Eiji Suzuki
Gifu University
48 Papers
531 Citations
Eiji Suzuki is an academic researcher from Gifu University. The author has contributed to research in topics: Diabetes mellitus & Vascular resistance. The author has an hindex of 17, co-authored 46 publications. Previous affiliations of Eiji Suzuki include Fujitsu & Shiga University of Medical Science.
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Papers
Further studies on the resolution of human mercapt- and nonmercaptalbumin and on human serum albumin in the elderly by high-performance liquid chromatography.
Seiichi Era,Takashi Hamaguchi,Masaru Sogami,Kazuo Kuwata,Eiji Suzuki,Kiyoshi Miura,Kenji Kawai,Yoshiaki Kitazawa,Hiroaki Okabe,Akio Noma,Seiji Miyata +10 more
TL;DR: Two kinds of rapid HPLC for the resolution of HSA into HMA and HNA were developed and the present authors found a significant decrease in the fraction of HMA in the elderly.
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HPLC‐studies on nonmercapt‐mercapt conversion of human serum albumin
Masaru Sogami,Seiichi Era,Shunji Nagaoka,Kazuo Kuwata,Kimihiro Kida,Kiyoshi Miura,Hiroshi Inouye,Eiji Suzuki,Shigeo Hayano,Shigeki Sawada +9 more
TL;DR: Human mercaptalbumin and nonmercaptalbumin could be separated by high-performance liquid chromatography (HPLC) at neutral pH, indicating HMA as the covalent carrier protein for sulfur-containing amino acids.
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Membrane localization of 3-phosphoinositide-dependent protein kinase-1 stimulates activities of Akt and atypical protein kinase C but does not stimulate glucose transport and glycogen synthesis in 3T3-L1 adipocytes.
Katsuya Egawa,Hiroshi Maegawa,Kun Shi,Takaaki Nakamura,Toshiyuki Obata,Takeshi Yoshizaki,Katsutaro Morino,Shinya Shimizu,Yoshihiko Nishio,Eiji Suzuki,Atsunori Kashiwagi +10 more
TL;DR: The translocation of PDK-1 from cytosol to the plasma membrane is critical for Akt and GSK-3 activation and only atypical PKC and Akt activation was insufficient for stimulation of glucose transport, and constitutive activation of Akt-GSK-3 pathway may inhibit glycogen synthesis and MAPK cascade in 3T3-L1 adipocytes.
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Stiffness and Impaired Blood Flow in Lower-Leg Arteries Are Associated With Severity of Coronary Artery Calcification Among Asymptomatic Type 2 Diabetic Patients
Masanobu Tsuchiya,Eiji Suzuki,Katsuya Egawa,Yoshihiko Nishio,Hiroshi Maegawa,Shinji Inoue,Kenichi Mitsunami,Shigehiro Morikawa,Toshiro Inubushi,Atsunori Kashiwagi +9 more
TL;DR: Quantitatively assessed stiffness and impaired blood flow in lower-leg arteries may help identify diabetic patients with possible coronary artery disease.
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Abnormal peripheral circulation in type 2 diabetic patients with normal ankle-brachial index associates with coronary atherosclerosis, large artery stiffness, and peripheral vascular resistance.
Masanobu Tsuchiya,Eiji Suzuki,Katsuya Egawa,Yoshihiko Nishio,Hiroshi Maegawa,Shigehiro Morikawa,Toshiro Inubushi,Atsunori Kashiwagi +7 more
TL;DR: The results suggest that impaired peripheral circulation in diabetes is attributable to coronary atherosclerosis, large artery stiffness, and peripheral vascular resistance even when ABI is normal.
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