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Role of Gut Microecology in the Pathogenesis of Drug-Induced Liver Injury and Emerging Therapeutic Strategies

Overview
Journal Molecules
Publisher MDPI
Specialty Biology
Date 2024 Jun 19
PMID 38893536
Authors
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Abstract

Drug-induced liver injury (DILI) is a common clinical pharmacogenic disease. In the United States and Europe, DILI is the most common cause of acute liver failure. Drugs can cause hepatic damage either directly through inherent hepatotoxic properties or indirectly by inducing oxidative stress, immune responses, and inflammatory processes. These pathways can culminate in hepatocyte necrosis. The role of the gut microecology in human health and diseases is well recognized. Recent studies have revealed that the imbalance in the gut microecology is closely related to the occurrence and development of DILI. The gut microecology plays an important role in liver injury caused by different drugs. Recent research has revealed significant changes in the composition, relative abundance, and distribution of gut microbiota in both patients and animal models with DILI. Imbalance in the gut microecology causes intestinal barrier destruction and microorganism translocation; the alteration in microbial metabolites may initiate or aggravate DILI, and regulation and control of intestinal microbiota can effectively mitigate drug-induced liver injury. In this paper, we provide an overview on the present knowledge of the mechanisms by which DILI occurs, the common drugs that cause DILI, the gut microbiota and gut barrier composition, and the effects of the gut microbiota and gut barrier on DILI, emphasizing the contribution of the gut microecology to DILI.

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PMID: 39444598 PMC: 11497133. DOI: 10.3389/fphar.2024.1442854.

References
1.
Sun C, Chen L, Shen Z . Mechanisms of gastrointestinal microflora on drug metabolism in clinical practice. Saudi Pharm J. 2019; 27(8):1146-1156. PMC: 6921184. DOI: 10.1016/j.jsps.2019.09.011. View

2.
Chopyk D, Stuart J, Zimmerman M, Wen J, Gumber S, Suthar M . Acetaminophen Intoxication Rapidly Induces Apoptosis of Intestinal Crypt Stem Cells and Enhances Intestinal Permeability. Hepatol Commun. 2019; 3(11):1435-1449. PMC: 6824060. DOI: 10.1002/hep4.1406. View

3.
Albillos A, De Gottardi A, Rescigno M . The gut-liver axis in liver disease: Pathophysiological basis for therapy. J Hepatol. 2019; 72(3):558-577. DOI: 10.1016/j.jhep.2019.10.003. View

4.
Bone E, Tamm A, Hill M . The production of urinary phenols by gut bacteria and their possible role in the causation of large bowel cancer. Am J Clin Nutr. 1976; 29(12):1448-54. DOI: 10.1093/ajcn/29.12.1448. View

5.
Zimmermann M, Chassard C, Rohner F, NGoran E, Nindjin C, Dostal A . The effects of iron fortification on the gut microbiota in African children: a randomized controlled trial in Cote d'Ivoire. Am J Clin Nutr. 2010; 92(6):1406-15. DOI: 10.3945/ajcn.110.004564. View