Keita Yamazaki
Osaka University
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Keita Yamazaki.
Hypertension | 2001
Motokuni Aoki; Toshie Nata; Ryuichi Morishita; Hidetsugu Matsushita; Hironori Nakagami; Kei Yamamoto; Keita Yamazaki; Mari Nakabayashi; Toshio Ogihara; Yasufumi Kaneda
Injury of endothelial cells has been assumed to be an initial trigger of the development of atherosclerosis. In this study, we investigated the molecular mechanisms of endothelial cell death induced by hypoxia, which leads to oxidative stress. To study the relation between hypoxia-induced cell death and activation of nuclear factor-&kgr;B (NF-&kgr;B) in a hypoxic state, we evaluated the effect of 2 antioxidant drugs, probucol and pyrrolidine dithiocarbamate (PDTC), on human endothelial apoptosis. Although hypoxic treatment of human aortic endothelial cells resulted in a significant decrease in cell number and a significant increase in apoptotic cells compared with that of cells under normoxia (P <0.01), treatment with probucol (50 &mgr;mol/L) or PDTC (100 &mgr;mol/L) significantly attenuated the decrease in cell number (P <0.01) and was accompanied by inhibition of NF-&kgr;B activation. Furthermore, downregulation of bcl-2 caused by hypoxia was inhibited by these drugs. We further investigated the translocation of bax protein from the cytoplasm to the mitochondrial heavy fraction membrane, as translocation of bax protein is considered to be a determinant of apoptosis. Interestingly, we found that antioxidant treatment inhibited the translocation of bax protein caused by hypoxia. Moreover, upregulation of p53, a proapoptotic molecule, was observed in hypoxia, whereas treatment with probucol attenuated the expression of p53 accompanied by suppression of NF-&kgr;B activation. These data suggest functional links between p53 and endothelial apoptosis through the activation of NF-&kgr;B. Overall, the current study demonstrated that oxidative stress induced apoptosis in human aortic endothelial cells through the downregulation of bcl-2, translocation of bax, and upregulation of p53, probably through NF-&kgr;B activation. Oxidative stress may play an important role in endothelial apoptosis mediated by hypoxia, through the activation of NF-&kgr;B.
Nihon Hōshasen Gijutsu Gakkai zasshi | 2011
Hiroyasu Maruo; Takashi Ueguchi; Chikako Tanaka; Keita Yamazaki; Satoru Sumitsuji
Japanese Circulation Journal-english Edition | 2008
Masaaki Okutsu; Satoru Sumitsuji; Ryou Anayama; Masanobu Okamoto; Kashima Itoh; Keita Yamazaki; Yoshio Tsuruta
Japanese Circulation Journal-english Edition | 2006
Satoru Sumitsuji; Madoka Ihara; Hajime Nakaoka; Makoto Satou; Keita Yamazaki; Masaaki Okutsu; Yuhei Nojima; Ken Kishida; Yoshiyuki Nagai
Japanese Circulation Journal-english Edition | 2006
Satoru Sumitsuji; Madoka Ihara; Hajime Nakaoka; Makoto Satoh; Keita Yamazaki; Yuhei Nojima; Ken Kishida; Yoshiyuki Nagai
Japanese Circulation Journal-english Edition | 2004
Hiromi Koike; Naruya Tomita; Keita Yamazaki; Yasuo Kunugiza; Toshio Ogihara; Ryuichi Morishita
Japanese Circulation Journal-english Edition | 2004
Yasuo Kunugiza; Naruya Tomita; Hideo Hashimoto; Keita Yamazaki; Hiromi Koike; Hideki Yoshikawa; Ryuichi Morishita
Japanese Circulation Journal-english Edition | 2004
Naruya Tomita; Hiromi Koike; Keita Yamazaki; Yasuo Kunugiza; Kei Yamamoto; Toshio Ogihara; Ryuichi Morishita
Japanese Circulation Journal-english Edition | 2004
Naruya Tomita; Jong Deok Ahn; Yasuo Kunugiza; In-Kyu Lee; Keita Yamazaki; Hiromi Koike; Ryuichi Morishita
Japanese Circulation Journal-english Edition | 2004
Hirofumi Makino; Ryuichi Morishita; Motokuni Aoki; Naotaka Hashiya; Keita Yamazaki; Junya Azuma; Yasufumi Kaneda; Toshio Ogihara