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"Dysbiosis"

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COVID-19

Citations

Citations to this article as recorded by  Crossref logo
  • Reply to correspondence on “Long-term gastrointestinal and hepatobiliary outcomes of COVID-19: A multinational population-based cohort study from South Korea, Japan, and the UK”
    Yang-Hyun Baek
    Clinical and Molecular Hepatology.2025; 31(1): e123.     CrossRef
  • Correspondence to editorial on “Long-term gastrointestinal and hepatobiliary outcomes of COVID-19: a multinational population-based cohort study from South Korea, Japan, and the UK”
    Kwanjoo Lee, Jaeyu Park, Jinseok Lee, Hayeon Lee, Yeonjung Ha, Dong Keon Yon
    Clinical and Molecular Hepatology.2025; 31(1): e87.     CrossRef
  • 6,773 View
  • 44 Download
  • 2 Web of Science
  • Crossref

Reviews

Steatotic liver disease

Immunological mechanisms in steatotic liver diseases: An overview and clinical perspectives
Mengyao Yan, Shuli Man, Long Ma, Lanping Guo, Luqi Huang, Wenyuan Gao
Clin Mol Hepatol 2024;30(4):620-648.
Published online July 11, 2024
DOI: https://doi.org/10.3350/cmh.2024.0315
Steatotic liver diseases (SLD) are the principal worldwide cause of cirrhosis and end-stage liver cancer, affecting nearly a quarter of the global population. SLD includes metabolic dysfunction-associated alcoholic liver disease (MetALD) and metabolic dysfunction-associated steatotic liver disease (MASLD), resulting in asymptomatic liver steatosis, fibrosis, cirrhosis and associated complications. The immune processes include gut dysbiosis, adiposeliver organ crosstalk, hepatocyte death and immune cell-mediated inflammatory processes. Notably, various immune cells such as B cells, plasma cells, dendritic cells, conventional CD4+ and CD8+ T cells, innate-like T cells, platelets, neutrophils and macrophages play vital roles in the development of MetALD and MASLD. Immunological modulations targeting hepatocyte death, inflammatory reactions and gut microbiome include N-acetylcysteine, selonsertib, F-652, prednisone, pentoxifylline, anakinra, JKB-121, HA35, obeticholic acid, probiotics, prebiotics, antibiotics and fecal microbiota transplantation. Understanding the immunological mechanisms underlying SLD is crucial for advancing clinical therapeutic strategies.

Citations

Citations to this article as recorded by  Crossref logo
  • Immune Determinants of MASLD Progression: From Immunometabolic Reprogramming to Fibrotic Transformation
    Senping Xu, Zhaoshan Zhang, Zhongquan Zhou, Jiawei Guo
    Biology.2026; 15(2): 148.     CrossRef
  • Unveiling the distinctive gut microbiota and metabolites in liver cirrhosis and its complications: Novel diagnostic biomarkers: Editorial on “Gut microbiome and metabolome signatures in liver cirrhosis-related complications”
    Soon Kyu Lee, Jong Young Choi
    Clinical and Molecular Hepatology.2025; 31(1): 301.     CrossRef
  • Is type 2 diabetes a link between lung function and metabolic dysfunction–associated steatotic liver disease? Insights from population studies and Mendelian randomization
    Runmin Cao, Yurun Zhang, Ling Cao, Honghe Jiang
    European Journal of Gastroenterology & Hepatology.2025; 37(5): 652.     CrossRef
  • Prospective Hepatoprotective Actions of Novel Nano-formulations of Sildenafil and Neem Extract in Counteracting Oral Carbon Tetrachloride-induced Liver Injury in Rats
    Mahmoud S. Sabra, Essmat A. H. Allam, Madeha H. A. Darwish, Al-Hassan Mohammed Mostafa, Abeer S. Hassan, Marwa G. Gamea, Dalia Hassan, Mohamed M. Elbadr
    Journal of Pharmaceutical Innovation.2025;[Epub]     CrossRef
  • Response to the Letter to the Editor: What Is the Optimal Anti‐Diabetic Regimen Among CHB and T2DM Patients?
    Beom Kyung Kim
    Liver International.2025;[Epub]     CrossRef
  • Advances in identifying risk factors of metabolic dysfunction-associated alcohol-related liver disease
    Rui-Qi Ye, Yi-Fan Chen, Chang Ma, Xi Cheng, Wei Guo, Sha Li
    Biomedicine & Pharmacotherapy.2025; 188: 118191.     CrossRef
  • Chronic Inflammation and Immune Dysregulation in Metabolic-Dysfunction-Associated Steatotic Liver Disease Progression: From Steatosis to Hepatocellular Carcinoma
    Young-Min Jee, Jeong-Yoon Lee, Tom Ryu
    Biomedicines.2025; 13(5): 1260.     CrossRef
  • Immunopathogenic mechanisms and immunoregulatory therapies in MASLD
    Yong He, Yingfen Chen, Shengying Qian, Schalk van Der Merwe, Debanjan Dhar, David A. Brenner, Frank Tacke
    Cellular & Molecular Immunology.2025; 22(10): 1159.     CrossRef
  • Gut-Liver Axis: The Role of Intestinal Microbiota and Their Metabolites in the Progression of Metabolic Dysfunction-Associated Steatotic Liver Disease
    Chao Cui, Shuai Gao, Jingfei Shi, Kai Wang
    Gut and Liver.2025; 19(4): 479.     CrossRef
  • Association of High-Density Lipoprotein Cholesterol-Based Inflammatory Markers With MASLD and Significant Liver Fibrosis in US Adults: Insights From NHANES 2017–2020
    Shuangzhen Jia, Xiaolin Ye, Yan Kong, Zhaoxia Wang, Jie Wu
    Clinical and Translational Gastroenterology.2025; 16(8): e00873.     CrossRef
  • Soybean genistin-driven gut microbiota-derived butyrate synthesis activates the SIRT1 signaling pathway to ameliorate metabolic fatty liver
    Guohui Yi, Wanying Sun, Xueer Zhang, Zhongtao Wang, Xiaodan Yu, Canyang Zhu, Kaiwen Lin
    Free Radical Biology and Medicine.2025; 239: 336.     CrossRef
  • Understanding MASLD — from molecular pathogenesis to cardiovascular risk: A concise review for the clinical cardiologist
    Carlo Ratti, Mattia Malaguti, D'Aniello Emanuele, Antonio Bellasi, Gianluca Sanna
    Atherosclerosis.2025; 409: 120495.     CrossRef
  • Octenyl Succinic Anhydride Starch Alleviates Alcoholic Liver Disease by Modulating Gut Microbiota and Metabolism
    Chang Liu, Tangqian Liu, Rongrong Ma, Xiaohua Pan, Yaoqi Tian
    Nutrients.2025; 17(17): 2779.     CrossRef
  • Resmetirom for MASH: A Comprehensive Review of a Novel Therapeutic Frontier
    Angad Tiwari, Ashish Sharma, Harendra Kumar, Varnika Gupta, Vishal Deshpande, Jaya Sai Mupparaju, Tanisha Mishra, Hareesha Rishab Bharadwaj, Dushyant Singh Dahiya, Varun Jain
    Biomedicines.2025; 13(9): 2079.     CrossRef
  • Astragalus polysaccharides restore neutrophil functions and gut microbiota homeostasis in dairy cows with subclinical ketosis
    Shang Jiang, Li Na, Ke Zhang, Kexin Wang, Zhiyong Li, Yiqi Zhang, Yan Ren, Chao Wang, Xiancheng Feng, Yuchen Yang, Chenxi Xue, Jun Chen, Xiliang Du, Lin Lei, Wenwen Gao, Guowen Liu, Yuxiang Song, Xinwei Li
    Journal of Dairy Science.2025; 108(11): 12632.     CrossRef
  • Alcohol-Induced Oxidative Stress and Gut–Liver–Brain Crosstalk: Expanding the Paradigm from ALD to MetALD
    Jeong-Yoon Lee, Young-Min Jee, Keungmo Yang, Tom Ryu
    Antioxidants.2025; 14(10): 1196.     CrossRef
  • Paired snRNA-seq and scRNA-seq analysis of MASLD patients to identify early-stage markers for disease progression
    Suebin Park, Su-Hyeon Lee, Se-eun Han, Beom Kyung Kim, Byungjin Hwang
    Hepatology Communications.2025;[Epub]     CrossRef
  • Even Lower Alcohol Intake Might Be Harmful for East Asian Males With MASLD Spectrum
    Byungyoon Yun, Juyeon Oh, Heejoo Park, Jian Lee, Beom Kyung Kim, Jin-Ha Yoon
    Clinical Gastroenterology and Hepatology.2025;[Epub]     CrossRef
  • Metabolic dysfunction and alcohol-associated liver disease (MetALD)
    Bin Gao, Juan Pablo Arab, Suthat Liangpunsakul, Wen-Xing Ding, Gyongyi Szabo, Wajahat Mehal, Hua Wang, Yong He, Peter Stärkel, Cristina Llorente, Bernd Schnabl, Seonghwan Hwang, Schalk Vandermerwe, Yanhang Gao, Ming-Hua Zheng, Won Kim, Jacob George, Ramon
    eGastroenterology.2025; 3(4): e100319.     CrossRef
  • Pathogenesis and management of metabolic dysfunction-associated steatohepatitis-related hepatocellular carcinoma: a narrative review
    Han Ah Lee
    The Ewha Medical Journal.2024;[Epub]     CrossRef
  • The Interplay Between Depression, Probiotics, Diet, Immunometabolic Health, the Gut, and the Liver—A Secondary Analysis of the Pro-Demet Randomized Clinical Trial
    Oliwia Gawlik-Kotelnicka, Jakub Rogalski, Karolina H. Czarnecka-Chrebelska, Jacek Burzyński, Paulina Jakubowska, Anna Skowrońska, Dominik Strzelecki
    Nutrients.2024; 16(23): 4024.     CrossRef
  • Small intestinal bacterial overgrowth and metabolic dysfunction-associated steatotic liver disease
    Ziteng Wang, Wentao Tan, Jiali Huang, Qian Li, Jing Wang, Hui Su, Chunmei Guo, Hong Liu
    Frontiers in Nutrition.2024;[Epub]     CrossRef
  • Exploring the Role of Peroxisome Proliferator-Activated Receptors and Endothelial Dysfunction in Metabolic Dysfunction-Associated Steatotic Liver Disease
    Ana Paula Madariaga Traconis, Misael Uribe-Esquivel, Varenka Julieta Barbero Becerra
    Cells.2024; 13(24): 2055.     CrossRef
  • 10,527 View
  • 322 Download
  • 20 Web of Science
  • Crossref

Steatotic liver disease

The role of the gut microbiome and diet in the pathogenesis of non-alcoholic fatty liver disease
Erica Jennison, Christopher D. Byrne
Clin Mol Hepatol 2021;27(1):22-43.
Published online December 10, 2020
DOI: https://doi.org/10.3350/cmh.2020.0129
Non-alcoholic fatty liver disease (NAFLD) is the leading cause of chronic liver disease, with a prevalence that is increasing in parallel with the global rise in obesity and type 2 diabetes mellitus. The pathogenesis of NAFLD is complex and multifactorial, involving environmental, genetic and metabolic factors. The role of the diet and the gut microbiome is gaining interest as a significant factor in NAFLD pathogenesis. Dietary factors induce alterations in the composition of the gut microbiome (dysbiosis), commonly reflected by a reduction of the beneficial species and an increase in pathogenic microbiota. Due to the close relationship between the gut and liver, altering the gut microbiome can affect liver functions; promoting hepatic steatosis and inflammation. This review summarises the current evidence supporting an association between NAFLD and the gut microbiome and dietary factors. The review also explores potential underlying mechanisms underpinning these associations and whether manipulation of the gut microbiome is a potential therapeutic strategy to prevent or treat NAFLD.

Citations

Citations to this article as recorded by  Crossref logo
  • Multistrain Probiotics Alleviate Diarrhea by Modulating Microbiome-Derived Metabolites and Serotonin Pathway
    Jin-Ju Jeong, Yoo-Jeong Jin, Raja Ganesan, Hee Jin Park, Byeong Hyun Min, Min Kyo Jeong, Sang Jun Yoon, Mi Ran Choi, Satya Priya Sharma, You Jin Jang, Uigi Min, Jong-Hyun Lim, Kyeong Min Na, Jieun Choi, Sang Hak Han, Young Lim Ham, Do Yup Lee, Byung-Yong
    Probiotics and Antimicrobial Proteins.2025; 17(5): 2894.     CrossRef
  • The causal relationship of cigarette smoking to metabolic disease risk and the possible mediating role of gut microbiota
    Jingda Zhang, Lin Hou, Shanxiang Lei, Yan Li, Guogang Xu
    Ecotoxicology and Environmental Safety.2025; 290: 117522.     CrossRef
  • SMALL INTESTINAL BACTERIAL OVERGROWTH IN THE INTESTINE AND MICROBIOME ALTERATIONS AS A RISK FACTOR FOR LIPID METABOLISM DISORDERS IN PATIENTS WITH NONALCOHOLIC FATTY LIVER DISEASE
    Kh. B. Kvit, N. V. Kharchenko
    Art of Medicine.2025; : 38.     CrossRef
  • Exploration of Early Diagnostic Biomarkers for Intestinal Barrier Dysfunction in Non-Alcoholic Fatty Liver Disease
    庄巍 李
    Advances in Clinical Medicine.2025; 15(02): 315.     CrossRef
  • Synbiotic combination of fructooligosaccharides and probiotics ameliorates the metabolic dysfunction-associated steatotic liver disease
    Sang Yoon Lee, Su-Been Lee, Goo-Hyun Kwon, Seol Hee Song, Jeong Ha Park, Min Ju Kim, Jung A Eom, Kyeong Jin Lee, Sang Jun Yoon, Hyunjoon Park, Sung-Min Won, Jin-Ju Jeong, Ki-Kwang Oh, Young Lim Ham, Gwang Ho Baik, Dong Joon Kim, Satya Priya Sharma, Ki Tae
    Journal of Microbiology.2025; 63(2): e2411002.     CrossRef
  • Gut microbiome alterations in immune thrombocytopenia: a systematic review of current evidence
    Alireza Khiabani, Roohollah Mirzaee Khalilabadi, Hajar Mardani Valandani, Zahra Khoshnegah, Alireza Khanahmad, Hojat Shahraki, Najmeh Nezamabadipour, Alireza Farsinejad, Mehran Rahimlou
    Frontiers in Medicine.2025;[Epub]     CrossRef
  • The crosstalk between gut microbiota and microbiota-derived metabolites in hepatocellular carcinoma
    Sang Jun Yoon, Seul Ki Han, Tae Suk Kim, Ki Tae Suk, Dae Hee Choi, Young Don Kim, Moon Young Kim, Gab Jin Cheon, Soon Koo Baik, Dong Joon Kim
    Critical Reviews in Microbiology.2025; 51(6): 1315.     CrossRef
  • The newly proposed dietary index for gut microbiota and its association with the risk of nonalcoholic fatty liver disease: the mediating role of body mass index
    Shengnan Meng, Luonan Li, Shijie Yin, Yuxuan Zhao, Yaning Liu, Yuxi Zhang, Xiaolin Zhang, Fengxue Yu
    Diabetology & Metabolic Syndrome.2025;[Epub]     CrossRef
  • Gut microbiota and metabolomics in metabolic dysfunction-associated fatty liver disease: interaction, mechanism, and therapeutic value
    Luyu Wang, Hongtao Wang, Jian Wu, Changyi Ji, Ying Wang, Mengmeng Gu, Miaomiao Li, Hongwei Yang
    Frontiers in Cellular and Infection Microbiology.2025;[Epub]     CrossRef
  • Phocaeicola dorei ameliorates progression of steatotic liver disease by regulating bile acid, lipid, inflammation and proliferation
    Jieun Choi, Ye Rin Choi, Min Kyo Jeong, Hyun Ho Song, Jeong Seok Yu, Seol Hui Song, Jeong Ha Park, Min Ju Kim, Hyunjoon Park, Young Lim Ham, Sang Hak Han, Dong Joon Kim, Do Yup Lee, Ki Tae Suk
    Gut Microbes.2025;[Epub]     CrossRef
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    Hailong Li, Xiaoman Ye, Yayue Hu, Yingjun Wang, Yuting Ding, Ying Yang, Ruiqi Mao, Xi Wu, Huixuan Dong, Kaijun Qiu, Xiaohe Li, Honggang Zhou, Guang Yang, Fubao Zhang, Cheng Yang
    Free Radical Biology and Medicine.2025; 240: 410.     CrossRef
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    Snehanjali Puhan, Smaroki Smruti Rekha, Kartika Sahu, Tanuja Mohanty, Arka Jyoti De, Ankita Das, Palok Aich
    Discover Medicine.2025;[Epub]     CrossRef
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    Huimin Kang, Zheng Chen, Baodong Wang, Zhiyun Chen
    Frontiers in Immunology.2025;[Epub]     CrossRef
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    Fahad Alfhaid
    Advances in Human Biology.2025;[Epub]     CrossRef
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    Anastasiya Balakina, Yuliya Sidorova, Nikita Petrov, Vladimir Shipelin
    Molecules.2025; 30(18): 3791.     CrossRef
  • From liver to gut: the hidden gastrointestinal impact of pediatric metabolic dysfunction-associated steatotic liver disease
    Gianmario Forcina, Vittoria Frattolillo, Maria De Cesare, Assunta Floriano, Rosamaria Palma, Federica Casamassima, Mario Bartiromo, Pierluigi Marzuillo, Emanuele Miraglia del Giudice, Anna Di Sessa
    Expert Review of Gastroenterology & Hepatology.2025; 19(12): 1329.     CrossRef
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    Laura Sol Grinshpan, Sigal Eilat-Adar, Dana Ivancovsky-Wajcman, Revital Kariv, Michal Gillon-Keren, Shira Zelber-Sagi
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    Suraphan Panyod, Wei-Kai Wu, Meng-Yun Hu, Huai-Syuan Huang, Rou-An Chen, Yi-Hsun Chen, Ting-Chin David Shen, Chi-Tang Ho, Chun-Jen Liu, Hsiao-Li Chuang, Chi-Chang Huang, Ming-Shiang Wu, Lee-Yan Sheen, Wei-Hua Chen
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    American Journal of Gastroenterology.2024; 119(1S): S36.     CrossRef
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    Jorge Arnold, Francisco Idalsoaga, Luis Antonio Díaz, Daniel Cabrera, Francisco Barrera, Juan Pablo Arab, Marco Arrese
    Current Hepatology Reports.2024; 23(1): 204.     CrossRef
  • Gut microbiota-derived indole compounds attenuate metabolic dysfunction-associated steatotic liver disease by improving fat metabolism and inflammation
    Byeong Hyun Min, Shivani Devi, Goo Hyun Kwon, Haripriya Gupta, Jin-Ju Jeong, Satya Priya Sharma, Sung-Min Won, Ki-Kwang Oh, Sang Jun Yoon, Hee Jin Park, Jung A Eom, Min Kyo Jeong, Ji Ye Hyun, Nattan Stalin, Tae-Sik Park, Jieun Choi, Do Yup Lee, Sang Hak H
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    Davendra Ramkumar, Aileen Marty, Japhia Ramkumar, Holly Rosencranz, Radhika Vedantham, Modan Goldman, Erin Meyer, Jasia Steinmetz, Amy Weckle, Kelly Bloedorn, Carl Rosier
    One Health.2024; 18: 100734.     CrossRef
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    Hangjun Chen, Qiongmei Wu, Xingyi Chen, Xinxue Yu, Hanqing Zhao, Qiaoli Huang, Yurong Huang, Jinting Wang, Xueyi Huang, Jun Wei, Feng Wu, Xiaomin Xiao, Lijun Wang
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  • Small intestinal bacterial overgrowth in obese patients with biopsy-confirmed metabolic dysfunction-associated steatotic liver disease: a cross-sectional study
    Nicolás Ortiz-López, Ana María Madrid, Larissa Aleman, Alejandra Zazueta, Gladys Smok, Lucía Valenzuela-Pérez, Jaime Poniachik, Caroll J. Beltrán
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    Gut Pathogens.2024;[Epub]     CrossRef
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    Luis Antonio Díaz, Juan Pablo Arab, Alexandre Louvet, Ramón Bataller, Marco Arrese
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    Ruike Zhang, Ya-nan Chen, Jixia Zhang, Jing Liu
    European Journal of Gastroenterology & Hepatology.2023; 35(1): 94.     CrossRef
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    Ming Yang, Xiaoqiang Qi, Nan Li, Jussuf T. Kaifi, Shiyou Chen, Andrew A. Wheeler, Eric T. Kimchi, Aaron C. Ericsson, R. Scott Rector, Kevin F. Staveley-O’Carroll, Guangfu Li
    Nature Communications.2023;[Epub]     CrossRef
  • The identification of metabolites from gut microbiota in NAFLD via network pharmacology
    Ki-Kwang Oh, Haripriya Gupta, Byeong Hyun Min, Raja Ganesan, Satya Priya Sharma, Sung Min Won, Jin Ju Jeong, Su Been Lee, Min Gi Cha, Goo Hyun Kwon, Min Kyo Jeong, Ji Ye Hyun, Jung A Eom, Hee Jin Park, Sang Jun Yoon, Mi Ran Choi, Dong Joon Kim, Ki Tae Suk
    Scientific Reports.2023;[Epub]     CrossRef
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    Wah-Kheong Chan
    Clinical and Molecular Hepatology.2023; 29(Suppl): S58.     CrossRef
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    Eileen Laurel Yoon, Dae Won Jun
    Clinical and Molecular Hepatology.2023; 29(2): 371.     CrossRef
  • MicroRNA‐29a Compromises Hepatic Adiposis and Gut Dysbiosis in High Fat Diet‐Fed Mice via Downregulating Inflammation
    Ya‐Ling Yang, Ying‐Hsien Huang, Feng‐Sheng Wang, Ming‐Chao Tsai, Chien‐Hung Chen, Wei‐Shiung Lian
    Molecular Nutrition & Food Research.2023;[Epub]     CrossRef
  • Bacteriophage targeting microbiota alleviates non-alcoholic fatty liver disease induced by high alcohol-producing Klebsiella pneumoniae
    Lin Gan, Yanling Feng, Bing Du, Hanyu Fu, Ziyan Tian, Guanhua Xue, Chao Yan, Xiaohu Cui, Rui Zhang, Jinghua Cui, Hanqing zhao, Junxia Feng, Ziying Xu, Zheng Fan, Tongtong Fu, Shuheng Du, Shiyu Liu, Qun Zhang, Zihui Yu, Ying Sun, Jing Yuan
    Nature Communications.2023;[Epub]     CrossRef
  • Valuable effects of lactobacillus and citicoline on steatohepatitis: role of Nrf2/HO-1 and gut microbiota
    Ahmed M. El-Baz, Amira M. El-Ganiny, Doaa Hellal, Hala M. Anwer, Hend A. Abd El-Aziz, Ibrahim E. Tharwat, Mohamed A. El-Adawy, Shehab El-Din M. Helal, Menna Tallah A. Mohamed, Tassnim M. Azb, Hanya M. Elshafaey, AbdulRahman A. Shalata, Sahar M. Elmeligi,
    AMB Express.2023;[Epub]     CrossRef
  • Non-Alcoholic Fatty Liver Disease (NAFLD) and risk of new-onset heart failure: a retrospective analysis of 173,966 patients
    Christoph Roderburg, Sarah Krieg, Andreas Krieg, Sascha Vaghiri, Raphael Mohr, Marcel Konrad, Mark Luedde, Tom Luedde, Karel Kostev, Sven H. Loosen
    Clinical Research in Cardiology.2023; 112(10): 1446.     CrossRef
  • Blueberry and Blackberry Anthocyanins Ameliorate Metabolic Syndrome by Modulating Gut Microbiota and Short-Chain Fatty Acids Metabolism in High-Fat Diet-Fed C57BL/6J Mice
    Lanlan Du, Han Lü, Yan Chen, Xiaohua Yu, Tunyu Jian, Huifang Zhao, Wenlong Wu, Xiaoqin Ding, Jian Chen, Weilin Li
    Journal of Agricultural and Food Chemistry.2023; 71(40): 14649.     CrossRef
  • The Intestinal Microbiota in the Development of Chronic Liver Disease: Current Status
    Josip Stojic, Michał Kukla, Ivica Grgurevic
    Diagnostics.2023; 13(18): 2960.     CrossRef
  • Correspondence on Letter regarding “Risk factors in nonalcoholic fatty liver disease”
    Eileen L. Yoon, Dae Won Jun
    Clinical and Molecular Hepatology.2023; 29(4): 1050.     CrossRef
  • A High-Fat Diet Increases the Characteristics of Gut Microbial Composition and the Intestinal Damage Associated with Non-Alcoholic Fatty Liver Disease
    Xiaoyang Zhu, Jiajia Cai, Yifu Wang, Xinyu Liu, Xiaolei Chen, Haifei Wang, Zhengchang Wu, Wenbin Bao, Hairui Fan, Shenglong Wu
    International Journal of Molecular Sciences.2023; 24(23): 16733.     CrossRef
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Special topic: Alcoholic liver diseases
The 14th International Symposium on Alcoholic Liver and Pancreatic Diseases and Cirrhosis (ISALPDC)

Alcohol-related liver disease

From intestinal dysbiosis to alcohol-associated liver disease
Beatriz Garcia Mendes, Bernd Schnabl
Clin Mol Hepatol 2020;26(4):595-605.
Published online September 11, 2020
DOI: https://doi.org/10.3350/cmh.2020.0086
Alcohol-associated intestinal dysbiosis and bacterial overgrowth can lead to a dysregulation of tryptophan metabolism and lower production of indoles. Several of these indole derivatives are aryl hydrocarbon receptor ligands that, in turn, are involved in antimicrobial defense via induction of interleukin-22 (IL-22). IL-22 increases the expression of intestinal regenerating islet-derived 3 (Reg3) lectins, which maintain low bacterial colonization of the inner mucus layer and reduce bacterial translocation to the liver. Chronic alcohol consumption is associated with reduced intestinal expression of Reg3β and Reg3γ, increased numbers of mucosa-associated bacteria and bacterial translocation. Translocated microbial products and viable bacteria reach the liver and activate the innate immune system. Release of inflammatory molecules promotes inflammation, contributes to hepatocyte death and results in a fibrotic response. This review summarizes the mechanisms by which chronic alcohol intake changes the gut microbiota and contributes to alcohol-associated liver disease by changing microbial-derived metabolites.

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