Tomohito Kawano
University of Tokushima
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Publication
Featured researches published by Tomohito Kawano.
Drug Research | 2011
Teru Nada; Masahiro Nomura; Kunihiko Koshiba; Tomohito Kawano; Jyunichi Mikawa; Susumu Ito
A dihydropyridine calcium (Ca) antagonist, azelnidipine (CAS 123524-52-7, Calblock), exhibits hypotensive effects for a prolonged duration, and has been reported to have a strong antiarteriosclerotic action due to its high affinity for vascular tissues and antioxidative action. It has also been reported that azelnidipine does not cause tachycardia associated with the baroreceptor reflex due to vasodilatation. In this study, the antiarteriosclerotic and cardiac hypertrophy-inhibitory effects, and the autonomic nervous activity in essential hypertension of azelnidipine were investigated. The study was performed using the following 2 protocols: 1) Pulse wave velocity (PWV), carotid arterial intima media thickness (IMT), echocardiography, high sensitive C-reactive protein (hs-CRP), interleukin-6 (IL-6), tumor necrosis factor alpha (TNF-alpha), adiponectin, brain natriuretic peptide (BNP), and 8-isoprostane were measured after an initial treatment with azelnidipine. 2) The treatment was switched to azelnidipine in patients who had previously been under treatment with amlodipine for essential hypertension, and 123I-metaiodobenzylguanidine myocardial scintigraphy (123I-MIBG), measurements of plasma norepinephrine, atrial natriuretic peptide (ANP), and BNP, Holter electrocardiography, and heart rate variability analysis were performed. PWV, IMT, hs-CRP, IL-6, and TNF-alpha significantly decreased. The levels of 8-isoprostane, an antioxidative marker, were also significantly decreased, while adioponectin levels were significantly increased after the initial treatment with azelnidipine. After switching from amlodipine, azelnidipine exhibited a hypotensive effects comparable to amlodipine, and significantly decreased heart rate and the total number of extrasystoles. Noradrenaline levels and the LF/HF ratio were significantly decreased, and the washout rate was significantly reduced on 123I-MIBG myocardial scintigraphy. These findings suggest that azelnidipine inhibits the enhancement of sympathetic nervous activity and the progression of arteriosclerosis through its antioxidative effects.
Alimentary Pharmacology & Therapeutics | 2004
Masahiro Nomura; Kozo Uehara; Kenji Harada; Eiko Uemura; Akiko Iga; Tomohito Kawano; Akiyoshi Nishikado; Ken Saito; Yutaka Nakaya; Susumu Ito
Background : Nitrates decrease the tone of the lower oesophageal sphincter, and may thus induce gastro‐oesophageal reflux.
Life Sciences | 2003
Tomohito Kawano; Masahiro Nomura; Akiyoshi Nisikado; Yutaka Nakaya; Susumu Ito
The Journal of Medical Investigation | 2006
Tomonori Watanabe; Masahiro Nomura; Tomohito Kawano; Susumu Ito; Yutaka Nakaya
The Journal of Medical Investigation | 2007
Kiyoshi Ieishi; Masahiro Nomura; Tomohito Kawano; Sayuri Fujimoto; Hiroyuki Ikefuji; Yoshiko Noda; Akiyoshi Nishikado; Susumu Ito
International Journal of Cardiology | 2008
Masahiro Nomura; Tomohito Kawano; Yutaka Nakaya
Journal of cardiology. Supplement | 1991
Iuchi A; Takashi Oki; Ogawa S; Tomohito Kawano; Hayashi M; Aoyama Y; Emi S; Hosoi K; Fukuda N; Mori H
Journal of cardiology. Supplement | 1989
Tomohito Kawano; Takashi Oki; Uchida T; Iuchi A; Ogawa S; Hayashi M; Fukuda N; Mori H; Hizawa K
Drug Research | 2011
Masahiro Nomura; Yutaka Nakaya; Eiko Uemura; Yuko Sawa; Akiko Iga; Norihito Kageyama; Toru Nakayama; Kanji Kusunoki; Tomohito Kawano; Kansei Katoh; Hiroshi Okamoto; Akiyoshi Nishikado; Ken Saito; Susumu Ito
The Journal of Medical Investigation | 2004
Ayaka Kobayashi; Masahiro Nomura; Yuko Sawa; Takashi Kawaguchi; Kunihiko Koshiba; Koji Yamaguchi; Tomohito Kawano; Tetsuzo Wakatsuki; Tomotsugu Tabata; Akiyoshi Nisikado; Susumu Ito; Yutaka Nakaya