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Dive into the research topics where Hirotaka Matsuura is active.

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Featured researches published by Hirotaka Matsuura.


Chemical Communications | 2013

DNA analysis based on toehold-mediated strand displacement on graphene oxide

Takaaki Miyahata; Yusuke Kitamura; Akika Futamura; Hirotaka Matsuura; Kazuto Hatakeyama; Michio Koinuma; Yasumichi Matsumoto; Toshihiro Ihara

Fluorescent dye-labeled probe DNA was immobilized on fluorescence-quenching graphene oxide (GO) through a capture DNA. When targets were added, the probes were released from the GO through toehold-mediated strand exchange. Higher emission recovery and more signal contrast were achieved relative to conventional methods that are based on direct adsorption of probes.


Nature Communications | 2015

Metal ion-directed dynamic splicing of DNA through global conformational change by intramolecular complexation

Toshihiro Ihara; Hiroyuki Ohura; Chisato Shirahama; Tomohiro Furuzono; Hiroshi Shimada; Hirotaka Matsuura; Yusuke Kitamura

Chemically engineered DNAs—in which global conformation can be modulated in response to specific stimuli—could be allosteric functional DNAs themselves or work as a modulator of the functional nucleic acids such as DNAzymes and aptamers. Here, we show that two terpyridines built in the DNA backbone form a stable intramolecular 1:2 complex, [M(terpy)2](2+), with divalent transition metal ions. Upon complexation, the DNA conjugates adopt a Ω-shape structure, in which two distal sequences located outside the terpyridines connect with each other to form a continuous segment with a specific structure or sequence. Such a DNA structure is globally controlled by local metal complexation events that can be rationally designed based on general coordination chemistry. This method is regarded as metal ion-directed dynamic sequence edition or DNA splicing. DNAzymes with peroxidase-like activity can thus be regulated by several transition metal ions through sequence edition techniques based on the Ω-motif.


Chemical Communications | 2014

Synthesis of monolayer platinum nanosheets

Asami Funatsu; Hikaru Tateishi; Kazuto Hatakeyama; Y. Fukunaga; Takaaki Taniguchi; Michio Koinuma; Hirotaka Matsuura; Yasumichi Matsumoto


Reactive & Functional Polymers | 2010

Preparation of bifunctional chelating fiber containing iminodi(methylphosphonate) and sulfonate and its performances in column-mode uptake of Cu(II) and Zn(II)

Akinori Jyo; Yuko Hamabe; Hirotaka Matsuura; Yoshikazu Shibata; Yuki Fujii; Masao Tamada; Akio Katakai


Chemical Communications | 2013

Versatile allosteric molecular devices based on reversible formation of luminous lanthanide complexes

Yusuke Kitamura; Shikinari Yamamoto; Yuka Osawa; Hirotaka Matsuura; Toshihiro Ihara


Chemistry: A European Journal | 2013

Rational Design for Cooperative Recognition of Specific Nucleobases Using β‐Cyclodextrin‐Modified DNAs and Fluorescent Ligands on DNA and RNA Scaffolds

Akika Futamura; Asuka Uemura; Takeshi Imoto; Yusuke Kitamura; Hirotaka Matsuura; Chun Xia Wang; Toshiki Ichihashi; Yusuke Sato; Norio Teramae; Seiichi Nishizawa; Toshihiro Ihara


Chemistry Letters | 2014

Alteration of DNAzyme Activity by Silver Ion

Shoma Urata; Takaaki Miyahata; Hirotaka Matsuura; Yusuke Kitamura; Toshihiro Ihara


Dalton Transactions | 2013

Metallo-regulation of the bimolecular triplex formation of a peptide nucleic acid

Hiroshi Shimada; Toshihiko Sakurai; Yusuke Kitamura; Hirotaka Matsuura; Toshihiro Ihara


Separation and Purification Technology | 2016

Dowex 1X4 and Dowex 1X8 as substitute of Diaion MA03SS in simulated moving bed chromatographic separation of sulfuric acid and sugars in concentrated sulfuric acid hydrolysates of bamboo

Zhao Yong Sun; Tetsuya Ura; Hirotaka Matsuura; Kenji Kida; Akinori Jyo


Journal of ion exchange | 2014

Separation of Sulfuric Acid and Monosaccharides with a Strong-Base Anion Exchange Resin Containing Polystyrenesulfonate as Polymeric Counter Ion to Reduce Tailing of Sulfuric Acid

Hirotaka Matsuura; Zhaoyong Sun; Masashi Yanase; Toshihiro Ihara; Kenji Kida; Akinori Jyo

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