Psychose-Risiko
Studienlage · Detail RCT (crossover, doppelblind, i.v. THC) · Psychose-Risiko · 2015

The psychosis-like effects of Δ(9)-tetrahydrocannabinol are associated with increased cortical noise in healthy humans.

Klarer Nutzen GRADE Moderat 52 Zitate
Stichproben = 24 Pat.
Dauer3 Testtage
KontrollePlacebo
EndpunktLempel-Ziv-Komplexität
Verblindungdoppelblind
DesignRCT (crossover, doppelblind, i.v. THC)
Cannabinoidthc
Kernaussage

Δ9-THC steigert dosisabhängig kortikales Neural Noise, das mit psychosemimetischen Positiv- und Desorganisationssymptomen korreliert.

Zusammenfassung

n=24 gesunde Probanden, randomisierter Crossover-RCT mit i.v. Δ⁹-THC (Placebo, 0.015, 0.03 mg/kg); THC erhöhte neuronales Rauschen (Lempel-Ziv-Komplexität) dosisabhängig; starke positive Korrelation zwischen neuronalem Rauschen und Psychose-ähnlichen Positiv- und Desorganisationssymptomen (unabhängig von Signalleistung); negativsymptom-ähnliche Effekte korrelierten nicht mit Rauschen.

P
PopulationGesunde Erwachsene, n=24
I
InterventionIntravenöses Δ9-THC, 0,015 und 0,03 mg/kg, Crossover
C
KontrollePlacebo (i.v.)
O
OutcomeΔ9-THC erhöhte kortikales Neural Noise (Lempel-Ziv-Komplexität) dosisabhängig; starke positive Korrelation zwischen Neural Noise und psychosemimetischen Positiv-/Desorganisationssymptomen (unabhängig von Signalleistung), keine Korrelation mit negativen Symptomen
Vertrauen in die Evidenz
Moderat

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

Herabgestuft wegen
Ungenauigkeit
Qualitätsprofil
Größe
Verblindung Doppelblind
Effektstärke Klarer Nutzen
Zitate / Jahr
Autoren
Cortes-Briones JA, Cahill JD, Skosnik PD, Mathalon DH, Williams A, Sewell RA, Roach BJ, Ford JM, Ranganathan M, D'Souza DC.
DOI 10.1016/j.biopsych.2015.03.023
Design: RCT (crossover, doppelblind, i.v. THC)
Teilen
Abstract
<h4>Background</h4>Drugs that induce psychosis may do so by increasing the level of task-irrelevant random neural activity or neural noise. Increased levels of neural noise have been demonstrated in psychotic disorders. We tested the hypothesis that neural noise could also be involved in the psychotomimetic effects of delta-9-tetrahydrocannabinol (Δ(9)-THC), the principal active constituent of cannabis.<h4>Methods</h4>Neural noise was indexed by measuring the level of randomness in the electroencephalogram during the prestimulus baseline period of an oddball task using Lempel-Ziv complexity, a nonlinear measure of signal randomness. The acute, dose-related effects of Δ(9)-THC on Lempel-Ziv complexity and signal power were studied in humans (n = 24) who completed 3 test days during which they received intravenous Δ(9)-THC (placebo, .015 and .03 mg/kg) in a double-blind, randomized, crossover, and counterbalanced design.<h4>Results</h4>Δ(9)-THC increased neural noise in a dose-related manner. Furthermore, there was a strong positive relationship between neural noise and the psychosis-like positive and disorganization symptoms induced by Δ(9)-THC, which was independent of total signal power. Instead, there was no relationship between noise and negative-like symptoms. In addition, Δ(9)-THC reduced total signal power during both active drug conditions compared with placebo, but no relationship was detected between signal power and psychosis-like symptoms.<h4>Conclusions</h4>At doses that produced psychosis-like effects, Δ(9)-THC increased neural noise in humans in a dose-dependent manner. Furthermore, increases in neural noise were related with increases in Δ(9)-THC-induced psychosis-like symptoms but not negative-like symptoms. These findings suggest that increases in neural noise may contribute to the psychotomimetic effects of Δ(9)-THC.

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