Central Blockade of Cannabinoid CB1 and CB2 Receptors Increases Force Generation in Reserpine-Treated Mice, but Only CB1 Blockade Extends the Duration of Effort

Abstract Motor impairment in parkinsonism extends beyond the classical triad to weakness and a reduced capacity to sustain motor output, whose neuromodulatory control is poorly resolved. The endocannabinoid system is a candidate regulator, but CB1 and CB2 receptors have not been separated within one preparation. Reserpine-treated adult female Swiss mice received vehicle, the CB1 antagonist AM251, or the CB2 antagonist AM630 into the lateral ventricle; catalepsy was recorded across three trials and neuromuscular performance in a grip force task. Both antagonists increased the force generated at task onset, by amounts these data cannot distinguish: AM630 by 53.9 gf (95% CI 22.5–85.3) and AM251 by 41.2 gf (95% CI 8.8–73.6). They separated on duration. AM251 increased grip time by 619 ms (95% CI 113–1125), whereas AM630 did not (−70 ms, 95% CI −560 to +421). An interaction contrast on the force–time balance followed from that difference: AM630 shifted the balance toward force (−2.03 SD, P = 0.008), AM251 did not (−0.36 SD, P = 0.66), and the two differed from each other by 1.67 SD (P = 0.022). AM251 also reduced the odds of a cataleptic response (OR 0.16, 95% CI 0.03–0.89). Adjusting for body mass left both force effects unchanged. The dissociation is therefore in the duration of effort rather than in its force: both antagonists raise force, and only CB1 blockade also extends the time over which it is maintained. Delivered intracerebroventricularly, these effects are central in origin but not anatomically localized.

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Journal
ACS Pharmacology & Translational Science
Published
2026-09-29
DOI
https://doi.org/10.1021/acsptsci.6c00206
Primary Topic
Cannabis and Cannabinoid Research
Type
article
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article

Central Blockade of Cannabinoid CB1 and CB2 Receptors Increases Force Generation in Reserpine-Treated Mice, but Only CB1 Blockade Extends the Duration of Effort

Aderbal S. Aguiar, Isadora Veiga da Rosa, Naiara de Souza Santos, Tatyana Nery et al.
ACS Pharmacology & Translational Science
Cannabis and Cannabinoid Research
article

Central Blockade of Cannabinoid CB1 and CB2 Receptors Increases Force Generation in Reserpine-Treated Mice, but Only CB1 Blockade Extends the Duration of Effort

Aderbal S. Aguiar, Isadora Veiga da Rosa, Naiara de Souza Santos, Tatyana Nery, Amanda Leite Bastos-Pereira, Beatriz Carminati dos Santos, Izabel Fabro Feltrin, LAIZE DE FREITAS MAZZARDO
article en

Abstract

Abstract Motor impairment in parkinsonism extends beyond the classical triad to weakness and a reduced capacity to sustain motor output, whose neuromodulatory control is poorly resolved. The endocannabinoid system is a candidate regulator, but CB1 and CB2 receptors have not been separated within one preparation. Reserpine-treated adult female Swiss mice received vehicle, the CB1 antagonist AM251, or the CB2 antagonist AM630 into the lateral ventricle; catalepsy was recorded across three trials and neuromuscular performance in a grip force task. Both antagonists increased the force generated at task onset, by amounts these data cannot distinguish: AM630 by 53.9 gf (95% CI 22.5–85.3) and AM251 by 41.2 gf (95% CI 8.8–73.6). They separated on duration. AM251 increased grip time by 619 ms (95% CI 113–1125), whereas AM630 did not (−70 ms, 95% CI −560 to +421). An interaction contrast on the force–time balance followed from that difference: AM630 shifted the balance toward force (−2.03 SD, P = 0.008), AM251 did not (−0.36 SD, P = 0.66), and the two differed from each other by 1.67 SD (P = 0.022). AM251 also reduced the odds of a cataleptic response (OR 0.16, 95% CI 0.03–0.89). Adjusting for body mass left both force effects unchanged. The dissociation is therefore in the duration of effort rather than in its force: both antagonists raise force, and only CB1 blockade also extends the time over which it is maintained. Delivered intracerebroventricularly, these effects are central in origin but not anatomically localized.

ACS Pharmacology & Translational Science
Universidade Federal de Santa Catarina (BR)
Openalex Percentile: Top 13%
Cannabis and Cannabinoid Research
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