» Authors » Noritoshi Kitamoto

Noritoshi Kitamoto

Explore the profile of Noritoshi Kitamoto including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 35
Citations 445
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Nakamura T, Hirakawa M, Nakamura Y, Ishisaka A, Kitamoto N, Murakami A, et al.
Chem Res Toxicol . 2019 Feb; 32(4):638-644. PMID: 30735032
Benzyl isothiocyanate (BITC), a dietary isothiocyanate (ITC) derived from cruciferous vegetables, has anticancer properties. It is believed that the ITC moiety (-N═C═S) that reacts predominantly with thiol compounds plays a...
2.
Suga N, Murakami A, Nakamura Y, Ishisaka A, Kitamoto N, Ito M, et al.
Free Radic Res . 2017 May; 51(5):545-553. PMID: 28503967
Serotonin (5-hydroxytryptamine) is a putative substrate for myeloperoxidase, which may convert it into the reactive quinone tryptamine-4,5-dione (TD). In this study, we found that the viability of human SH-SY5Y neuroblastoma...
3.
Ishisaka A, Ikushiro S, Takeuchi M, Araki Y, Juri M, Yoshiki Y, et al.
Mol Nutr Food Res . 2017 Apr; 61(9). PMID: 28444960
Scope: Manuka honey, which shows strong nonperoxide-dependent antibacterial activity, contains unique components, such as methyl syringate 4-O-β-D-gentiobioside (leptosperin) and its aglycone, methyl syringate (MSYR). To determine the potential for biological...
4.
Kato Y, Oki K, Suga N, Ono S, Ishisaka A, Miura Y, et al.
Free Radic Biol Med . 2016 Nov; 101:500-510. PMID: 27856348
The modification of 5-hydroxyindoleacetic acid (5HIAA) by myeloperoxidase with a xanthine oxidase system was investigated by chromatographic analyses. Two major products were identified as a dimer and quinone (indoleacetate dione)...
5.
Takemura K, Adegoke O, Takahashi N, Kato T, Li T, Kitamoto N, et al.
Biosens Bioelectron . 2016 Nov; 89(Pt 2):998-1005. PMID: 27825520
Flu infection, caused by the influenza virus, constitutes a serious threat to human lives worldwide. A rapid, sensitive and specific diagnosis is urgently needed for point-of-care treatment and to control...
6.
Ahmed S, Takemeura K, Li T, Kitamoto N, Tanaka T, Suzuki T, et al.
Biosens Bioelectron . 2016 Sep; 87:558-565. PMID: 27611475
A hybrid structure of graphene-gold nanoparticles (Grp-Au NPs) was designed as a new nanoprobe for colorimetric immunoassays. This hybrid structure was prepared using chloroauric acid, sodium formate and Grp flakes...
7.
Kato Y, Fujinaka R, Juri M, Yoshiki Y, Ishisaka A, Kitamoto N, et al.
J Agric Food Chem . 2016 Aug; 64(33):6495-501. PMID: 27477590
Syringic acid is one of the key skeletal structures of plant-derived chemicals. The derivatives of syringic acid have certain biological functions. In this study, a monoclonal antibody to syringic acid-based...
8.
Nitta Y, Yasukata F, Kitamoto N, Ito M, Sakaue M, Kikuzaki H, et al.
J Food Prot . 2016 Mar; 79(3):463-7. PMID: 26939657
Filipendula ulmaria, also known as meadowsweet, is an herb; its extract was examined for the prevention of histamine production, primarily that caused by contaminated fish. The efficacy of meadowsweet was...
9.
Kato Y, Araki Y, Juri M, Ishisaka A, Nitta Y, Niwa T, et al.
Food Chem . 2015 Oct; 194:362-5. PMID: 26471566
Manuka honey is known as one of the premium honeys because of its unique property: a potent antibacterial activity. Leptosperin, methyl syringate 4-O-β-d-gentiobioside, has been specifically identified in manuka honey....
10.
Kato Y, Ono S, Kitamoto N, Kettle A
Redox Biol . 2014 Dec; 2:983-90. PMID: 25460734
Serotonin, 5-hydroxytryptamine, is a systemic bioactive amine that acts in the gut and brain. As a substrate of myeloperoxidase in vitro, serotonin is oxidized to tryptamine-4,5-dione (TD), which is highly...