Impacts of liver macrophages, gut microbiota, and bile acid metabolism on the differences in iHFC diet-induced MASH progression between TSNO and TSOD mice

被引:1
作者
Igarashi, Naoya [1 ]
Kasai, Kaichi [1 ]
Tada, Yuki [1 ]
Kani, Koudai [1 ]
Kato, Miyuna [1 ]
Takano, Shun [1 ]
Goto, Kana [1 ]
Matsuura, Yudai [1 ]
Ichimura-Shimizu, Mayuko [2 ]
Watanabe, Shiro [3 ]
Tsuneyama, Koichi [2 ]
Furusawa, Yukihiro [1 ]
Nagai, Yoshinori [1 ]
机构
[1] Toyama Prefectural Univ, Fac Engn, Dept Pharmaceut Engn, 5180 Kurokawa, Imizu, Toyama 9390398, Japan
[2] Tokushima Univ, Grad Sch Biomed Sci, Dept Pathol & Lab Med, 3-8-15 Kuramoto Cho, Tokushima 7708503, Japan
[3] Univ Toyama, Inst Nat Med, 2630 Sugitani, Toyama 9300194, Japan
基金
日本学术振兴会;
关键词
Metabolic dysfunction associated steatohepatitis; Fibrosis; Macrophage; Gut microbiota; Akkermansia muciniphila; Bile acid; OBESE-DIABETIC MOUSE; FATTY LIVER; NONALCOHOLIC STEATOHEPATITIS; MODEL; INFLAMMATION; DISEASE; IMAGE; NASH; TGR5;
D O I
10.1007/s00011-024-01884-7
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
BackgroundTsumura-Suzuki non-obese (TSNO) mice exhibit a severe form of metabolic dysfunction-associated steatohepatitis (MASH) with advanced liver fibrosis upon feeding a high-fat/cholesterol/cholate-based (iHFC) diet. Another ddY strain, Tsumura-Suzuki diabetes obese (TSOD) mice, are impaired in the progression of iHFC diet-induced MASH.AimTo elucidate the underlying mechanisms contributing to the differences in MASH progression between TSNO and TSOD mice.MethodsWe analyzed differences in the immune system, gut microbiota, and bile acid metabolism in TSNO and TSOD mice fed with a normal diet (ND) or an iHFC diet.ResultsTSOD mice had more anti-inflammatory macrophages in the liver than TSNO mice under ND feeding, and were impaired in the iHFC diet-induced accumulation of fibrosis-associated macrophages and formation of histological hepatic crown-like structures in the liver. The gut microbiota of TSOD mice also exhibited a distinct community composition with lower diversity and higher abundance of Akkermansia muciniphila compared with that in TSNO mice. Finally, TSOD mice had lower levels of bile acids linked to intestinal barrier disruption under iHFC feeding.ConclusionsThe dynamics of liver macrophage subsets, and the compositions of the gut microbiota and bile acids at steady state and post-onset of MASH, had major impacts on MASH development.
引用
收藏
页码:1081 / 1098
页数:18
相关论文
共 56 条
  • [1] Akkermansia muciniphila-Derived Extracellular Vesicles as a Mucosal Delivery Vector for Amelioration of Obesity in Mice
    Ashrafian, Fatemeh
    Shahriary, Arefeh
    Behrouzi, Ava
    Moradi, Hamid Reza
    Raftar, Shahrbanoo Keshavarz Azizi
    Lari, Arezou
    Hadifar, Shima
    Yaghoubfar, Rezvan
    Badi, Sara Ahmadi
    Khatami, Shohre
    Vaziri, Farzam
    Siadat, Seyed Davar
    [J]. FRONTIERS IN MICROBIOLOGY, 2019, 10
  • [2] Metformin prevents ischemia reperfusion-induced oxidative stress in the fatty liver by attenuation of reactive oxygen species formation
    Cahova, Monika
    Palenickova, Eliska
    Dankova, Helena
    Sticova, Eva
    Burian, Martin
    Drahota, Zdenek
    Cervinkova, Zuzana
    Kucera, Otto
    Gladkova, Christina
    Stopka, Pavel
    Krizova, Jana
    Papackova, Zuzana
    Oliyarnyk, Olena
    Kazdova, Ludmila
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY-GASTROINTESTINAL AND LIVER PHYSIOLOGY, 2015, 309 (02): : G100 - G111
  • [3] Akkermansia muciniphila-derived extracellular vesicles influence gut permeability through the regulation of tight junctions
    Chelakkot, Chaithanya
    Choi, Youngwoo
    Kim, Dae-Kyum
    Park, Hyun T.
    Ghim, Jaewang
    Kwon, Yonghoon
    Jeon, Jinseong
    Kim, Min-Seon
    Jee, Young-Koo
    Gho, Yong S.
    Park, Hae-Sim
    Kim, Yoon-Keun
    Ryu, Sung H.
    [J]. EXPERIMENTAL AND MOLECULAR MEDICINE, 2018, 50 : e450 - e450
  • [4] Chudan S, 2023, FOOD FUNCT, V14, P2188, DOI [10.1039/d2fo03396h, 10.1039/D2FO03396H]
  • [5] Dysbiosis Contributes to Fibrogenesis in the Course of Chronic Liver Injury in Mice
    De Minicis, Samuele
    Rychlicki, Chiara
    Agostinelli, Laura
    Saccomanno, Stefania
    Candelaresi, Cinzia
    Trozzi, Luciano
    Mingarelli, Eleonora
    Facinelli, Bruna
    Magi, Gloria
    Palmieri, Claudio
    Marzioni, Marco
    Benedetti, Antonio
    Svegliati-Baroni, Gianluca
    [J]. HEPATOLOGY, 2014, 59 (05) : 1738 - 1749
  • [6] Regulatory Mechanisms for Adipose Tissue M1 and M2 Macrophages in Diet-Induced Obese Mice
    Fujisaka, Shiho
    Usui, Isao
    Bukhari, Agussalim
    Ikutani, Masashi
    Oya, Takeshi
    Kanatani, Yukiko
    Tsuneyama, Koichi
    Nagai, Yoshinori
    Takatsu, Kiyoshi
    Urakaze, Masaharu
    Kobayashi, Masashi
    Tobe, Kazuyuki
    [J]. DIABETES, 2009, 58 (11) : 2574 - 2582
  • [7] Ursodeoxycholic Acid Suppresses Lipogenesis in Mouse Liver: Possible Role of the Decrease in β-Muricholic Acid, a Farnesoid X Receptor Antagonist
    Fujita, Kyosuke
    Iguchi, Yusuke
    Une, Mizuho
    Watanabe, Shiro
    [J]. LIPIDS, 2017, 52 (04) : 335 - 344
  • [8] Akkermansia muciniphila inhibits nonalcoholic steatohepatitis by orchestrating TLR2-activated?dT17 cell and macrophage polarization
    Han, Yuqiu
    Ling, Qi
    Wu, Li
    Wang, Xiaosen
    Wang, Zhifei
    Chen, Jun
    Zheng, Zhipeng
    Zhou, Ziyuan
    Jia, Longfei
    Li, Lanjuan
    Wang, Baohong
    [J]. GUT MICROBES, 2023, 15 (01)
  • [9] Role of Akkermansia muciniphila in the development of nonalcoholic fatty liver disease: current knowledge and perspectives
    Han, Yuqiu
    Li, Lanjuan
    Wang, Baohong
    [J]. FRONTIERS OF MEDICINE, 2022, 16 (05) : 667 - 685
  • [10] GUTS AND GALL: BILE ACIDS IN REGULATION OF INTESTINAL EPITHELIAL FUNCTION IN HEALTH AND DISEASE
    Hegyi, Peter
    Maleth, Joszef
    Walters, Julian R.
    Hofmann, Alan F.
    Keely, Stephen J.
    [J]. PHYSIOLOGICAL REVIEWS, 2018, 98 (04) : 1983 - 2023