AI Article Synopsis

  • The study investigates the effects of combining intermediate alcohol consumption with a Western diet to create a mouse model (DUAL) that simulates both alcohol-associated and metabolic fatty liver diseases.
  • Mice on the DUAL diet showed significant weight gain, liver damage, and signs of metabolic distress, including increased fat cell size, high cholesterol, and high blood sugar levels.
  • The findings suggest that this DUAL model closely resembles human advanced steatohepatitis, making it a useful preclinical tool for finding new treatments.

Article Abstract

Individuals exhibiting an intermediate alcohol drinking pattern in conjunction with signs of metabolic risk present clinical features of both alcohol-associated and metabolic-associated fatty liver diseases. However, such combination remains an unexplored area of great interest, given the increasing number of patients affected. In the present study, we aimed to develop a preclinical DUAL (alcohol-associated liver disease plus metabolic-associated fatty liver disease) model in mice. C57BL/6 mice received 10% vol/vol alcohol in sweetened drinking water in combination with a Western diet for 10, 23, and 52 weeks (DUAL model). Animals fed with DUAL diet elicited a significant increase in body mass index accompanied by a pronounced hypertrophy of adipocytes, hypercholesterolemia, and hyperglycemia. Significant liver damage was characterized by elevated plasma alanine aminotransferase and lactate dehydrogenase levels, extensive hepatomegaly, hepatocyte enlargement, ballooning, steatosis, hepatic cell death, and compensatory proliferation. Notably, DUAL animals developed lobular inflammation and advanced hepatic fibrosis. Sequentially, bridging cirrhotic changes were frequently observed after 12 months. Bulk RNA-sequencing analysis indicated that dysregulated molecular pathways in DUAL mice were similar to those of patients with steatohepatitis. Our DUAL model is characterized by obesity, glucose intolerance, liver damage, prominent steatohepatitis and fibrosis, as well as inflammation and fibrosis in white adipose tissue. Altogether, the DUAL model mimics all histological, metabolic, and transcriptomic gene signatures of human advanced steatohepatitis, and therefore serves as a preclinical tool for the development of therapeutic targets.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8183170PMC
http://dx.doi.org/10.1002/hep4.1698DOI Listing

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