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Biomedical subjects

E G Dick

Publications and source records attributed to E G Dick.

17 recordsLinked to original sources

Plasma vanadium concentration in manic-depressive illness.

133 samples of plasma taken from 9 normal control and 8 manic-depressive subjects were analysed for vanadium by atomic absorption spectrometry. Mean plasma vanadium concentrations were 0 . 15 microM in normal control, 0 . 34 microM in manic and 0 . 28 microM in depressed subjects, and 0 . 23 microM in manic-depressive subjects after recovery. The differences between normal subjects and manic and recovered subjects were statistically significant. Significant negative correlations were found between plasma vanadium concentration and the ratio of Na-K-Mg ATPase to Mg-ATPase in 2 manic-depressive subjects, but not in normal subjects. The results suggest that vanadium may be a cause of the variations in Na-K-Mg ATPase and sodium pump activity which are associated with manic-depressive illness.

Bipolar Disorder↗

Prediction of clinical course of bipolar manic depressive illness treated with lithium.

A group of bipolar manic depressive patients attending a routine lithium clinic were investigated. The results suggest that, when on treatment with lithium, manic depressive patients with a good prognosis tend to have a higher erythrocyte Na-K ATPase and higher plasma and erythrocyte lithium concentrations than those with a poor prognosis. There was no evidence to suggest that the erythrocyte: plasma lithium ratio was useful in predicting clinical response to lithium therapy. There was also a positive correlation between plasma lithium concentration and Na-K ATPase activity, confirming that in manic depressive subjects lithium produces a rise in erythrocyte Na-K ATPase activity.

Bipolar Disorder↗

Erythrocyte membrane cation carrier in manic-depressive psychosis.

Erythrocyte Na-K ATPase and sodium pump site numbers were estimated in groups of depressed, manic and recovered patients. The activity of Na-K ATPase per pump site was lower in the depressed group than in the recovered group. In the manic group Na-K ATPase was lower than that of the recovered group, whereas there was no difference in the pump site numbers. In the more severe manics the activity of Na-K ATPase per pump site was significantly lower than that of the recovered patients. Therefore, the change occurring in the erythrocyte membrane cation carrier in manic-depressive psychosis is probably in the activity of individual Na-K ATPase molecules and not in the number of Na-K ATPase molecules per cell.

Binding Sites↗

Lithium side effects in a routine lithium clinic.

Approximately two thirds of a group of bipolar patients attending the routine lithium clinic suffered sid effects. These patients tended to have a lower plasma and erythrocyte lithium concentration and a lower erythrocyte/plasma lithium ratio than those who had no side effects. Explanations of this unexpected finding are discussed.

Bipolar Disorder↗

Lithium and erythrocyte membrane cation carrier studies in normal and manic depressive subjects.

Changes in the erythrocyte membrane cation carrier following lithium ingestion in normal human subjects were studied; ouabain sensitive potassium influx fell significantly during the lithium treated phase. Lithium was fed to rats and no change in erythrocyte Na-K ATPase was shown. These findings contrast with studies of lithium in manic depressive psychosis. The fluctuations in the erythrocyte membrane cation carrier were studied in 5 normal subjects over 12 weeks and the correlations between the parameters calculated. The erythrocyte sodium concentration correlated positively with the ouabain sensitive potassium influx. This too contrasts with findings in manic depressive psychosis.

Adenosine Triphosphatases↗

Changes in the erythrocyte sodium pump with age.

Various estimations of the erythrocyte sodium pump were determined in 18 female and 11 male adult subjects. In the female group, but not in the male group, the sodium concentration increased with age; the erythrocyte active transport decreased and passive transport increased with age and could account for the observed change in erythrocyte sodium concentration with age. The erythrocyte Na-K ATPase decreased with age in the females and this could account for the observed change in active transport.

Adenosine Triphosphatases↗

Erythrocyte membrane cation carrier, relapse rate of manic-depressive illness and response to lithium.

Biochemical studies of manic-depressive psychosis usually correlates biochemical findings with current affective state and hence any significant findings could be secondary to mood change. The present study attempts to correlate measures of the erythrocyte membrane cation carrier with clinical events, remote in time from the biochemical assay. Eprythrocyte sodium concentration, ouabain-sensitive potassium influx and Na-K ATPase were estimated in 11 patients before and after the cross-over point in a 2-year double blind clinical trial ratio tended to suffer most episodes of affective illness in the 2 years. Patients who had a low initial Na-K ATPase or a high initial flux sodium ATPase ratio, or in whom this ratio fell most with lithium or whose Na-K ATPase rose most with lithium, clinically responded best to lithium.

Adenosine Triphosphatases↗

Erythrocyte membrane cation carrier in mania.

Erythrocyte sodium and potassium concentrations, erythrocyte membrane ATPase (Na-K specific and non-specific) and the rate of potassium influx into erythrocytes (ouabain-sensitive and insensitive) were estimated in a group of female patients suffering from mania and repeated on about two thirds of them when they had recovered. With recovery there was a statistically significant increase in the erythrocyte ouabain-sensitive potassium influx. The other parameters showed no significant overall change with recovery but the initial severity correlated significantly and negatively with the change in erythrocyte Na-K ATPase with recovery. The changes that occurred in the erythorcyte sodium concentration and Na-K ATPase activity were not random since they correlated significantly with changes in the active potassium influx.

Adenosine Triphosphatases↗

A biochemical study of short-cycle manic-depressive psychosis in mental defectives.

Four mentally defective patients who were suffering from short-cycle manic-depressive psychosis were each studied under metabolic ward conditions for about six months. Weekly estimations of erythrocyte Na-K ATPase activity, ouabain sensitive potassium influx, sodium concentration, whole blood cell ATP concentration and blood haematocrit were made. The findings in each patient differed, but the erythrocyte Na-K ATPase activity, sodium and ATP concentration appeared to show cyclic changes related to, though out of phase with, the clinical state.

Adenosine Triphosphatases↗

Inhibition of adenosine triphosphatase in sheep red cell membranes by oxidized glutathione.

This paper reports inhibition of Na(+) + K(+)-stimulated, ouabain-inhibited adenosine triphosphatase (S-ATPase) in sheep red cell membranes by oxidized glutathione (GSSG). The results are consistent with the hypothesis that this inhibition depends upon the formation of a mixed disulfide between glutathione and -SH group(s) in the enzyme protein. Thus, inhibition of S-ATPase by GSSG proceeds more rapidly at alkaline than at neutral pH and is reversed by the addition of an excess of a compound containing reduced -SH groups (e.g. dithiothreitol). ATP protects S-ATPase against inhibition by GSSG and this protection depends on both the monovalent and divalent cation composition of the medium. Protection by ATP is more complete in the presence of K(+) than in the presence of Na(+).

Adenosine Triphosphatases↗