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Dive into the research topics where Keita Sato is active.

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Featured researches published by Keita Sato.


ACS Applied Materials & Interfaces | 2013

Localized Surface Plasmon Resonance Detection of Biological Toxins Using Cell Surface Oligosaccharides on Glyco Chips

Takehiro Nagatsuka; Hirotaka Uzawa; Keita Sato; Satoshi Kondo; Masayuki Izumi; Kenji Yokoyama; Isaac Ohsawa; Yasuo Seto; Paola Neri; Hiroshi Mori; Yoshihiro Nishida; Masato Saito; Eiichi Tamiya

We have detected biological toxins using localized surface plasmon resonance (LSPR) and synthetic glycosyl ceramides (β-lactoside, globosyl trisaccharide (Gb3), or GM1 pentasaccharide) attached to gold (Au) nanoparticles. The particle diameters ranged from 5-100 nm. The detection sensitivity for three toxins (ricin, Shiga toxin, and cholera toxin) was found to depend not only on the attached glycoside but also on the diameter of the Au nanoparticles. For the detection of ricin, the 20-nm β-lactoside-coated Au nanoparticle exhibited the highest LSPR response, whereas 40-nm Gb3- and GM1-coated Au nanoparticles gave the best results for Shiga toxin and cholera toxin, respectively. In addition, a blocking process on the nanoparticle surface greatly improved the detection sensitivity for cholera toxin. The LSPR system enabled us to detect ricin at 30 ng/mL, Shiga toxin at 10 ng/mL, and the cholera toxin at 20 ng/mL.


Beilstein Journal of Organic Chemistry | 2014

Bis(β-lactosyl)-[60]fullerene as novel class of glycolipids useful for the detection and the decontamination of biological toxins of the Ricinus communis family.

Hirofumi Dohi; Takeru Kanazawa; Akihiro Saito; Keita Sato; Hirotaka Uzawa; Yasuo Seto; Yoshihiro Nishida

Summary Glycosyl-[60]fullerenes were first used as decontaminants against ricin, a lactose recognition proteotoxin in the Ricinus communis family. A fullerene glycoconjugate carrying two lactose units was synthesized by a [3 + 2] cycloaddition reaction between C60 and the azide group in 6-azidohexyl β-lactoside per-O-acetate. A colloidal aqueous solution with brown color was prepared from deprotected bis(lactosyl)-C60 and was found stable for more than 6 months keeping its red color. Upon mixing with an aqueous solution of Ricinus communis agglutinin (RCA120), the colloidal solution soon caused precipitations, while becoming colorless and transparent. In contrast, a solution of concanavalin A (Con A) caused no apparent change, indicating that the precipitation was caused specifically by carbohydrate–protein interactions. This notable phenomenon was quantified by means of sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE), and the results were discussed in terms of detection and decontamination of the deadly biological toxin in the Ricinus communis family.


Journal of Physical Chemistry C | 2010

Experimental Study on Adsorption and Photocatalytic Decomposition of Isopropyl Methylphosphonofluoridate at Surface of TiO2 Photocatalyst

Tsutomu Hirakawa; Keita Sato; Asuka Komano; Shintarou Kishi; Chifumi K. Nishimoto; Nobuaki Mera; Masahiro Kugishima; Taizo Sano; Hiromichi Ichinose; Nobuaki Negishi; Yasuo Seto; Kouji Takeuchi


Applied Catalysis B-environmental | 2011

Titanium dioxide photocatalysis to decompose isopropyl methylphosphonofluoridate (GB) in gas phase

Keita Sato; Tsutomu Hirakawa; Asuka Komano; Shintarou Kishi; Chifumi K. Nishimoto; Nobuaki Mera; Masahiro Kugishima; Taizo Sano; Hiromichi Ichinose; Nobuaki Negishi; Yasuo Seto; Koji Takeuchi


ACS Applied Materials & Interfaces | 2012

Glycotechnology for decontamination of biological agents: a model study using ricin and biotin-tagged synthetic glycopolymers.

Takehiro Nagatsuka; Hirotaka Uzawa; Keita Sato; Isaac Ohsawa; Yasuo Seto; Yoshihiro Nishida


Applied Catalysis B-environmental | 2013

Titanium dioxide photocatalytic decomposition of ethyl-S-dimethylaminoethyl methylphosphonothiolate (VX) in aqueous phase

Asuka Komano; Tsutomu Hirakawa; Keita Sato; Shintarou Kishi; Chifumi K. Nishimoto; Nobuaki Mera; Masahiro Kugishima; Taizo Sano; Nobuaki Negishi; Hiromichi Ichinose; Yasuo Seto; Koji Takeuchi


Journal of Photochemistry and Photobiology A-chemistry | 2013

Specific properties on TiO2 photocatalysis to decompose isopropyl methylphosphonofluoridate and dimethyl methylphosphonate in Gas Phase

Tsutomu Hirakawa; Keita Sato; Asuka Komano; Shintarou Kishi; Chifumi K. Nishimoto; Nobuaki Mera; Masahiro Kugishima; Taizo Sano; Nobuaki Negishi; Hiromichi Ichinose; Yasuo Seto; Koji Takeuchi


Sensors and Materials | 2010

Amperometnc sensor consisting gold-nanoparticle-dispersed carbon fiber electrodes for blister agent detection

Hiroaki Matsuura; Hiroyuki Yamada; Ryuji Asada; Shintaro Yamaguchi; Keita Sato; Nobuo Nakano; Katsuhiko Nishiyama; Isao Taniguchi; Yasuo Seto


Archive | 2008

METHOD OF SOLID PHASE EXTRACTION OF TOXIN OR VIRUS-CONTAINING CONTAMINATED FLUID, METHOD OF DETOXIFICATION THEREOF, SOLID PHASE EXTRACTION COLLECTOR AND DECONTAMINATION AGENT USING THE SAME

Masahiro Furuno; Haruto Kato; Akika Komano; Takehiro Nagatsuka; Yoshihiro Nishida; Isaku Osawa; Shigenori Ota; Keita Sato; Yasuo Seto; Yoshiyuki Takei; Hirotaka Uzawa; 啓太 佐藤; 治人 加藤; 正浩 古野; 勇久 大沢; 茂徳 太田; 義之 武井; 健宏 永塚; 康雄 瀬戸; 芳弘 西田; 明香 駒野; 浩隆 鵜沢


Chemistry Letters | 2013

Photocatalytic Decomposition of Ethyl S-Diisopropylaminoethyl Methylphosphonothioate (VX) by Ag and Au Metal Deposited on TiO2 in Aqueous Phase

Shintarou Kishi; Tsutomu Hirakawa; Keita Sato; Asuka Komano; Chifumi K. Nishimoto; Nobuaki Mera; Masahiro Kugishima; Taizo Sano; Nobuaki Negishi; Hiromichi Ichinose; Yasuo Seto; Koji Takeuchi

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Yasuo Seto

National Research Institute of Police Science

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Asuka Komano

National Research Institute of Police Science

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Chifumi K. Nishimoto

National Institute of Advanced Industrial Science and Technology

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Nobuaki Mera

National Institute of Advanced Industrial Science and Technology

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Nobuaki Negishi

National Institute of Advanced Industrial Science and Technology

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Shintarou Kishi

National Research Institute of Police Science

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Taizo Sano

National Institute of Advanced Industrial Science and Technology

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Tsutomu Hirakawa

National Institute of Advanced Industrial Science and Technology

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Hirotaka Uzawa

National Institute of Advanced Industrial Science and Technology

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Koji Takeuchi

Kyoto Pharmaceutical University

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