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J Alderman

Publications and source records attributed to J Alderman.

38 records · Page 3Linked to original sources

In vivo roles of alcohol dehydrogenase (ADH), catalase and the microsomal ethanol oxidizing system (MEOS) in deermice.

The relative importance of ADH and MEOS for ethanol oxidation in the liver has yet to be elucidated. The discovery of a strain of deermice genetically lacking ADH (ADH-) which can consume ethanol at greater than 50% of the rates seen in deermice having ADH (ADH+) suggested a significant role for non-ADH pathways in vivo. To quantitate contributions of the various pathways, we examined first the ethanol oxidation rates with or without 4-methylpyrazole in isolated deermice hepatocytes. 4-Methylpyrazole significantly reduced the ethanol oxidation in both ADH+ and ADH- hepatocytes. The reduction seen in ADH- cells can be applied to correct for the effect of 4-methylpyrazole on non-ADH pathways of ADH+ deermouse hepatocytes. After correction, non-ADH pathways were found to contribute 28% of ethanol metabolism at 10 mM and 52% at 50 mM. When using a different approach namely measurement of the isotope effect, MEOS was calculated to account for 35% at low and about 70% at high blood ethanol concentrations. Thus, we found that two different complementary approaches yielded similar results, namely that non-ADH pathways play a significant role in ethanol oxidation even in the presence of ADH.

Alcohol Dehydrogenase↗

Improved methods for the measurement of acetaldehyde concentrations in plasma and red blood cells.

Research on the toxic effects of acetaldehyde (Ach) is hampered by analytical difficulties which have been overcome by two new methods suitable for the measurement of Ach in plasma and red blood cells. The first procedure involves rapid separation of plasma, deproteinization, and Ach derivatization with 2,4-dinitrophenylhydrazine (DNP). After extraction with isooctane, the Ach-DNP complex is separated by reverse-phase high performance liquid chromatography. Red blood cell Ach is measured by a modification of the semicarbazide method. The red blood cell hemolysate is mixed with the semicarbazide solution and the extract is injected into the head-space gas chromatograph. The procedure minimizes the artifactual Ach formation which interferes with the direct hemolysis method when human blood is used. After 0.3 g/kg of ethanol, Ach values of 1.5 +/- 0.2 and 9.9 +/- 2.3 microM were detected in plasma and red blood cells of healthy volunteers. These data indicate that an important fraction of Ach circulates in the red blood cells and can be missed or underestimated when only plasma Ach is measured.

Acetaldehyde↗