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Acetaminophen-induced Liver Injury: from Animal Models to Humans

Overview
Specialty Gastroenterology
Date 2015 Sep 11
PMID 26355817
Citations 111
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Abstract

Drug-induced liver injury is an important clinical problem and a challenge for drug development. Whereas progress in understanding rare and unpredictable (idiosyncratic) drug hepatotoxicity is severely hampered by the lack of relevant animal models, enormous insight has been gained in the area of predictable hepatotoxins, in particular acetaminophen-induced liver injury, from a broad range of experimental models. Importantly, mechanisms of toxicity obtained with certain experimental systems, such as in vivo mouse models, primary mouse hepatocytes, and metabolically competent cell lines, are being confirmed in translational studies in patients and in primary human hepatocytes. Despite this progress, suboptimal models are still being used and experimental data can be confusing, leading to controversial conclusions. Therefore, this review attempts to discuss mechanisms of drug hepatotoxicity using the most studied drug acetaminophen as an example. We compare the various experimental models that are used to investigate mechanisms of acetaminophen hepatotoxicity, discuss controversial topics in the mechanisms, and assess how these experimental findings can be translated to the clinic. The success with acetaminophen in demonstrating the clinical relevance of experimental findings could serve as an example for the study of other drug toxicities.

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References
1.
Jaeschke H, Lemasters J . Apoptosis versus oncotic necrosis in hepatic ischemia/reperfusion injury. Gastroenterology. 2003; 125(4):1246-57. DOI: 10.1016/s0016-5085(03)01209-5. View

2.
Shen W, Kamendulis L, Ray S, Corcoran G . Acetaminophen-induced cytotoxicity in cultured mouse hepatocytes: effects of Ca(2+)-endonuclease, DNA repair, and glutathione depletion inhibitors on DNA fragmentation and cell death. Toxicol Appl Pharmacol. 1992; 112(1):32-40. DOI: 10.1016/0041-008x(92)90276-x. View

3.
Saito C, Zwingmann C, Jaeschke H . Novel mechanisms of protection against acetaminophen hepatotoxicity in mice by glutathione and N-acetylcysteine. Hepatology. 2009; 51(1):246-54. PMC: 2977522. DOI: 10.1002/hep.23267. View

4.
Thompson M, Monga S . WNT/beta-catenin signaling in liver health and disease. Hepatology. 2007; 45(5):1298-305. DOI: 10.1002/hep.21651. View

5.
Srivastava A, Maggs J, Antoine D, Williams D, Smith D, Park B . Role of reactive metabolites in drug-induced hepatotoxicity. Handb Exp Pharmacol. 2009; (196):165-94. DOI: 10.1007/978-3-642-00663-0_7. View