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Ascorbic acid and alpha-tocopherol as potent modulators of apoptosis on arsenic induced toxicity in rats
Kadirvel Ramanathan1, Muthuswamy Anusuyadevi, Samuel Shila
1Department of Medical Biochemistry, Dr. AL. Mudaliar Post Graduate Institute of Basic Medical Sciences, University of Madras, Taramani Campus, Chennai 600 113, India.
Abstract:
Apoptosis or programmed cell death (PCD) is a genetically regulated cellular, physiological and biochemical suicidal mechanism that plays a crucial role in the development and defense of homeostasis, in which the cell participates in its own demise via a cascade of molecular interactions. PCD can be modulated by various stimuli including infectious agents or drugs. Arsenic is one among inducible toxic agent that triggers apoptosis via free radical generation. Since the generation of free radicals during the metabolism of arsenic is thought to be involved in arsenic toxicosis, understanding the deleterious effects caused by the ROS that attack the vital molecules like DNA has become important. The present work was conducted to evaluate the regulatory effect exerted by Vitamin C and Vitamin E upon the apoptotic process, which can be assessed by the presence of cells with apoptosis associated DNA breaks and characterize the role of TNF-alpha and caspase-3 in rats intoxicated with arsenic. Male albino rats of wistar strain (120-150 g) were used in this study and are further divided into seven groups. We observed that ascorbate and alpha-tocopherol selectively altered the extent of DNA damage by reducing TNF-alpha level and inhibiting the activation of caspase cascade, from these observations it is strongly believed that the present vitamins supplementation perspective, though observed in animal model, will have sustainable curative value among the already afflicted populations, neutralizing impact on freshly emerging arsenicosis scenario and possible proactive protection to those potentially susceptible to arsenicals exposure.
Insights
Vitamin C and Vitamin E protect against arsenic-induced apoptosis by reducing DNA damage. These vitamins lower TNF-alpha and inhibit caspase activation, offering potential therapeutic benefits for arsenicosis.
Area of Science:
- Biochemistry
- Toxicology
- Cell Biology
Background:
- Programmed cell death (apoptosis) is vital for homeostasis and can be induced by toxins like arsenic.
- Arsenic induces apoptosis through free radical generation, leading to oxidative stress and DNA damage.
- Understanding the role of reactive oxygen species (ROS) in arsenic toxicity is crucial.
Purpose of the Study:
- To investigate the protective effects of Vitamin C (ascorbate) and Vitamin E (alpha-tocopherol) against arsenic-induced apoptosis in rats.
- To evaluate the impact of these vitamins on DNA damage, TNF-alpha levels, and caspase-3 activation.
- To explore the potential therapeutic role of vitamin supplementation in arsenicosis.
Main Methods:
- Male albino rats were intoxicated with arsenic and divided into seven experimental groups.
- Apoptosis-associated DNA breaks were assessed to measure cellular damage.
- Levels of TNF-alpha and the activation of caspase cascade were analyzed.
Main Results:
- Vitamin C and Vitamin E supplementation significantly altered the extent of DNA damage caused by arsenic.
- Treatment with ascorbate and alpha-tocopherol led to a reduction in TNF-alpha levels.
- The activation of the caspase cascade was inhibited by the vitamin treatments.
Conclusions:
- Vitamin C and Vitamin E demonstrate a protective effect against arsenic-induced apoptosis and DNA damage.
- These vitamins modulate key apoptotic pathways, including TNF-alpha signaling and caspase activation.
- Vitamin supplementation shows promise for managing arsenicosis and protecting against arsenic exposure.

