Opioid-Reduktion
Studienlage · Detail RCT · Opioid-Reduktion · 2015

The effects of dronabinol during detoxification and the initiation of treatment with extended release naltrexone.

Gemischt GRADE Moderat 96 Zitate
Stichproben = 60 Pat.
Dauer8 Wochen
KontrollePlacebo
EndpunktSOWS
Verblindungdoppelblind
DesignRCT
Cannabinoidthc
Max. Dosis30.0 mg
Applikationoral
Kernaussage

Dronabinol reduzierte die Schwere des Opioid-Entzugs während der stationären Entgiftung signifikant (p=0.006), hatte aber keinen Effekt auf die Induktionsrate für XR-Naltrexon oder die Behandlungscompliance.

Zusammenfassung

n=60 opioidabhängige Patienten, Dronabinol 30mg/d vs. Placebo während Detoxifikation und Extended-Release-Naltrexon-Induktion. Dronabinol reduzierte Entzugsschwere (SOWS, p=0,006), aber kein Effekt auf XR-Naltrexon-Induktionsrate (66% vs. 55%) oder Behandlungsabschluss (35% vs. 35%). Post-hoc: 32% mit regelmäßigem Cannabis-Konsum hatten geringere Insomnie/Angst-Scores und höhere Abschlussrate.

P
PopulationOpioidabhängige Erwachsene während stationärer Detoxifikation und Naltrexon-Induktion, n=60
I
InterventionDronabinol 30 mg/Tag oral, während stationärer Detoxifikation und 5 Wochen ambulant (plus XR-Naltrexon-Injektion)
C
KontrollePlacebo (doppelblind, plus XR-Naltrexon-Injektion)
O
OutcomeOpioidentzugsschwere (SOWS) während stationärer Phase signifikant geringer unter Dronabinol vs. Placebo (p=0,006); kein signifikanter Unterschied bei XR-Naltrexon-Induktionsrate (66% vs. 55%) oder Therapieabschluss (35% vs. 35%)
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Moderat

Dritte von vier GRADE-Stufen, die Effektschätzung ist wahrscheinlich verlässlich.

Herabgestuft wegen
Ungenauigkeit
Qualitätsprofil
Größe
Verblindung Doppelblind
Effektstärke Gemischt
Zitate / Jahr
Autoren
Bisaga A, Sullivan MA, Glass A, Mishlen K, Pavlicova M, Haney M, Raby WN, Levin FR, Carpenter KM, Mariani JJ
Teilen
Abstract
Background: Evidence suggests that the cannabinoid system is involved in the maintenance of opioid dependence. We examined whether dronabinol, a cannabinoid receptor type 1 partial agonist, reduces opioid withdrawal and increases retention in treatment with extended release naltrexone (XR-naltrexone). Methods: Opioid dependent participants were randomized to receive dronabinol 30mg/d (n=40) or placebo (n=20), under double-blind conditions, while they underwent inpatient detoxification and naltrexone induction. Before discharge all participants received an injection of XR-naltrexone, with an additional dose given four weeks later. Dronabinol or placebo was given while inpatient and for 5 weeks afterwards. The primary outcomes were the severity of opioid withdrawal, measured with the Subjective Opioid Withdrawal Scale, and retention in treatment at the end of the inpatient phase and at the end of the 8-week trial. Results: The severity of opioid withdrawal during inpatient phase was lower in the dronabinol group relative to placebo group (p=0.006). Rates of successful induction onto XR-naltrexone (dronabinol 66%, placebo 55%) and completion of treatment (dronabinol 35%, placebo 35%) were not significantly different. Post hoc analysis showed that the 32% of participants who smoked Cannabis regularly during the outpatient phase had significantly lower ratings of insomnia and anxiety and were more likely to complete the 8-week trial. Conclusion: Dronabinol reduced the severity of opiate withdrawal during acute detoxification but had no effect on rates of XR-naltrexone treatment induction and retention. Participants who elected to smoke Cannabis during the trial were more likely to complete treatment regardless of treatment group assignment.

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