Katsuya Tamura
University of Tokushima
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Publication
Featured researches published by Katsuya Tamura.
Circulation | 2004
Nobuyuki Takamori; Hiroyuki Azuma; Midori Kato; Shunji Hashizume; Ken-ichi Aihara; Masashi Akaike; Katsuya Tamura; Toshio Matsumoto
Background—Thrombin plays an important role in the development of atherosclerosis and restenosis after percutaneous coronary intervention. Because heparin cofactor II (HCII) inhibits thrombin action in the presence of dermatan sulfate, which is abundantly present in arterial wall, HCII may affect vascular remodeling by modulating thrombin action. We hypothesized that patients with high plasma HCII activity may show a reduced incidence of in-stent restenosis (ISR). Methods and Results—Sequential coronary arteries (n=166) with NIR stent (Boston Scientific Corp) implantation in 134 patients were evaluated before, immediately after, and at 6 months after percutaneous coronary intervention. Patients were divided into the following groups: high HCII (≥110%, 45 lesions in 36 patients), normal HCII (≥80% and <110%, 81 lesions in 66 patients), and low HCII (<80%, 40 lesions in 32 patients). Percent diameter stenosis at follow-up in the high-HCII group (18.7%) was significantly lower (P =0.046) than that in the normal-HCII group (30.3%) or the low-HCII group (29.0%). The ISR rate in the high-HCII group (6.7%) was significantly lower than that in the low-HCII group (30.0%) (P =0.0039). Furthermore, multivariate analysis demonstrated that high plasma HCII activity is an independent factor in reducing the incidence of angiographic restenosis (odds ratio, 0.953/1% increase of HCII; 95% CI, 0.911 to 0.998). Conclusions—The results demonstrate that HCII may have a hitherto unrecognized effect in inhibiting ISR. The effect of HCII may be mediated by inactivating thrombin in injured arteries, thereby inhibiting vascular smooth muscle cell migration and proliferation.
Clinical Chemistry | 2002
Masashi Akaike; Hiroyuki Azuma; Ayako Kagawa; Kazuya Matsumoto; Ikuro Hayashi; Katsuya Tamura; Takeshi Nishiuchi; Takahiko Iuchi; Nobuyuki Takamori; Ken-ichi Aihara; Tomonori Yoshida; Yasuhiko Kanagawa; Toshio Matsumoto
Internal Medicine | 2008
Kayo Hirose; Hiroshi Yamaguchi; Yasushi Oshima; Masahito Choraku; Akira Hirono; Nobuyuki Takamori; Katsuya Tamura
Internal Medicine | 2008
Hiroshi Yamaguchi; Kazuo Komamura; Masahito Choraku; Akira Hirono; Nobuyuki Takamori; Katsuya Tamura; Masashi Akaike; Hiroyuki Azuma
Proceedings of the Japan Academy, Series B | 1980
Kazuo Miyoshi; Akira Taira; Kenzo Yoshida; Katsuya Tamura; Shigetoshi Uga
Proceedings of the Japan Academy. Ser. B: Physical and Biological Sciences | 1980
Kazuo Miyoshi; Akira Taira; Kenzo Yoshida; Katsuya Tamura; Shigetoshi Uga
Proceedings of the Japan Academy. Ser. B: Physical and Biological Sciences | 1980
Kazuo Miyoshi; Akira Taira; Kenzo Yoshida; Katsuya Tamura; Shigetoshi Uga
Journal of the American College of Cardiology | 2014
Masahito Shigekiyo; Ayumi Okada; Kazunori Takeichi; Tatsuhiko Shiraishi; Akira Hirono; Katsuya Tamura
Circulation | 2010
Kenji Harada; Takashi Yamamoto; Naho Terada; Ayumi Okada; Masahito Shigekiyo; Hiroyoshi Yoshikawa; Shingo Hashimoto; Akira Hirono; Katsuya Tamura; Hiroyuki Fujinaga
Japanese Circulation Journal-english Edition | 2009
Hiroshi Yamaguchi; Kazuo Komamura; Hiroyoshi Yoshikawa; Shingo Hashimoto; Nobuyuki Takamori; Katsuya Tamura