研究者業績

桑原 政成

Masanari Kuwabara

基本情報

所属
自治医科大学 地域医療学センター 公衆衛生学 兼 循環器内科 准教授
学位
博士(再生医科学)(2014年9月 鳥取大学)
博士(医学)(2017年12月 自治医科大学)

研究者番号
20728290
ORCID ID
 https://orcid.org/0000-0002-6601-4347
J-GLOBAL ID
202101018594124537
researchmap会員ID
R000016170

受賞

 35

論文

 237
  • Tsukasa Murakami, Keisuke Kojima, Masanori Takenoya, Kentaro Jujo, Ryusuke Ae, Masanari Kuwabara
    Nutrients 2026年2月13日  
  • Masanari Kuwabara, Michihiro Satoh, Kei Asayama
    Hypertension research : official journal of the Japanese Society of Hypertension 2025年11月27日  
  • Ana Andres-Hernando, David J. Orlicky, Gabriela E. Garcia, Esteban C. Loetz, Richard Montoya, Vijay Kumar, Devin P. Effinger, Masanari Kuwabara, So Young Bae, Laura Lorenzo-Rebenaque, Elena Fauste, Richard L. Bell, Nicholas Grahame, Suthat Liangpunsakul, Hahn Kim, Sundeep Dugar, Paul Maffuid, Takahiko Nakagawa, Michael F. Wempe, J. Mark Petrash, Dean R. Tolan, Sondra T. Bland, Richard J. Johnson, Miguel A. Lanaspa
    Nature Metabolism 7(11) 2250-2267 2025年11月10日  
    Alcohol and sugar share reinforcing properties and both contribute to liver disease progression, ultimately leading to cirrhosis. Emerging evidence suggests that ethanol activates the aldose reductase pathway, resulting in endogenous fructose production. Here we investigated whether alcohol preference and alcohol-associated liver disease (ALD) are mediated through fructose metabolism by ketohexokinase (KHK)-A/C. Using global, conditional and tissue-specific KHK-A/C knockout mice, we assessed ethanol intake, reinforcement behaviours and liver injury. Ethanol consumption increased portal vein osmolality and activated the polyol pathway in the liver and intestine, leading to fructose production metabolized by KHK-A/C. Mice lacking KHK-A/C showed reduced ethanol preference across multiple paradigms, including two-bottle choice, conditioned place preference and operant self-administration, alongside decreased ∆FosB expression in the nucleus accumbens. Both genetic deletion and pharmacologic inhibition of KHK-A/C suppressed ethanol intake. Hepatocyte-specific KHK-A/C knockout mice displayed partially reduced alcohol consumption, potentially linked to altered aldehyde dehydrogenase expression, while intestinal KHK-A/C deletion restored glucagon-like peptide-1 levels-a hormone known to suppress alcohol intake. Under ethanol pair-matched conditions, global and liver-specific KHK-A/C knockout mice were protected from ALD, with marked reductions in hepatic steatosis, inflammation and fibrosis. These findings identify ethanol-induced fructose metabolism as a key driver of excessive alcohol consumption and ALD pathogenesis. Given that ALD and metabolic dysfunction-associated steatotic liver disease share fructose-dependent mechanisms, targeting fructose metabolism may offer a novel therapeutic approach for treating alcohol use disorder and related liver injury.
  • Takahiro Nakashima, Toru Kondo, Jun Nakata, Keita Saku, Shoji Kawakami, Masanari Kuwabara, Takeshi Yamamoto, Migaku Kikuchi, Ichiro Takeuchi, Kuniya Asai, Naoki Sato
    Journal of intensive care 13(1) 50-50 2025年9月30日  
  • Yoko Omura-Ohata, Cheol Son, Hisashi Makino, Ryo Koezuka, Mayu Tochiya, Masaki Matsubara, Kyoko Honda-Kohmo, Tamiko Tamanaha, Michio Noguchi, Tsutomu Tomita, Yukako Tatsumi, Masanari Kuwabara, Keita Watanabe, Ikuo Kimura, Kiminori Hosoda, Yoshihiro Miyamoto, Satoshi Yasuda
    Diabetes research and clinical practice 229 112915-112915 2025年9月25日  
    AIM: Gut microbiota dysbiosis causes atherosclerosis. Patients with atherosclerosis and type 2 diabetes mellitus (T2D) often have low Bacteroides abundance, potentially increasing atherosclerosis risk. This study investigated the association between low Bacteroides abundance and endothelial dysfunction in patients with T2D. METHODS: The relationship between the relative Bacteroides abundance in fecal gut microbiota, assessed by 16S ribosomal RNA analysis, and the reactive hyperemia index (RHI) was investigated in 93 patients with T2D (68 men and 25 women). Clinical parameters, including plasma short-chain fatty acids and inflammatory markers, were also examined. Heatmap analysis compared lower Bacteroides group vs. upper Bacteroides group. RESULTS: Natural log-transformed RHI (Ln-RHI) was positively correlated with Ln-relative Bacteroides abundance (p < 0.05). The low Bacteroides group had a considerably lower Ln-RHI than the high group (p = 0.038). Plasma acetate content was correlated with relative Bacteroides abundance (p = 0.036) but not with Ln-RHI content. The low Bacteroides group tended to have higher high-sensitivity C-reactive protein levels than the high group (p = 0.069). No other bacterial differences between the groups were associated with the RHI. CONCLUSIONS: Low Bacteroides abundance is associated with low RHI and may be associated with the risk of atherosclerosis in patients with T2D.

MISC

 288

担当経験のある科目(授業)

 11

所属学協会

 28

共同研究・競争的資金等の研究課題

 5