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Melatonin's role in preventing toxin-related and sepsis-mediated hepatic damage: A review
Eduardo Esteban-Zubero1, Moisés Alejandro Alatorre-Jiménez2, Laura López-Pingarrón3
1Department of Pharmacology and Physiology, University of Zaragoza, Calle Domingo Miral s/n, 50009, Zaragoza, Spain.
Abstract:
The liver is a central organ in detoxifying molecules and would otherwise cause molecular damage throughout the organism. Numerous toxic agents including aflatoxin, heavy metals, nicotine, carbon tetrachloride, thioacetamide, and toxins derived during septic processes, generate reactive oxygen species followed by molecular damage to lipids, proteins and DNA, which culminates in hepatic cell death. As a result, the identification of protective agents capable of ameliorating the damage at the cellular level is an urgent need. Melatonin is a powerful endogenous antioxidant produced by the pineal gland and a variety of other organs and many studies confirm its benefits against oxidative stress including lipid peroxidation, protein mutilation and molecular degeneration in various organs, including the liver. Recent studies confirm the benefits of melatonin in reducing the cellular damage generated as a result of the metabolism of toxic agents. These protective effects are apparent when melatonin is given as a sole therapy or in conjunction with other potentially protective agents. This review summarizes the published reports that document melatonin's ability to protect hepatocytes from molecular damage due to a wide variety of substances (aflatoxin, heavy metals, nicotine, carbon tetrachloride, chemotherapeutics, and endotoxins involved in the septic process), and explains the potential mechanisms by which melatonin provides these benefits. Melatonin is an endogenously-produced molecule which has a very high safety profile that should find utility as a protective molecule against a host of agents that are known to cause molecular mutilation at the level of the liver.
Insights
Melatonin, a potent antioxidant, protects liver cells from damage caused by numerous toxins. This review highlights melatonin
Area of Science:
- Hepatology
- Toxicology
- Biochemistry
Background:
- The liver detoxifies harmful substances, but this process can cause cellular damage via reactive oxygen species.
- Exposure to toxins like aflatoxin, heavy metals, and endotoxins leads to lipid, protein, and DNA damage, potentially causing liver cell death.
- There is a critical need for agents that can protect liver cells from this molecular damage.
Purpose of the Study:
- To review and summarize existing research on melatonin's protective effects against liver damage.
- To elucidate the mechanisms by which melatonin mitigates toxin-induced hepatotoxicity.
- To highlight melatonin's potential as a therapeutic agent for liver protection.
Main Methods:
- Literature review of published studies on melatonin and liver protection.
- Analysis of experimental data demonstrating melatonin's antioxidant and cytoprotective properties.
- Examination of studies involving various hepatotoxic agents including aflatoxin, heavy metals, and endotoxins.
Main Results:
- Melatonin demonstrates significant protective effects against molecular damage in hepatocytes induced by a wide range of toxins.
- These benefits are observed whether melatonin is used as a standalone therapy or in combination with other agents.
- Melatonin effectively reduces oxidative stress, lipid peroxidation, and protein damage in the liver.
Conclusions:
- Melatonin is a powerful endogenous antioxidant with a high safety profile.
- It offers significant protection to hepatocytes against diverse toxic insults.
- Melatonin holds promise as a therapeutic strategy to prevent or ameliorate liver damage from various toxins.
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