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Query: UMLS:C0042875 (vitamin E deficiency)
916 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A study was undertaken to determine whether respiratory hexanal and acetone as well as pentane and ethane could be measured as potential indices of lipid peroxidation in vivo. The tests of induction of lipid peroxidation in rats included injection of iron-dextran and the vitamin E deficiency status. Injection of 460 mg of iron/100 g body wt over a 28-day period increased pentane and ethane production 4- and 6-fold, respectively. Hexanal production was increased 7-fold after injection of 60 mg of iron/100 g body wt, and then it fell back to the preinjection level in spite of continued injection of iron-dextran. Acetone production was lower in iron-injected rats than in controls, and it was ca. 10-fold higher in fasted vitamin E-deficient rats than in vitamin E-supplemented rats, being ca 48 and 5 nmol/100 g/min, respectively. It was observed that halomethane injection did not increase hexanal production, while acetone and pentane production were increased. Pentane and hexanal, but not acetone, were found to arise from decomposition of linoleic acid hydroperoxide in vitro. It was concluded that hydrocarbon gases are better indices of lipid peroxidation than hexanal, which is enzymatically metabolized, and acetone, the production of which is dominated by factors such as altered carbohydrate metabolism.
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PMID:Volatile hydrocarbon and carbonyl products of lipid peroxidation: a comparison of pentane, ethane, hexanal, and acetone as in vivo indices. 53 5

Pentane, which evolves from the reaction involving omega-6 fatty acids, is a good index of lipid peroxidation. We describe a method for measuring breath pentane excretion in adult humans. After a 4-minute washout period, expired air was analyzed by gas chromatography. Breath was passed through a cooled loop of alumina to adsorb, concentrate, and release, on heating, pentane. Pentane was analyzed by a Porasil-D column with a derived calibration curve. The mean excretion of pentane in 10 normal adults was 6.34 +/- 0.96 pmol X kg-1 X min-1 (mean +/- SEM) and was significantly higher in five patients with plasma vitamin E deficiency (15.39 +/- 1.84 pmol X kg-1 X min-1). There was a significant negative correlation between pentane output and plasma vitamin E levels (r = -0.66, p less than 0.01). Moreover, breath pentane excretion was significantly decreased after a 10-d supplementation with vitamin E in five normal subjects. We conclude that breath pentane output is a sensitive, noninvasive, functional test for assessing vitamin E status.
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PMID:Breath pentane analysis as an index of lipid peroxidation: a functional test of vitamin E status. 311 28