Cannabidiol curbs seizures in a mouse model of rare disease

Chronic oral cannabidiol delays seizure onset and reduces seizure burden in a mouse model of CLN2 disease.

PloS one • • Highly Relevant
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AI Summary

This preclinical study tested daily oral cannabidiol (CBD) in mice modeling late infantile neuronal ceroid lipofuscinosis, or CLN2 disease, a rare inherited neurodegenerative disorder that includes seizures and brain inflammation. The mice received 300 mg/kg of CBD from one month of age through the late stage of disease. Compared with untreated mice, CBD significantly delayed seizures or prevented them entirely in some animals.

The treatment produced a non-significant extension of lifespan and did not improve measures of neuroinflammation or neuroimmune activity, including GFAP, CD68, and cytokine/chemokine responses. These results suggest that CBD may reduce seizures through mechanisms other than changing the inflammatory markers commonly used to monitor CLN2 disease. Because this was a mouse study using a high experimental dose, it does not show that CBD is safe or effective for people with CLN2 disease or other seizure disorders.

💡 Key Findings

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In a mouse model of CLN2 disease, chronic oral CBD significantly delayed or fully prevented seizures compared with vehicle treatment.
Moderate
50%
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CBD treatment produced a non-significant extension of lifespan, so the study does not establish a clear survival benefit.
Moderate
50%
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The anti-seizure effect occurred without improving measured neuroinflammatory or neuroimmune markers, suggesting a mechanism other than reducing those disease signals.
Moderate
50%

📄 Original Abstract

A growing body of literature describes the anti-inflammatory, neuroprotective, and anti-epileptic properties of the cannabis sativa constituent cannabidiol, suggesting that it might play a useful role in the treatment of neurodegenerative diseases. Late infantile neuronal ceroid lipofuscinosis (CLN2 disease) is a rare pediatric neurodegenerative disorder resulting from an inherited dysfunction of the lysosome. CLN2 disease, and its representative animal models, display neuroimmune response, neuroinflammation, neurodegeneration, and epileptic seizures, and these symptoms are all touted as potential targets of cannabidiol therapeutic benefit. Here, we treated a valid model of CLN2 disease with long-term daily cannabidiol (300 mg/kg) from 1 month of age until disease end stage and evaluated epileptic seizures, lifespan, and markers of neuroimmune response. Chronic cannabidiol treatment significantly delayed or fully eliminated seizures in CLN2 model mice compared to those treated with vehicle only, and the treatment led to a non-significant extension of lifespan. These effects occurred in the absence of any therapeutic benefit to physiological markers of disease such as GFAP, CD68, and cytokine/chemokine reactivity. Taken together, we show that chronic treatment with cannabidiol confers significant anti-seizure benefit to the mouse model of CLN2 disease, and that it does not appear to do so by altering the inflammatory and neuroimmune markers traditionally used to track CLN2 disease progression.

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