Study register · detail
Clear benefit
GRADE
Moderate
60 citations
Samplen = 17 Pat.
ControlPlacebo spray
EndpointRIII reflex threshold and area
Blindingdoppelblind
DesignRCT (crossover, doppelblind, placebokontrolliert)
Cannabinoidkombination
THC:CBD1:1
Routeoromukosal
Key finding
THC/CBD spray significantly increased the nociceptive stimulus threshold (RIII reflex) and reduced the reflex area in MS patients.
Summary
n=17 (of 18 randomised) patients with secondary progressive MS, THC/CBD oromucosal spray vs. placebo (crossover); RIII reflex threshold increased and RIII reflex area reduced after cannabinoids (p<0.05); VAS pain score decreased (not significant); H/M ratio unchanged.
P
PopulationAdults with secondary progressive multiple sclerosis (SPMS), n=17 (of 18 randomised)
I
InterventionTHC/CBD combination as oromucosal spray (Sativex), dose not explicitly stated
C
ControlPlacebo spray
O
OutcomeRIII reflex threshold increased and RIII reflex area reduced after THC/CBD vs. placebo; VAS pain score also reduced, but not significantly; H/M ratio unchanged
Confidence in the evidence
Moderate
The third of four GRADE levels, the effect estimate is probably reliable.
Downgraded for
Imprecision
Quality profile
Sample size
★★★★★
Blinding
Double-blind
Effect size
Clear benefit
Citations / year
★★★★★
Authors
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Abstract
Although clinical studies show that cannabinoids improve central pain in patients with multiple sclerosis (MS) neurophysiological studies are lacking to investigate whether they also suppress these patients' electrophysiological responses to noxious stimulation. The flexion reflex (FR) in humans is a widely used technique for assessing the pain threshold and for studying spinal and supraspinal pain pathways and the neurotransmitter system involved in pain control. In a randomized, double-blind, placebo-controlled, cross-over study we investigated cannabinoid-induced changes in RIII reflex variables (threshold, latency and area) in a group of 18 patients with secondary progressive MS. To investigate whether cannabinoids act indirectly on the nociceptive reflex by modulating lower motoneuron excitability we also evaluated the H-reflex size after tibial nerve stimulation and calculated the H wave/M wave (H/M) ratio. Of the 18 patients recruited and randomized 17 completed the study. After patients used a commercial delta-9-tetrahydrocannabinol (THC) and cannabidiol mixture as an oromucosal spray the RIII reflex threshold increased and RIII reflex area decreased. The visual analogue scale score for pain also decreased, though not significantly. Conversely, the H/M ratio measured before patients received cannabinoids remained unchanged after therapy. In conclusion, the cannabinoid-induced changes in the RIII reflex threshold and area in patients with MS provide objective neurophysiological evidence that cannabinoids modulate the nociceptive system in patients with MS.
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