducer of apoptosis to regulate the inflammatory responseMasahiro Watanabe, Takao Toyomura, Hidenori Wake, et al.
The Journal of Biological Chemistry|April 4, 2003
From lysosomes to the plasma membrane: localization of vacuolar-type H+ -ATPase with the a3 isoform during osteoclast differentiationTakao Toyomura, Yoshiko Murata, Akitsugu Yamamoto, et al.
Biotechnology and Applied Biochemistry|April 9, 2025
Metolazone and Azosemide, Clinically Utilized Diuretics, Exhibit Inhibitory Activity for Glyoxalase IMasahiro Watanabe, Takao Toyomura, Hidenori Wake, et al.
Molecular Biology Reports|January 21, 2022
Identification of ribosomal protein L9 as a novel regulator of proinflammatory damage-associated molecular pattern moleculesMasahiro Watanabe, Takao Toyomura, Hidenori Wake, et al.
Biotechnology and Applied Biochemistry|November 27, 2023
Cationic ribosomal proteins can inhibit pro-inflammatory action stimulated by LPS+HMGB1 and are hindered by advanced glycation end productsMasahiro Watanabe, Takao Toyomura, Hidenori Wake, et al.
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