Search PubMed⌕ Search

Biomedical subjects

H Marty

Publications and source records attributed to H Marty.

38 records · Page 3Linked to original sources

[Salsolinol, an endogenous molecule. Possible implications in alcoholism, Parkinson's disease and pain].

Salsolinol can be formed either by condensation of dopamine with acetaldehyde, or by condensation of dopamine with pyruvic acid followed by decarboxylation. Salsolinol has a complex pharmacologic profile. Its opium-like activity may be related to alcohol dependency and to the effectiveness of naloxone during acute alcohol intoxication. Because they had noticed that alcoholism and Parkinson's disease rarely coexist, the authors undertook a study to confirm this fact and attempt to explain it by implicating salsolinol. Urinary excretion of salsolinol was found to increase following ingestion of alcohol, as well as in Parkinson patients under L-dopa treatment. The authors also found that urinary salsolinol was very low in untreated patients with Parkinson's disease. Salsolinol was detected in a number of foods and beverages. Separate assays of enantiomeres showed that the S enantiomere predominates in some foods whereas the R enantiomere is more abundant in humans. Lastly, the antinociceptive effects of salsolinol and its enantiomeres were studied in mice and antidepressant effects were evidenced using predictive tests.

Aged↗

Lack of importance of caffeine as an analgesic adjuvant of dipyrone in mice.

The analgesic effect of caffeine used alone and in combination with dipyrone and butalbital was evaluated after oral administration in mice, using two different pain tests: the hot plate test and the phenylbenzoquinone-induced writhing test. Neither caffeine (5 to 200 mg/kg) nor butalbital (10 and 20 mg/kg) (20 mg/kg was the highest dose that did not induce sleep) produced a significant antinociceptive effect, whereas dipyrone was active from 400 mg/kg in the hot plate test and from 50 mg/kg in the writhing test. The scores obtained with the combinations were not different from those of the dipyrone-treated group, except for the butalbital-dipyrone combination. Thus caffeine is not an analgesic adjuvant in mice; its presence in the combination studied appears to be justifiable only insofar as it inhibited the sedative effect of butalbital.

Aminopyrine↗