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Biomedical subjects

H W Goedde

Publications and source records attributed to H W Goedde.

At least 109 records · Page 6Linked to original sources

Pharmacogenetics of alcohol sensitivity.

The metabolism of acetaldehyde has received considerable attention in the past few years due to its toxic effects and possible importance in pharmacogenetics. Recent studies have demonstrated rapid progress concerning the multiple molecular forms of ADH and ALDH and their genetic variants. The isozymes of ALDH may play an important role in the biological sensitivity to alcohol in certain ethnic groups and also in the pathogenesis of alcohol related organ damage. A protective effect of ALDH I deficiency against alcoholism seems to exist in Japanese.

Acetaldehyde↗

Platelet monoamine oxidase and erythrocyte catechol-o-methyltransferase activity in alcoholism and controlled abstinence.

This study substantiates previous reports that low platelet monoamine oxidase (MAO) activity is associated with alcoholism. Catechol-o-methyltransferase (COMT) activity in erythrocytes of alcoholics did not differ from that of controls. In 20 male alcoholics low platelet MAO activity was found during the first 3 days after hospitalization. The MAO activity increased in the next 2 weeks of abstinence and then tended to decrease again.

Adult↗

[Activity of the creatine kinase isoenzyme CK-BB in the serum of neonates as an indicator of perinatal damage to the central nervous system].

By means of the immunoprecipitation method significantly higher activities of creatine kinase BB isoenzyme were measured in the sera of neonates with CNS symptoms than in the sera of healthy or sick neonates without CNS symptoms. The activity of CK-BB inversely correlated with the one-minute Apgar score. These results suggest a leakage of CK-BB from the damaged CNS tissue into the blood circulation. Determination of CK-BB might be helpful in the assessment of perinatal brain damage.

Apgar Score↗

The role of alcohol dehydrogenase and aldehyde dehydrogenase isozymes in alcohol metabolism, alcohol sensitivity, and alcoholism.

Isozymes of alcohol dehydrogenase (ADH) and aldehyde dehydrogenase (ALDH) were studied in human organs and tissues using sensitive analytical techniques. Both ADH and ALDH showed an extensive polymorphism among different racial groups. In liver extracts and other tissues of Japanese an isozyme of ALDH (ALDH I) with a low Km for acetaldehyde was found to be deficient. The ALDH isozyme deficiency might account for the marked initial sensitivity to alcohol in Orientals owing to their impaired acetaldehyde oxidizing capacity. Significantly low erythrocyte ALDH activity was noted more frequently in chronic alcoholics than in healthy controls. After subcellular fractionation of livers from alcoholics a preferential damage of mitochondrial ALDH isozyme was observed. The metabolism of acetaldehyde has received considerable attention in the past few years, owing to the toxic effects of this substance. Rapid progress has been made in the understanding of the multiple molecular forms of ADH and ALDH in human tissues. Our recent studies have demonstrated that the isozymes of ALDH may play an important role in the pathogenesis of alcohol-related organ damage and in the biological sensitivity to alcohol in certain ethnic groups. A possible protection of ALDH I deficiency against alcoholism in Japanese has been discussed. More recent reports [Imprain et al, 1982; Jones, 1982] indicate that, in addition to the enzymatically active ALDH II, tissues from Orientals deficient in ALDH I isozyme contain enzymatically inactive, immunologically cross-reactive material homologous with ALDH I. Thus, the absence of ALDH I isozyme is not due to a regulatory mutation, a gene deletion, or a nonsense mutation, but probably results from a structural mutation.(ABSTRACT TRUNCATED AT 250 WORDS)

Alcohol Dehydrogenase↗

The effect of lithium, imipramine and chlorpromazine on the membrane bound enzyme phosphatidylethanolamine methyltransferase.

The activity of phosphatidylethanolamine methyltransferase (PMT) in disrupted human erythrocytes and ghost cells was inhibited by lithium (Li+), imipramine and chlorpromazine. There was no inhibitory effect of the drugs in concentrations similar to the average therapeutic blood levels. Li+ exerted an inhibition on PMT activity in hemolysates at concentrations 8 times the average therapeutic level whereas chlorpromazine and imipramine showed an inhibitory effect on PMT in hemolysates at 10(3) fold their respective therapeutic serum level.

Chlorpromazine↗

Isoelectric focusing studies of human red cell PGM1 in Japanese, with special reference to the characterization of PGM17.

The distribution of phosphoglucomutase (PGM1) subtypes in human red cells was determined by isoelectric focusing in 218 Japanese samples. Nine common phenotypes were observed corresponding to the following frequencies of the four alleles at the PGM1 locus: PGM11+ 0.6560, PGM11- 0.1170, PGM12+ 0.1674 and PGM12- 0.0505. In addition, a characterization of the PGM17 allele was performed. Our results obtained in the present study revealed the possibility that the PGM17 allele may be differentiated in the two alleles of PGM17+ and PGM17- through an investigation of isoelectric focusing.

Asian People↗

Mechanism of alcohol sensitivity and disulfiram-ethanol reaction.

Human aldehyde dehydrogenase (ALDH) consists of two main isozymes with low and high Km for aldehyde. ALDH isozymes in hair sheats were tested from 40 Japanese using isoelectric focusing and blood acetaldehyde determination with gas chromatography. About 43% of Japanese, who lacked the low Km enzyme (ALDH I) showed an elevated acetaldehyde concentration due to their inability to metabolize acetaldehyde quickly and effectively. Studies regarding the inhibitory reaction of disulfiram and its metabolites have been performed. Among the metabolites, diethylamine inhibited the low Km enzyme strongly. It is presumed that vasomotor symptoms and high acetaldehyde concentration in blood after alcohol intake in patients who are treated with disulfiram might be mainly due to a decrease in activity of the low Km enzyme caused by diethylamine which is produced in vivo as one of the metabolites from disulfiram, rather than to an inhibitory reaction of disulfiram only. Thus, alcohol sensitivity in Mongoloids and disulfiram-ethanol reaction may have a common mechanism.

Acetaldehyde↗

Physiological role of aldehyde dehydrogenase isozymes.

Our studies confirm that impaired acetaldehyde metabolism via a deficiency in aldehyde dehydrogenase isozyme composition plays an important role in the sensitivity to alcohol and the pathophysiology of alcoholism. Individuals with decreased activity of ALDH having less affinity to acetaldehyde in their liver, may be at a higher risk of acetaldehyde-related organ damage. In the case of Oriental subjects, the lack of ALDH I activity may also result in alcohol aversion. A protection of these individuals against alcoholism is suggested.

Alcohol Drinking↗