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Biomedical subjects

M Weissel

Publications and source records attributed to M Weissel.

At least 127 records · Page 7Linked to original sources

Myocardial glucose uptake and breakdown during adenosine-induced vasodilation.

In isolated K+ (16.2 mM)-arrested cat hearts perfused at constant pressure adenosine infusions (0.8 mumoles - min-1 - 100 g-1 for 10 min) caused an increase in myocardial 14C-glucose uptake and release of 14CO2 + H14CO3- AND 14C-lactate simultaneously with a rise in coronary flow. The ratio of the release of 14CO2 + H14CO3- to that of 14C-lactate and the specific activity of lactate in the effuate were not altered. In K+ -arrested hearts perfused with constant volume neither glucose uptake nor glucose breakdown were influenced by 0.8 or 100 mumoles - min-1 - 100 g-1 adenosine with 0.1 - 5 mM glucose in the perfusion medium. It is concluded that adenosine does not affect directly the myocardial glucose carrier system, aerobic or anaerobic glucose breakdown or glycogenolysis, but enhances glucose uptake secondarily by increasing coronary flow. This interpretation is substantiated by the finding that mechanically produced increases in perfusion volume caused similar increases in myocardial glucose uptake as were observed with comparable adenosine-induced coronary flow increments.

Adenosine↗

[Salivary electrolytes and serum digoxin in the Assessment of digitalis intoxication (author's transl)].

Salivary electrolytes (potassium and calcium), as well as serum digoxin levels were measured in 114 patients receiving digoxin or one of its derivatives. The mean value of the product of salivary potassium (mVal/I) and calcium (mVal/i in digoxin-treated patients without signs of digitalis intoxication (group 1) was 235 +/- 137 (SD) and with digitalis intoxication (group 2) 404 +/- 161 (SD). The difference in these values was not of statistical significance. The mean serum digoxin levels were 1.38 +/- 0.6 ng/ml (SD) in group 1 and 2.97 +/- 0.7 ng/ml (SD) in group 2; this difference is highly significant (p less than 0.001). Both salivary electrolytes and serum digoxin levels were falsely elevated in 11% of group 1 patients. 50% of the cases in group 2 showed salivary electrolyte values within the range of group 1, but there was only 1 patient with a serum digoxin level of below 2 ng/ml. It can, thus, be concluded that measurement of the salivary electrolytes is a test of only limited value in the assessment of digitalis intoxication, whereas determination of the serum digoxin level is a valuable diagnostic tool.

Calcium↗

Influence of diftalone on tolbutamide test and i.v. glucose tolerance test.

In 16 healthy volunteers tolbutamide tests or i.v. glucose tolerance tests were performed with and without previous oral administration of 1000 mg diftalone. Blood sugar and serum insulin were assayed in regular intervals. Both with and without previous administration of diftalone blood glucose after tolbutamide did not show any difference. IRI response to tolbutamide, measured by planimetrical integration showed a statistically significant augmentation (0.05 greater than p greater than 0.01) after diftalone. Glucose assimilation (K-value) after diftalone was decreased (0.05 greater than p greater than 0.01) yet within normal range. For the accompanying insulin levels however no statistically significant difference was observed. In addition a normalisation of pathological tolbutamide test after diftalone could be noted in five patients with subclinical diabetes. Our results indicate that diftalone seems to have the following three actions: 1. Enhancement of the tolbutamide action. 2. direct augmentation of IRI secretion, 3. a peripheral action on glucose metabolism.

Adult↗