CBD–THC blend shows limited benefits in Alzheimer’s mice

Combining cannabidiol and delta-9-tetrahydrocannabinol at a 50:3 ratio - a new therapeutic strategy for APPSwe/PS1ΔE9 transgenic mice?

Neurobiology of aging • • Highly Relevant
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AI Summary

This preclinical study tested a combination of CBD and THC at a 50:3 ratio in older mice genetically predisposed to Alzheimer’s disease. The mice received daily treatment for 3 weeks before and during behavioral testing. The combination produced some benefits: it improved the animals’ initial ability to locate a reward zone during a spatial-memory test and normalized an unusually strong acoustic startle response in female mice.

However, the treatment did not restore object-recognition memory or spatial learning. It also produced potential drawbacks, including poorer social recognition in male mice and reduced sensorimotor gating in females. The researchers concluded that the combination had mild therapeutic effects but also off-target effects, suggesting it may be less useful than CBD alone in this advanced mouse model. These findings are preliminary and do not show that CBD–THC products can treat Alzheimer’s disease in people; different doses and ratios require further study.

💡 Key Findings

1
The 50:3 CBD–THC combination improved one measure of spatial-memory performance in APP/PS1 mice and restored the heightened acoustic startle response seen in female mice.
Limited
35%
2
The treatment did not restore object-recognition memory or spatial learning, two other deficits observed in the Alzheimer’s-model mice.
Limited
35%
3
The combination caused potential off-target behavioral effects, including impaired social recognition in males and reduced sensorimotor gating in females.
Limited
35%
4
The researchers concluded that the combination showed mild therapeutic properties but may be less preferable than CBD alone in this advanced Alzheimer’s mouse model.
Limited
35%

📄 Original Abstract

Preclinical evidence suggests that cannabidiol (CBD) can ameliorate Alzheimer's disease (AD)-related pathologies, including amyloid-β aggregation and tau hyperphosphorylation, and can reverse and prevent cognitive decline in AD rodent models. Interestingly, low-dose delta-9-tetrahydrocannabinol (THC) can improve cognition in aged mice, and 1:1 CBD+THC appears to exhibit a greater therapeutic profile in AD mouse models than either phytocannabinoid alone. Here, the potential of chronic treatment with 50 mg/kg bodyweight CBD combined with 3 mg/kg THC to reverse the behavioural deficits of adult APPSwe/PS1ΔE9 (APP/PS1) AD transgenic mice was evaluated. 14-month-old male and female transgenic mice and their wild type-like littermates were used. They were treated via daily intraperitoneal injection with CBD+THC treatment (or vehicle) for 3 weeks prior to and throughout behavioural assessment. CBD+THC significantly improved the initial localisation of the reward zone during a spatial memory probe trial in APP/PS1 mice and restored the increased acoustic startle response of APP/PS1 females. APP/PS1 mice had deficient object recognition memory and impaired spatial learning, neither of which were restored following combined cannabinoid treatment. Interestingly, CBD+THC impaired social recognition of APP/PS1 males. Treatment reduced sensorimotor gating in females. In males, treatment decreased risk assessment behaviour, and reduced acoustic startle. CBD+THC treatment had mild therapeutic properties but also off-target effects, suggesting that CBD+THC might be less preferable than CBD alone in a mouse model of advanced AD. Further research into alternate cannabinoid dosage and dose ratios is required to elucidate the potential of cannabinoid combination therapies for AD more comprehensively.

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