Masato Tsuda
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Explore the profile of Masato Tsuda including associated specialties, affiliations and a list of published articles.
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28
Citations
411
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Recent Articles
1.
Toyoda M, Miura Y, Kobayashi M, Tsuda M, Nomoto T, Honda Y, et al.
Biomacromolecules
. 2024 Oct;
25(12):7788-7798.
PMID: 39481019
Polyzwitterions that show the alternation of net charge in response to external stimuli have attracted great attention as a new class of surface-polymers on nanomedicines. However, the correlation between their...
2.
Hamade H, Tsuda M, Oshima N, Stamps D, Wong M, Stamps J, et al.
Front Immunol
. 2024 Oct;
15:1465175.
PMID: 39464882
Introduction: The maintenance of intestinal homeostasis depends on a complex interaction between the immune system, intestinal epithelial barrier, and microbiota. Alteration in one of these components could lead to the...
3.
Tsuda M, Morita T, Morita Y, Takaya J, Nakamura H
Adv Sci (Weinh)
. 2023 Dec;
11(10):e2307563.
PMID: 38148471
The nitrogen-heteroatom single bonds of 1,2-azoles and isoxazolines underwent methylene insertion in the presence of CH I (6 equiv.) and diethylzinc (3 equiv.) to produce a wide variety of the...
4.
Morita T, Makino K, Tsuda M, Nakamura H
Org Lett
. 2023 Dec;
25(49):8901-8905.
PMID: 38047626
Chemoselective α-acylation of tertiary amides proceeded with highly electrophilic acid anhydrides and weak bases under mild conditions. β-Ketoamides containing trifluoroacetyl or perfluoroacyl groups were selectively obtained even in the presence...
5.
Zhang L, Zhang Y, Wang R, Liu X, Zhao J, Tsuda M, et al.
Front Cell Infect Microbiol
. 2023 Feb;
12:1035711.
PMID: 36825215
SARS-CoV-2 causes a spectrum of clinical symptoms from respiratory damage to gastrointestinal disorders. Intestinal infection of SARS-CoV-2 triggers immune response. However, the cellular mechanism that how SARS-CoV-2 initiates and induces...
6.
Osada K, Kujirai R, Hosono A, Tsuda M, Ohata M, Ohta T, et al.
Front Behav Neurosci
. 2023 Feb;
16:983421.
PMID: 36817409
The oxytocin receptor (OXTR) knockout mouse is a model of autism spectrum disorder, characterized by abnormalities in social and olfactory behaviors and learning. Previously, we demonstrated that OXTR plays a...
7.
Narabayashi H, Koma C, Nakata K, Ikegami M, Nakanishi Y, Ogihara J, et al.
Front Mol Biosci
. 2022 Nov;
9:1005136.
PMID: 36339704
The intestine is inhabited by a large number of commensal bacteria that are immunologically non-self, potentially causing inflammation. However, in a healthy intestine, inflammation is strictly controlled at low levels...
8.
Tsuda M, Okada H, Kojima N, Ishihama F, Muraki Y, Oguma T, et al.
J Immunol Res
. 2022 May;
2022:3974141.
PMID: 35571567
Gut-associated lymphoid tissue (GALT), such as Peyer's patches (PPs), are key inductive sites that generate IgA B cells, mainly through germinal center (GC) responses. The generation of IgA B cells...
9.
Tsuda M, Morita T, Nakamura H
Chem Commun (Camb)
. 2022 Jan;
58(12):1942-1945.
PMID: 35043788
Isoxazoloazaborines 3 and 5 have been synthesized from 4--propargylaminoisoxazole 1 gold(I)-catalyzed propargyl aza-Claisen rearrangement followed by electrophilic borylative cyclization in 27-86% yields. generation of isoxazole 2 having an amino group...
10.
Tsuda M, Morita T, Fukuhara S, Nakamura H
Org Biomol Chem
. 2021 Jan;
19(6):1358-1364.
PMID: 33475653
Propargyl aza-Claisen rearrangement of 4-propargylaminoisoxazoles 1 proceeded in the presence of cationic gold(i) catalysts to give 4-amino-5-allenylisoxazoles 2 in good to high yields. The silyl group at the terminal alkyne...