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Koji Matsuoka

Explore the profile of Koji Matsuoka including associated specialties, affiliations and a list of published articles. Areas
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Articles 88
Citations 600
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Recent Articles
1.
Fukuhara S, Ohmori H, Matsumoto T, Takei D, Matsuoka K, Takemoto M, et al.
Biosci Microbiota Food Health . 2025 Jan; 44(1):26-31. PMID: 39764494
In end-stage kidney disease requiring hemodialysis, patients at nutritional risk have a poor prognosis. The gut microbiota is important for maintaining the nutritional status of patients. However, it remains unclear...
2.
Tajuddin A, Ohto T, Tanimoto H, Fujita T, Jeong S, Fukazawa A, et al.
ChemSusChem . 2024 Aug; 18(2):e202401071. PMID: 39166717
The direct one-step hydrogenation of toluene to methylcyclohexane facilitated by a proton-exchange membrane water electrolyzer driven by renewable energy has garnered considerable attention for stable hydrogen storage and safe hydrogen...
3.
Miyairi K, Arai H, Matsushita T, Koyama T, Hatano K, Matsuoka K
Biomacromolecules . 2024 Aug; 25(8):5222-5232. PMID: 39089682
Fluorogenic glycomonomers have been used for biological evaluations, and water-soluble and Förster resonance energy transfer (FRET)-sensitive glycopolymers have also been reported. A FRET-sensitive polymer was conveniently prepared from a fluorogenic...
4.
Nakada J, Matsushita T, Koyama T, Hatano K, Matsuoka K
Bioorg Med Chem Lett . 2024 Jan; 99:129616. PMID: 38216097
Fischer's glycoside synthesis was applied to linker precursor alcohols of two different lengths having appropriate alkane chains to obtain the corresponding α-glycoside and it was found to be applicable with...
5.
Ishimaru Y, Moteki T, Suzuki M, Koyama T, Matsushita T, Hatano K, et al.
ACS Omega . 2023 Oct; 8(40):37451-37460. PMID: 37841131
A known tetraphenyl porphyrin (TPP) having an amino functional group [5-(4-aminophenyl)-10,15,20-(triphenyl)porphyrin] was converted into the corresponding monomer by means of condensation with acryloyl chloride. Simple radical polymerization of the porphyrin...
6.
Matsushita T, Nozaki M, Sunaga M, Koyama T, Hatano K, Matsuoka K
ACS Omega . 2023 Oct; 8(40):37329-37340. PMID: 37841120
Glycomonomers having -glycosidic linkages were prepared from a known glycosyl amine, -acetyl-d-glucosamine (GlcNAc). Radical polymerization of the glycomonomers gave a series of glycopolymers displaying various sugar densities, which were models...
7.
Matsushita T, Yamochi H, Omiya S, Koyama T, Hatano K, Matsuoka K
Bioorg Med Chem . 2023 Jul; 92:117422. PMID: 37523791
Polyacrylamides with various compositions of serine, aspartic acid, and histidine, which are the amino acids involved in the catalytic triad of natural serine protease chymotrypsin, were synthesized and their protein...
8.
Adachi R, Matsushita T, Koyama T, Hatano K, Matsuoka K
Polymers (Basel) . 2023 Feb; 15(4). PMID: 36850281
A polymerizable alcohol having 9 PEG repeats was prepared in order to mimic an oligosaccharide moiety. Sialyl α(2→3) lactose, which is known as a sugar moiety of GM3 ganglioside, was...
9.
Adachi R, Matsushita T, Koyama T, Hatano K, Matsuoka K
Bioorg Med Chem . 2023 Feb; 81:117209. PMID: 36787684
Glycopolymers having sialyl α2-3 lactose moieties via longer spacer arms were systematically prepared from the corresponding glycomonomers. Radical polymerization of glycomonomers gave a series of glycopolymers displaying various sugar densities....
10.
Tajuddin A, Wakisaka M, Ohto T, Yu Y, Fukushima H, Tanimoto H, et al.
Adv Mater . 2022 Oct; 35(3):e2207466. PMID: 36271728
To realize a sustainable hydrogen economy, corrosion-resistant non-noble-metal catalysts are needed to replace noble-metal-based catalysts. The combination of passivation elements and catalytically active elements is crucial for simultaneously achieving high...