HYDROXYL RADICAL-MEDIATED OXIDATION OF SEROTONIN - POTENTIAL INSIGHTSINTO THE NEUROTOXICITY OF METHAMPHETAMINE

Citation
Mz. Wrona et al., HYDROXYL RADICAL-MEDIATED OXIDATION OF SEROTONIN - POTENTIAL INSIGHTSINTO THE NEUROTOXICITY OF METHAMPHETAMINE, Journal of neurochemistry, 64(3), 1995, pp. 1390-1400
Citations number
50
Categorie Soggetti
Biology,Neurosciences
Journal title
ISSN journal
00223042
Volume
64
Issue
3
Year of publication
1995
Pages
1390 - 1400
Database
ISI
SICI code
0022-3042(1995)64:3<1390:HROOS->2.0.ZU;2-F
Abstract
When incubated with a hydroxyl radical (HO.)-generating system (ascorb ic acid/Fe2+-EDTA/O-2/H2O2), 5-hydroxytryptamine (5-HT; serotonin) is rapidly oxidized initially to a mixture of 2,5-, 4,5-, and 5,6-dihydro xytryptamine (DHT). The major reaction product is 2,5-DHT, which at ph ysiological pH exists as its keto tautomer, 5-hydroxy-3-ethylamino-2-o xindole (5-HEO). Rapid autoxidation of 4,5-DHT gives tryptamine-4,5-di one (T-4,5-D), which reacts with the C(3)-centered carbanion of 5-HEO to give l)-5-hydroxy-[3,7'-bi-1H-indole]-2,4',5'-3H-trione (7). The la tter slowly cyclizes to dro-5-hydroxyspiro[3H-indole-3,9'-[9H]pyrrolo[ 2,3- f]quinoline]-2,4',5'(1H)-trione (9). A minor amount of T-4,5-D di merizes to give 7,7'-bi-(5-hydroxytryptamine-4-one) (7,7'-D). In the p resence of GSH, the reaction of T-4,5-D with 5-HEO is diverted and, in the presence of sufficient concentrations of this tripeptide, complet ely blocked. This is because GSH preferentially reacts with T-4,5-D to give 7-S-glutathionyltryptamine-4,5-dione (11). The results of this i nvestigation suggest that 5,6-DHT, 5-HEO, 7, and 9 are products unique to the HO.-mediated oxidation of 5-HT. Thus, the observation of other investigators that 5,6-DHT is formed in the brains of rats following a large dose of methamphetamine (MA) suggests that this drug might evo ke HO. formation. However, the present in vitro study indicates that 5 ,6-DHT is a rather minor, unstable product of the HO.-mediated oxidati on of 5-HT and suggests that detection of 5-HEO, 7/9, and 11 in rat br ain following MA administration could provide additional support for H O. formation. Furthermore, one or more of the intermediates and major products of oxidation of 5-HT by HO. might, in addition to 5,6-DHT, co ntribute to the MA-induced degeneration of serotonergic neurons.