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Updated: Mar 23, 2026

Experimental Protocol for Detecting Mitochondrial Function in Hepatocytes Exposed to Organochlorine Pesticides
Published on: September 16, 2020
Mitochondria-targeted antioxidant Mito-Tempo protects against acetaminophen hepatotoxicity
Kuo Du1, Anwar Farhood2, Hartmut Jaeschke3
1Department of Pharmacology, Toxicology and Therapeutics, University of Kansas Medical Center, 3901 Rainbow Blvd, MS 1018, Kansas City, KS, 66160, USA.
Abstract:
Acetaminophen (APAP) hepatotoxicity is characterized by an extensive mitochondrial oxidant stress. However, its importance as a drug target has not been clarified. To investigate this, fasted C57BL/6J mice were treated with 300 mg/kg APAP and the mitochondria-targeted antioxidant Mito-Tempo (MT) was given 1.5 h later. APAP caused severe liver injury in mice, as indicated by the increase in plasma ALT activities and centrilobular necrosis. MT dose-dependently reduced the injury. Importantly, MT did not affect APAP-protein adducts formation, glutathione depletion or c-jun N-terminal kinase activation and its mitochondrial translocation. In contrast, hepatic glutathione disulfide and peroxynitrite formation were dose-dependently reduced by MT, indicating its effective mitochondrial oxidant stress scavenging capacity. Consequently, mitochondrial translocation of Bax and release of mitochondrial intermembrane proteins such as apoptosis-inducing factor were prevented, and nuclear DNA fragmentation was eliminated. To demonstrate the importance of mitochondria-specific antioxidant property of MT, we compared its efficacy with Tempo, which has the same pharmacological mode of action as MT but lacks the mitochondria targeting moiety. In contrast to the dramatic protection by MT, the same molar dose of Tempo did not significantly reduce APAP hepatotoxicity. In contrast, even a 3 h post-treatment with MT reduced 70 % of the injury, and the combination of MT with N-acetylcysteine (NAC) provided superior protection than NAC alone. We conclude that MT protects against APAP overdose in mice by attenuating the mitochondrial oxidant stress and preventing peroxynitrite formation and the subsequent mitochondrial dysfunction. MT is a promising therapeutic agent for APAP overdose patients.
Insights
Mito-Tempo (MT) effectively treats acetaminophen (APAP) overdose by reducing mitochondrial oxidant stress and preventing liver injury. This targeted antioxidant shows promise as a therapeutic agent for APAP poisoning.
Area of Science:
- Hepatology
- Mitochondrial Medicine
- Toxicology
Background:
- Acetaminophen (APAP) overdose causes severe liver injury, primarily through mitochondrial oxidant stress.
- The role of mitochondrial oxidant stress as a therapeutic target in APAP hepatotoxicity remains unclear.
Purpose of the Study:
- To investigate the therapeutic potential of the mitochondria-targeted antioxidant Mito-Tempo (MT) in APAP-induced liver injury.
- To elucidate the mechanisms by which MT mitigates APAP hepatotoxicity.
Main Methods:
- C57BL/6J mice were treated with APAP, followed by administration of MT or Tempo.
- Evaluated liver injury markers (ALT, necrosis), APAP-protein adducts, glutathione levels, oxidative stress markers (glutathione disulfide, peroxynitrite), and apoptosis indicators.
- Compared the efficacy of MT with Tempo and N-acetylcysteine (NAC).
Main Results:
- MT dose-dependently reduced APAP-induced liver injury without affecting APAP-protein adducts or glutathione depletion.
- MT effectively scavenged mitochondrial oxidant stress, reducing glutathione disulfide and peroxynitrite formation.
- MT prevented mitochondrial dysfunction, Bax translocation, and DNA fragmentation, while Tempo showed limited efficacy.
- MT provided significant protection even when administered 3 hours post-APAP and enhanced NAC's protective effects.
Conclusions:
- Mito-Tempo protects against acetaminophen overdose by mitigating mitochondrial oxidant stress and preventing subsequent mitochondrial dysfunction.
- MT's mitochondria-specific targeting is crucial for its efficacy, highlighting mitochondrial pathways as key therapeutic targets.
- MT is a promising therapeutic candidate for treating acetaminophen overdose.
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