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ID 118313
Title Alternative
キサンチンオキシダーゼ阻害薬febuxostatはNrf2を活性化し脂肪細胞分化を抑制する
Author
Higa, Yoshiki Tokushima University
Nakaue, Emiko Tokushima University
Tanaka, Mariko Tokushima University
Kim, Sooha Tokushima University
Nakagawa, Motosumi Tokushima University
Tanimoto, Kotaro Tokushima University
Oda, Asuka Tokushima University
Maruhashi, Tomoko Tokushima University
Keywords
obesity
adipocytic differentiation
reactive oxygen species (ROS)
xanthine oxidoreductase (XOR)
febuxostat
Nrf2
Keap1
Content Type
Thesis or Dissertation
Description
Xanthine oxidoreductase (XOR) is a rate-limiting enzyme in purine catabolism that acts as a novel regulator of adipogenesis. In pathological states, xanthine oxidoreductase activity increases to produce excess reactive oxygen species (ROS). The nuclear factor erythroid 2-related factor 2 (Nrf2) is a critical inducer of antioxidants, which is bound and repressed by a kelch-like ECH-associated protein 1 (Keap1) in the cytoplasm. The Keap1-Nrf2 axis appears to be a major mechanism for robust inducible antioxidant defenses. Here, we demonstrate that febuxostat, a xanthine oxidase inhibitor, alleviates the increase in adipose tissue mass in obese mouse models with a high-fat diet or ovariectomy. Febuxostat disrupts in vitro adipocytic differentiation in adipogenic media. Adipocytes appeared at day 7 in absence or presence of febuxostat were 160.8 ± 21.2 vs. 52.5 ± 12.7 (p < 0.01) in 3T3–L1 cells, and 126.0 ± 18.7 vs. 55.3 ± 13.4 (p < 0.01) in 10T1/2 cells, respectively. Adipocyte differentiation was further enhanced by the addition of hydrogen peroxide, which was also suppressed by febuxostat. Interestingly, febuxostat, but not allopurinol (another xanthine oxidase inhibitor), rapidly induced the nuclear translocation of Nrf2 and facilitated the degradation of Keap1, similar to the electrophilic Nrf2 activator omaveloxolone. These results suggest that febuxostat alleviates adipogenesis under oxidative conditions, at least in part by suppressing ROS production and Nrf2 activation. Regulation of adipocytic differentiation by febuxostat is expected to inhibit obesity due to menopause or overeating.
Journal Title
Antioxidants
ISSN
20763921
Publisher
MDPI
Volume
12
Issue
1
Start Page
133
Published Date
2023-01-05
Remark
内容要旨・審査要旨・論文本文の公開
本論文は,著者Yoshiki Higaの学位論文として提出され,学位審査・授与の対象となっている。
Rights
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
EDB ID
DOI (Published Version)
URL ( Publisher's Version )
FullText File
language
eng
TextVersion
ETD
MEXT report number
甲第3713号
Diploma Number
甲口第492号
Granted Date
2023-03-23
Degree Name
Doctor of Dental Science
Grantor
Tokushima University
departments
Oral Sciences
University Hospital
Medical Sciences
Institute of Advanced Medical Sciences