Antioxidant-Toxin Interactions in the Liver: Protective Pathways and Potential Risks
Kungu Erisa
Faculty of Pharmacy Kampala International University Uganda
Email: erisa.kungu@studwc.kiu.ac.ug
ABSTRACT
The liver is a central organ for metabolism and detoxification, continually exposed to both endogenous and exogenous toxins. Oxidative stress, caused by an imbalance between free radicals and antioxidant defenses, plays a critical role in liver injury. Antioxidants-molecules that neutralize reactive oxygen species (ROS)-are crucial for protecting hepatocytes against oxidative damage. However, interactions between antioxidants and toxins can yield complex outcomes. While many antioxidants decrease toxin-induced liver injury by modulating signaling pathways and enhancing detoxification, under certain conditions, they may also interact with pro-oxidant systems or interfere with metabolic processes, potentially causing harm. This review examines the molecular mechanisms by which antioxidants mitigate toxin-induced liver damage, the pathways underlying their protective effects, and the circumstances in which antioxidant–toxin interactions might pose risks. Key antioxidant systems and signaling pathways, such as nuclear factor erythroid 2-related factor 2 (Nrf2), glutathione metabolism, and phase I/II detoxification enzymes, are explored. We also highlight clinical evidence and limitations in current research, emphasizing the need for context-sensitive understanding of antioxidant use in liver health.
Keywords: Oxidative Stress, Hepatotoxicity, Antioxidant Defense, Nrf2 Signaling, Glutathione Metabolism
CITE AS: Kungu Erisa (2026). Antioxidant-Toxin Interactions in the Liver: Protective Pathways and Potential Risks. NEWPORT INTERNATIONAL JOURNAL OF BIOLOGICAL AND APPLIED SCIENCES 7(2):1-6. https://doi.org/10.59298/NIJBAS/2026/7.2.160000