Study register · detail
Mixed
GRADE
Very low
0 citations
Samplen = 46 Pat.
Durationunclear
ControlNon-cannabis users with pharmacoresistant…
EndpointQOLIE-31
Blindingn.a.
DesignKohortenstudie
Cannabinoidvollspektrum
Key finding
Cannabis users showed better values in the subscore 'energy and fatigue', but no significant difference in the overall QOLIE-31 score; negative correlation between total score and cannabis use disorder.
Summary
Observational study on quality of life (QOLIE-31) in cannabis users vs. non-users with treatment-refractory epilepsy; n=46 (25 cannabis users, 21 controls). Significantly higher T-subscore 'energy and fatigue' in the cannabis group (p=0,004), but no difference in the overall T-score (p=0,11). Significant negative correlation between overall T-score and cannabis use disorder (p=0,032).
P
PopulationAdults with pharmacoresistant epilepsy, n=46 (cannabis users n=25, non-users n=21), tertiary epilepsy center Canada
I
InterventionArtisanal cannabis (observation of existing use, no experimental intervention)
C
ControlNon-cannabis users with pharmacoresistant epilepsy
O
OutcomeNo significant difference in QOLIE-31 total score (p=0,11); significantly higher subscore 'energy and fatigue' in the cannabis group (p=0,004); significant negative correlation between total score and cannabis use disorder (p=0,032)
Confidence in the evidence
Very low
The lowest GRADE level, the effect estimate remains uncertain.
Downgraded for
Imprecision
Quality profile
Sample size
★★★★★
Blinding
—
Effect size
Mixed
Citations / year
★★★★★
Authors
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Abstract
Objective: Very few publications have reported the impact of artisanal cannabis use on overall quality of life among people with drug-resistant epilepsy. This study aimed to evaluate the association of artisanal cannabis use among adults with drug-resistant epilepsy with quality of life, and to determine if an association exists between Quality-of-Life in Epilepsy Inventory-31 (QOLIE-31) 'T scores' and different clinical variables.
Methods: This study included patients admitted to a Canadian tertiary care epilepsy center as part of a larger study. These patients were confirmed to have drug-resistant epilepsy by an epileptologist at the Ambulatory Epilepsy Clinic. Patients were categorized into cannabis users (CAN group) (n = 25) and Non-cannabis users (Non-CAN group) (n = 21). Data was collected on RedCap(R) for epilepsy and cannabis use details. These were analyzed for an association using a binary multivariable logistic regression model between QOLIE-31 'T scores' and age, sex, epilepsy duration, age at initiation of use, duration of cannabis use and psychiatric related comorbidity for all patients. Additionally, different 'T subscores' of the questionnaire were compared between the CAN group and Non-CAN group.
Results: A statistically significant difference between the CAN group and Non-CAN group for the T subscore 'energy and fatigue' (p = .004) was found, with the CAN group scoring higher. However, for the 'overall T score' between the two groups there was no statically significant difference (p = .11). Additionally, a significant negative correlation between 'overall T score' and cannabis use disorder (p = .032) was found.
Significance: This study provides new data on association of quality of life in epilepsy with cannabis use and can serve as a foundation for larger future studies to better assess this association.
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