Comments on diethylene glycol concentrations.
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Biomedical subjects
Publications and source records attributed to R J Slaughter.
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Methyl oleate ozonide, a proposed intermediary in ozone intoxication, produced Heinz body inclusions in human erythrocytes at concentrations of from 10-4 to 2 x 10-3 M. Daily oral supplementation with either 100 mg or 200 mg of D-alpha-tocopheryl acetate prevented Heinz body formation by methyl oleate ozonide. These observations suggest that the protective effects of vitamin E against ozone-produced toxicants occurs in man as well as in animals.
Ozonides of the methyl esters of oleic, linoleic, linolenic and arachidonic acids were found to produce Heinz body inclusions in human and mouse erythrocytes. No simple relationships between structure and activity were noted. Concomitant with Heinz body formation, methemoglobin and loss of cellular thiols were observed. Methyl ozonides readily oxidized glutathione and 1 mole of oxidized glutathione was formed per mole of methyl oleate ozonide. Methyl ozonides catalyzed the formation of disulfide-linked interchain polymers between hemoglobin and ovalbumin. Heinz bodies were not produced with ozone in the absence of unsaturated lipids. Heinz bodies were observed in the blood of mice exposed to ozone (0.85 ppm) for 48 hours. These observations suggest that fatty acid ozonides could serve as a toxic chemical species formed on ozone inhalation and could explain the divergent protective effects of lipid antioxidants and thiol generating systems in vivo.