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Others act by repairing damages caused by the accumulation of free radicals in tissues. Countless studies have been devoted to determining the extent of the health benefits super antioxidants may have. Super antioxidants have been the subject of various cancer research studies and even research on how to reverse aging. The damage theories of antiaging primarily look at the damage that our cells incur over time. Hence, this aspect of antioxidant antiaging therapy focuses more on extrinsic aging, which is the aging process compounded by externally caused factors. On the other hand, the programmed theories are primarily concerned with the genetics of how long and how efficient our cells can maintain optimum health. It has been found that a substantial link exists between free radicals and more than sixty different health conditions, including the aging process, cancer, and atherosclerosis. By reducing exposure to free radicals and increasing the intake of antioxidant enzyme rich foods or antioxidant enzyme supplements, your body's potential to reducing the risk of free radical-related health problems is made more palpable. Because of this function, herbal antioxidants are said to play a role in the prevention and potential cure of various degenerative diseases such as cancer, Alzheimer's, heart disease, rheumatoid arthritis, atherosclerosis, and several others. If there is one other thing you need to know about herbal antioxidants, it is that they are not naturally found in the body. Being natural substances, antioxidants are derived from various plants, including vegetables and fruits. Blueberries and cranberries are usually the fruits that are often touted by nutrition scientists as the top antioxidant rich foods. In the vegetable variety, russet potatoes, red beans, and red cabbage are topping the list as well. But what causes aging anyway? And is there anyway to retard it? In biological systems, the normal processes of oxidation are what lead to aging. Oxidation causes the production of substances called free radicals which are highly reactive. These free radicals can readily react with and damage other molecules.
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