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Takayuki Matsumura

Explore the profile of Takayuki Matsumura including associated specialties, affiliations and a list of published articles. Areas
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Articles 43
Citations 832
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Recent Articles
11.
Kotaki R, Adachi Y, Moriyama S, Onodera T, Fukushi S, Nagakura T, et al.
Sci Immunol . 2022 Feb; 7(70):eabn8590. PMID: 35113654
Multiple SARS-CoV-2 variants have mutations in the spike receptor binding domain (RBD) with potential to evade neutralizing antibody. In particular, the Beta and Omicron variants escape from antibody neutralizing activity...
12.
Lu X, Hosono Y, Nagae M, Ishizuka S, Ishikawa E, Motooka D, et al.
J Exp Med . 2021 Oct; 218(12). PMID: 34647971
Adaptive immunity is a fundamental component in controlling COVID-19. In this process, follicular helper T (Tfh) cells are a subset of CD4+ T cells that mediate the production of protective...
13.
Miki S, Sasaki H, Horiuchi H, Miyata N, Yoshimura Y, Miyazaki K, et al.
PLoS One . 2021 Jul; 16(7):e0254640. PMID: 34255796
Background: This study aimed to clarify how SARS-CoV-2 RNAemia is related to COVID-19 critical condition development and mortality in comparison with other predictive markers and scoring systems. Methods: This is...
14.
Moriyama S, Adachi Y, Sato T, Tonouchi K, Sun L, Fukushi S, et al.
Immunity . 2021 Jul; 54(8):1841-1852.e4. PMID: 34246326
Antibody titers against SARS-CoV-2 slowly wane over time. Here, we examined how time affects antibody potency. To assess the impact of antibody maturation on durable neutralizing activity against original SARS-CoV-2...
15.
Anzurez A, Naka I, Miki S, Nakayama-Hosoya K, Isshiki M, Watanabe Y, et al.
HLA . 2021 Mar; 98(1):37-42. PMID: 33734601
HLA-A, -C, -B, and -DRB1 genotypes were analyzed in 178 Japanese COVID-19 patients to investigate the association of HLA with severe COVID-19. Analysis of 32 common HLA alleles at four...
16.
Takano T, Matsumura T, Adachi Y, Terahara K, Moriyama S, Onodera T, et al.
Int Immunol . 2021 Feb; 33(4):241-247. PMID: 33538817
An expanded myeloid cell compartment is a hallmark of severe coronavirus disease 2019 (COVID-19). However, data regarding myeloid cell expansion have been collected in Europe, where the mortality rate by...
17.
Han K, Song H, Choi C, Park S, Kang Y, Jung K, et al.
Toxicol Res . 2020 Oct; 36(4):407-413. PMID: 33005597
In 2017, the second national reference standard (NRS) for Gloydius snake venom was established to replace the first NRS for Gloydius snake venom. In connection with the second venom NRS,...
18.
Matsumura T, Nishiyama A, Aiko M, Ainai A, Ikebe T, Chiba J, et al.
BMC Res Notes . 2020 Sep; 13(1):419. PMID: 32891180
Objective: Streptococcus pyogenes (Group A Streptococcus; GAS) causes a variety of infections that include life-threatening, severe invasive GAS infections, such as streptococcal toxic shock syndrome (STSS), with > 30% mortality...
19.
Nithichanon A, Chetchotisakd P, Matsumura T, Takahashi Y, Ato M, Sakagami T, et al.
Sci Rep . 2020 Jun; 10(1):8968. PMID: 32488051
The anti-interferon-gamma (IFN-gamma) autoantibody is a known cause of opportunistic non-tuberculous mycobacterial (NTM) infection in adults. Diagnosis of those patients is difficult due to the low sensitivity of bacterial culture,...
20.
Yamamoto M, Abe C, Wakinaga S, Sakane K, Yumiketa Y, Taguchi Y, et al.
Commun Biol . 2019 Aug; 2:292. PMID: 31396572
Receptor activator of nuclear factor (NF)-κB (RANK) signaling promotes pregnancy-dependent epithelial cell differentiation and expansion for mammary gland development, which requires NF-κB pathway-dependent Cyclin D1 induction and inhibitor of DNA...