Shiro Seki
Kogakuin University
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Publication
Featured researches published by Shiro Seki.
Chemical Communications | 2006
Shiro Seki; Yo Kobayashi; Hajime Miyashiro; Yasutaka Ohno; Akira Usami; Yuichi Mita; Masayoshi Watanabe; Nobuyuki Terada
For the purpose of realizing high-voltage, high-capacity, long-life and safe rechargeable batteries, a lithium secondary battery that uses high-voltage stable ZrO2-coated LiCoO2 cathode powder and a nonvolatile high-safety room temperature ionic liquid was fabricated.
Scientific Reports | 2017
Eri Tabata; Akinori Kashimura; Satoshi Wakita; Misa Ohno; Masayoshi Sakaguchi; Yasusato Sugahara; Yasutada Imamura; Shiro Seki; Hitoshi Ueda; Vaclav Matoska; Peter Bauer; Fumitaka Oyama
Chitin, a polymer of N-acetyl-D-glucosamine (GlcNAc), is a major structural component in chitin-containing organism including crustaceans, insects and fungi. Mammals express two chitinases, chitotriosidase (Chit1) and acidic mammalian chitinase (AMCase). Here, we report that pig AMCase is stable in the presence of other digestive proteases and functions as chitinolytic enzyme under the gastrointestinal conditions. Quantification of chitinases expression in pig tissues using quantitative real-time PCR showed that Chit1 mRNA was highly expressed in eyes, whereas the AMCase mRNA was predominantly expressed in stomach at even higher levels than the housekeeping genes. AMCase purified from pig stomach has highest activity at pH of around 2–4 and remains active at up to pH 7.0. It was resistant to robust proteolytic activities of pepsin at pH 2.0 and trypsin and chymotrypsin at pH 7.6. AMCase degraded polymeric chitin substrates including mealworm shells to GlcNAc dimers. Furthermore, we visualized chitin digestion of fly wings by endogenous AMCase and pepsin in stomach extract. Thus, pig AMCase can function as a protease resistant chitin digestive enzyme at broad pH range present in stomach as well as in the intestine. These results indicate that chitin-containing organisms may be a sustainable feed ingredient in pig diet.
RSC Smart Materials | 2017
Shiro Seki; Shimpei Ono; Nobuyuki Serizawa; Yasuhiro Umebayashi; Seiji Tsuzuki; Kazuhide Ueno; Masayoshi Watanabe
New electrochemical application using room-temperature ionic liquids (ILs) are introduced, such as lithium secondary batteries, electrochemical double layer capacitors, and novel types of electrical devices for sustainable and renewal energy society. ILs have so many combinations, owing to many cation/anion species. In this chapter, we introduce properties from fundamental (general and special physicochemical properties) to electrochemical applications of ILs. We also discuss importance of molecular design and application target of ILs.
Electrochimica Acta | 2004
Shiro Seki; Sei-ichiro Tabata; Shohei Matsui; Masayoshi Watanabe
Archive | 2005
Akira Kobayashi; Hajime Miyashiro; Shiro Seki; Nobuyuki Terada; Akira Usami; 章 宇佐美; 一 宮代; 信之 寺田; 陽 小林; 志朗 関
Archive | 2004
Akira Kobayashi; Hajime Miyashiro; Shiro Seki; Atsushi Yamanaka; 一 宮代; 陽 小林; 厚志 山中; 志朗 関
Archive | 2000
Akira Kobayashi; Hajime Miyashiro; Shiro Seki; Atsushi Yamanaka; 一 宮代; 陽 小林; 厚志 山中; 志朗 関
Archive | 2008
J. Takeya; Shimpei Ono; Shiro Seki
Physical Chemistry Chemical Physics | 2017
Seiji Tsuzuki; Toshihiko Mandai; Soma Suzuki; Wataru Shinoda; Takenobu Nakamura; Tetsuya Morishita; Kazuhide Ueno; Shiro Seki; Yasuhiro Umebayashi; Kaoru Dokko; Masayoshi Watanabe
Electrochemistry Communications | 2005
Hirotsugu Miyashiro; Shiro Seki; Yoshifumi Kobayashi; Yo-ichi Ohno; Yukari Mita; Akira Usami
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National Institute of Advanced Industrial Science and Technology
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