Oral Delta-9-Tetrahydrocannabinol (THC) Increases Parasympathetic Activity and Supraspinal Conditioned Pain Modulation in Chronic Neuropathic Pain Male Patients: A Crossover, Double-Blind, Placebo-Controlled Trial.
Weizman et al.·CNS drugsImpact 6.6
Clear benefitGRADEModerate15 citations
Samplen = 12 Pat.
DurationSingle administration…
ControlPlacebo
EndpointLF/HF ratio
Blindingdoppelblind
DesignRCT
Cannabinoidthc
Routeoromukosal
”Key finding
THC significantly reduced the LF/HF ratio (increased parasympathetic activity) and significantly improved conditioned pain modulation compared to placebo.
Summary
Cross-over RCT in n=12 male patients with chronic radicular neuropathic pain; oral THC 0.2 mg/kg vs. placebo. THC significantly reduced the LF/HF HRV ratio (parasympathetic activation, F(1,11)=20.5, p<0.005) and improved conditioned pain modulation (CPM response, F(1,9)=5.2, p=0.048). THC-induced LF/HF reduction correlated with increased functional connectivity between rostral ventrolateral medulla and dorsolateral prefrontal cortex (T(10)=6.4, cluster p-FDR<0.005).
P
PopulationMale patients with chronic radicular neuropathic pain, n=12
I
InterventionSublingual THC 0,2 mg/kg, single dose
C
ControlPlacebo (sublingual, single dose)
O
OutcomeTHC significantly reduced LF/HF ratio vs. placebo (F(1,11)=20,5; p<0,005) and improved CPM response (F(1,9)=5,2; p=0,048)
Confidence in the evidence
Very lowLowModerateHigh
Moderate
The third of four GRADE levels, the effect estimate is probably reliable.
Downgraded for
Imprecision
Quality profile
Sample size★★★★★
BlindingDouble-blind
Effect sizeClear benefit
Citations / year★★★★★
Authors
Weizman L, Sharon H, Dayan L, Espaniol J, Brill S, Nahman-Averbuch H, Hendler T, Jacob G
Background: Disordered autonomic nervous system regulation and supraspinal pain inhibition have been repeatedly described in chronic pain. We aimed to explore the effects of delta-9-tetrahydrocannabinol (THC), an emerging treatment option, on autonomic nervous system and central pain modulation measures in patients with chronic pain.
Methods: Twelve male patients with chronic radicular neuropathic pain participated in a randomized, double-blind, crossover, placebo-controlled, single-administration trial. Low/high frequency (LF/HF) heart rate variability (HRV) ratio and conditioned pain modulation (CPM) response were measured and resting-state functional magnetic resonance imaging (MRI) was performed at baseline and after sublingual administration of either 0.2 mg/kg oral THC or placebo.
Results: THC significantly reduced the LF/HF ratio compared with placebo (interaction effect F(1,11) = 20.5; p < 0.005) and significantly improved CPM responses (interaction effect F(1,9) = 5.2; p = 0.048). The THC-induced reduction in LF/HF ratio correlated with increased functional connectivity between the rostral ventrolateral medulla and the dorsolateral prefrontal cortex [T(10) = 6.4, cluster p-FDR < 0.005].
Conclusions: THC shifts the autonomic balance towards increased parasympathetic tone and improves inhibitory pain mechanisms in chronic pain. The increase in vagal tone correlates with connectivity changes in higher-order regulatory brain regions, suggesting THC exerts top-down effects. These changes may reflect a normalizing effect of THC on multiple domains of supraspinal pain dysregulation.
Clinical Trial Registry Number: NCT02560545.