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Mechanisms of Acetaminophen-induced Liver Injury and Its Implications for Therapeutic Interventions

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Journal Redox Biol
Date 2018 May 13
PMID 29753208
Citations 195
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Abstract

Acetaminophen (APAP) overdose is the leading cause of drug-induced acute liver failure in many developed countries. Mitochondrial oxidative stress is considered to be the predominant cellular event in APAP-induced liver injury. Accordingly, N-acetyl cysteine, a known scavenger of reactive oxygen species (ROS), is recommended as an effective clinical antidote against APAP-induced acute liver injury (AILI) when it is given at an early phase; however, the narrow therapeutic window limits its use. Hence, the development of novel therapeutic approaches that can offer broadly protective effects against AILI is clearly needed. To this end, it is necessary to better understand the mechanisms of APAP hepatotoxicity. Up to now, in addition to mitochondrial oxidative stress, many other cellular processes, including phase I/phase II metabolism, endoplasmic reticulum stress, autophagy, sterile inflammation, microcirculatory dysfunction, and liver regeneration, have been identified to be involved in the pathogenesis of AILI, providing new targets for developing more effective therapeutic interventions against APAP-induced liver injury. In this review, we summarize intracellular and extracellular events involved in APAP hepatotoxicity, along with emphatic discussions on the possible therapeutic approaches targeting these different cellular events.

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References
1.
Lawson J, Farhood A, HOPPER R, Bajt M, Jaeschke H . The hepatic inflammatory response after acetaminophen overdose: role of neutrophils. Toxicol Sci. 2000; 54(2):509-16. DOI: 10.1093/toxsci/54.2.509. View

2.
Truong V, Ko S, Jun M, Jeong W . Quercitrin from Toona sinensis (Juss.) M.Roem. Attenuates Acetaminophen-Induced Acute Liver Toxicity in HepG2 Cells and Mice through Induction of Antioxidant Machinery and Inhibition of Inflammation. Nutrients. 2016; 8(7). PMC: 4963907. DOI: 10.3390/nu8070431. View

3.
Palliyaguru D, Chartoumpekis D, Wakabayashi N, Skoko J, Yagishita Y, Singh S . Withaferin A induces Nrf2-dependent protection against liver injury: Role of Keap1-independent mechanisms. Free Radic Biol Med. 2016; 101:116-128. PMC: 5154810. DOI: 10.1016/j.freeradbiomed.2016.10.003. View

4.
James L, Simpson P, Farrar H, Kearns G, Wasserman G, Blumer J . Cytokines and toxicity in acetaminophen overdose. J Clin Pharmacol. 2005; 45(10):1165-71. DOI: 10.1177/0091270005280296. View

5.
Chen X, Sun C, Han G, Peng J, Li Y, Liu Y . Protective effect of tea polyphenols against paracetamol-induced hepatotoxicity in mice is significantly correlated with cytochrome P450 suppression. World J Gastroenterol. 2009; 15(15):1829-35. PMC: 2670409. DOI: 10.3748/wjg.15.1829. View