Kenichi Matsubara
Overview
Explore the profile of Kenichi Matsubara including associated specialties, affiliations and a list of published articles.
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50
Citations
1783
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Recent Articles
1.
Nasti A, Okumura M, Takeshita Y, Ho T, Sakai Y, Sato T, et al.
Diabetes Res Clin Pract
. 2024 Jan;
208:111090.
PMID: 38216088
Aims: Diabetes onset is difficult to predict. Since decreased insulinogenic index (IGI) is observed in prediabetes, and blood gene expression correlates with insulin secretion, candidate biomarkers can be identified. Methods:...
2.
Sakai Y, Nasti A, Takeshita Y, Okumura M, Kitajima S, Honda M, et al.
Sci Rep
. 2021 Aug;
11(1):16564.
PMID: 34400700
Blood circulates throughout the body via the peripheral tissues, contributes to host homeostasis and maintains normal physiological functions, in addition to responding to lesions. Previously, we revealed that gene expression...
3.
Nakamura S, Suzuki K, Iijima H, Hata Y, Lim C, Ishizawa Y, et al.
Arthritis Res Ther
. 2016 Jul;
18:159.
PMID: 27435242
Background: According to EULAR recommendations, biologic DMARDs (bDMARDs) such as tumor necrosis factor inhibitor, tocilizumab (TCZ), and abatacept (ABT) are in parallel when prescribing to rheumatoid arthritis (RA) patients who...
4.
Narahara M, Higasa K, Nakamura S, Tabara Y, Kawaguchi T, Ishii M, et al.
PLoS One
. 2014 Jun;
9(6):e100924.
PMID: 24956270
Profiles of sequence variants that influence gene transcription are very important for understanding mechanisms that affect phenotypic variation and disease susceptibility. Using genotypes at 1.4 million SNPs and a comprehensive...
5.
Nakata S, Imagawa A, Miyata Y, Yoshikawa A, Kozawa J, Okita K, et al.
Immunol Lett
. 2013 Nov;
156(1-2):149-55.
PMID: 24177169
Fulminant type 1 diabetes is an independent subtype of type 1 diabetes characterized by extremely rapid onset and absence of islet-related autoantibodies. However, detailed pathophysiology of this subtype is poorly...
6.
Maeda K, Okubo K, Shimomura I, Funahashi T, Matsuzawa Y, Matsubara K
Biochem Biophys Res Commun
. 2012 Aug;
425(3):556-9.
PMID: 22925673
No abstract available.
7.
Ueda Y, Ikushima S, Sugiyama M, Matoba R, Kaneko Y, Matsubara K, et al.
J Biosci Bioeng
. 2012 Mar;
113(6):675-82.
PMID: 22382015
A highly efficient technique, termed PCR-mediated chromosome splitting (PCS), was used to create cells containing a variety of genomic constitutions in a haploid strain of Saccharomyces cerevisiae. Using PCS, we...
8.
Nakamura S, Kawai K, Takeshita Y, Honda M, Takamura T, Kaneko S, et al.
Biochem Biophys Res Commun
. 2012 Jan;
418(2):313-8.
PMID: 22266314
Immunological changes that inevitably occur with aging are related to the onset of various diseases including autoimmune diseases, immunodeficiency, as well as other age-reflecting (AR) diseases. They are becoming serious...
9.
Sasaki H, Emi M, Iijima H, Ito N, Sato H, Yabe I, et al.
Mol Brain
. 2011 Jun;
4:24.
PMID: 21658278
Background: Multiple system atrophy (MSA) is a sporadic disease. Its pathogenesis may involve multiple genetic and nongenetic factors, but its etiology remains largely unknown. We hypothesized that the genome of...
10.
Kato T, Emi M, Sato H, Arawaka S, Wada M, Kawanami T, et al.
Biochem Biophys Res Commun
. 2010 Oct;
402(2):438-42.
PMID: 20955688
Aims: Sporadic amyotrophic lateral sclerosis (SALS) seems to be a multifactorial disease, the pathogenesis of which may involve both genetic and environmental factors. The present study aims at identifying a...