Yuichi Yoshimura
Showa University
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Featured researches published by Yuichi Yoshimura.
Nuclear Medicine and Biology | 2003
Jun Toyohara; Akio Hayashi; Mikiko Sato; Akie Gogami; Hiromichi Tanaka; Kazuhiro Haraguchi; Yuichi Yoshimura; Hiroki Kumamoto; Yoshiharu Yonekura; Yasuhisa Fujibayashi
The aim of this study was to determine the most suitable iodonucleoside analogs for use in tissue proliferation imaging by means of single photon emission tomography (SPECT). In this study, 5-[(125)I]iodo-(2-deoxy-2-fluoro-4-thio-beta-D-arabinofuranosyl)uracil ([(125)I]FITAU, 1E) and 5-[(125)I]iodo-1-methyl-(2-deoxy-2-bromo-beta-D-arabinofuranosyl)uracil ([(125)I]IMBAU, 1F) were synthesized and their biological data were compared with previously published results regarding 4-thio nucleoside analogs and the reference compound 5-[(125)I]iodo-(2-deoxy-2-fluoro-beta-D-arabinofuranosyl)uracil ([(125)I]FIAU, 1D). 5-Iodo-(2-deoxy-2-fluoro-beta-D-arabinofuranosyl)uracil (FIAU, 2D), 5-iodo-(2-deoxy-2-fluoro-4-thio-beta-D-arabinofuranosyl)uracil (FITAU, 2E), and 5-iodo-1-methyl-(2-deoxy-2-bromo-beta-D-arabinofuranosyl)uracil (IMBAU, 2F) were successfully labeled with (125)I and their in vitro cytosolic thymidine kinase (TK(1)) phosphorylation, recombinant thymidine phosphorylase enzymatic catabolism, TK(1)-dependent cell uptake, and in vivo biodistribution in normal mice were evaluated. Five compounds (1B, 1C, 1D, 1E, and 1F) were stable against C-N glycoside degradation induced by recombinant thymidine phosphorylase. However, 5-[(125)I]iodo-2-deoxyuridine ([(125)I]IUdR, 1A) was not shown to be stable against such degradation. The TK(1) assay showed that [(125)I]FIAU (1D) expressed 16% of the phosphorylation potential of [(125)I]IUdR (1A). Furthermore, [(125)I]FITAU (1E) was shown to have reduced phosphorylation potential, in comparison with that of [(125)I]IUdR (1A) (<0.01). [(125)I]IMBAU (1F) did not show any phosphorylation. In vitro cell uptake and in vivo proliferation-selective uptake of each nucleoside was largely dependent on its potential as a TK(1) substrate. Neither [(125)I]FITAU (1E) nor [(125)I]IMBAU (1F) were shown to have distinct TK(1)-dependent cell uptake and retention in the proliferating tissues. From these results, we concluded that [(125)I]FITAU (1E) and [(125)I]IMBAU (1F) are not effective as imaging agents of cell proliferation. The biological data obtained with these nucleosides were compared, and requirements for the design of pharmaceutically useful radioiodinated nucleoside analogs were also considered.
Archive | 2001
Yuichi Yoshimura; Motoharu Takeuchi; Hiroshi Horikoshi
Journal of Organic Chemistry | 1999
Yuichi Yoshimura; Mikari Endo; Shinji Miura; Shinji Sakata
Archive | 2002
Yuichi Yoshimura; Toshiaki Tokizane; Kouji Yokota
Journal of Organic Chemistry | 2002
Kazuhiro Haraguchi; Haruhiko Takahashi; Noriaki Shiina; Chikafumi Horii; Yuichi Yoshimura; Ayako Nishikawa; Eiko Sasakura; Kazuo Nakamura; Hiromichi Tanaka
Archive | 2002
Masaki Tamura; Takahiro Matsui; Masanori Shimuta; Yuichi Yoshimura; Motoharu Takeuchi; Hiroshi Horikoshi; Hiroyuki Okada
Archive | 1999
Shoichi Ametani; Yu Horikoshi; Tokuki Niimi; Masanori Shimuta; Motoharu Takeuchi; Nobuyuki Uemura; Yuichi Yoshimura; 祐一 吉村; 祐 堀越; 徳基 新美; 伸幸 植村; 基晴 竹内; 正則 紫牟田; 章一 雨谷
Archive | 1997
Kenji Kitano; Haruhiko Machida; Shinji Miura; Mikari Watanabe; Yuichi Yoshimura
Organic Letters | 2004
Kazuhiro Haraguchi; Noriaki Shiina; Yuichi Yoshimura; Hisashi Shimada; Kyoko Hashimoto; Hiromichi Tanaka
Archive | 1997
Yuichi Yoshimura; Kenji Kitano; Shinji Miura; Haruhiko Machida; Mikari Watanabe