Nutritional needs in environmental intoxication: vitamin E and air pollution, an example.
Author(s) -
Daniel B. Menzel
Publication year - 1979
Publication title -
environmental health perspectives
Language(s) - English
Resource type - Journals
eISSN - 1552-9924
pISSN - 0091-6765
DOI - 10.1289/ehp.7929105
Subject(s) - toxicity , lipid peroxidation , vitamin e , chemistry , nitrogen dioxide , vitamin , ozone , acute toxicity , antioxidant , toxicology , pharmacology , environmental chemistry , biochemistry , biology , organic chemistry
Dietary vitamin E affects the susceptibility of mice and rats to ozone and nitrogen dioxide, suggesting a free radical mechanism of toxicity. Conventional peroxidation does not completely explain the effects of alterations of lung fatty acid composition on both nitrogen dioxide and ozone toxicity. A new scheme is proposed based on the cyclization of beta, gamma-allylic peroxyl free radicals to monocyclic and bicyclic peroxides to explain the relationship between diet and toxicity. Similar results are likely with other toxicants producing peroxidation as a mechanism of toxicity. Such cyclic peroxides may mimic or interfere with the prostaglandin system. Several chronic diseases may be exacerbated through such a subtle toxic mechanism. The level of vitamin E needed for protection against peroxidation toxicity may be much greater than the present U. S. dietary intake.
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