Intranasal NLC-CBD shows promise, but clinical trials are still needed

Nanostructured lipid carriers for intranasal cannabidiol delivery in Dravet and Lennox-Gastaut syndromes: bridging preclinical promise to clinical translation.

Therapeutic delivery • • Review • Highly Relevant
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AI Summary

This literature review examines whether intranasal nanostructured lipid carrier (NLC) formulations of cannabidiol (CBD) could improve seizure treatment for children with Dravet syndrome (DS) and Lennox-Gastaut syndrome (LGS). It evaluates existing preclinical evidence, along with safety, pharmacokinetic, regulatory, and clinical-development considerations. The animal studies discussed—including established seizure models such as pentylenetetrazol-induced convulsions—suggest that intranasal NLC-CBD can increase CBD levels in the brain, support anticonvulsant activity, and extend central exposure compared with free or orally administered CBD.

The proposed advantage is that nose-to-brain delivery may avoid some digestive and first-pass metabolism limitations associated with oral CBD, potentially allowing faster brain exposure and lower systemic exposure. However, the review reports no completed pediatric clinical-trial results or quantitative clinical effect estimates. Important gaps include limited long-term safety information, a lack of disease-specific genetic models for DS and LGS, differences in pediatric nasal physiology, and uncertainty about appropriate clinical dosing. This abstract-based summary cannot establish that intranasal NLC-CBD is safe or effective in children; properly designed clinical trials are still required.

💡 Key Findings

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This is a literature review of intranasal NLC-CBD for severe childhood epilepsies, drawing mainly on preclinical animal evidence rather than completed human trials.
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In established animal seizure models, intranasal NLC-CBD was associated with higher brain CBD levels and anticonvulsant activity compared with relevant free or orally administered CBD preparations.
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The review identifies major translational gaps, including insufficient long-term safety data, limited DS/LGS-specific genetic models, pediatric nasal-physiology variability, and uncertain clinical dosing.
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The abstract concludes that properly designed pediatric clinical trials are needed to determine the safety, pharmacokinetics, and efficacy of intranasal NLC-CBD in DS and LGS.
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📄 Original Abstract

Dravet syndrome (DS) and Lennox-Gastaut syndrome (LGS) are severe developmental epileptic encephalopathies that appear in early childhood, are unresponsive to medications, and have a dismal neurodevelopmental prognosis. Most patients do not respond well to polytherapy, and the need to fulfill this gap in clinical practice is urgent. Cannabidiol (CBD) has proven to be an effective adjunct drug, but oral preparations have low bioavailability, slow onset and systemic adverse effects. Nanostructured lipid carriers (NLCs) are an innovative therapeutic technology that can deliver CBD directly to the brain via the nose, enhance brain targeting, achieve faster onset, and minimize systemic exposure, which could be a valuable solution to current deficiencies in treatment.Intranasal NLC-CBD has preclinical evidence of increasing brain CBD levels, facilitating anticonvulsant action, and protecting against seizures in established animal models, like pentylenetetrazol-induced convulsions. NLC-based preparations have increased brain-to-plasma ratios and longer central exposure at lower doses in comparison to free or orally administered CBD. Despite these promising findings, there are still translational gaps to be addressed, such as insufficient safety data in the long term, disease-specific DS/LGS genetic models, inconsistencies in the pediatric nasal physiology, and conventional clinical dosing paradigms.Literature for this review was identified through searches of PubMed, Scopus, Web of Science, and Google Scholar, covering studies published up to March 2026 on CBD, NLC, intranasal drug delivery, DS, and LGS.There is a dire need to carry out properly designed clinical trials that would demonstrate the safety, pharmacokinetics (PK) and efficacy of intranasal NLC-CBD in DS and LGS. The first pediatric clinical trials, adaptive trial models and regulatory harmonization are necessary to convert this noble nanomedicine approach into a clinical therapy. Dravet syndrome (DS) and Lennox-Gastaut syndrome (LGS) are rare and severe forms of epilepsy which often start in childhood. A significant number of patients fail to respond to several antiseizure drugs, and have recurrent seizures. Cannabidiol (CBD) is a chemical found in the cannabis plant that is effective in reducing seizures, but there are some limitations in oral CBD products, including slow absorption and inconsistent efficacy and the possibility for drug interaction. In this review, a novel delivery system of delivering CBD to the brain via a nose spray containing nanostructured lipid carriers (NLCs) is investigated. The use of these tiny lipid-based particles can aid in the delivery of CBD to the brain more rapidly and effectively, avoiding the digestion process and lowering first-pass metabolism. Consequently, intranasal NLC-CBD is likely to have a quicker onset of effect, better brain penetration, and reduced doses. This review provides a summary of existing preclinical evidence, as well as safety and regulatory considerations and outlines the possible clinical development options for this technology. It also underscores some of the future possibilities, such as the application of artificial intelligence (AI), novel clinical trial designs, and combination therapies. While additional clinical trials are necessary, intranasal NLC-CBD is a promising approach for better seizure control, quality of life and treatment ease for DS and LGS patients and their caregivers.

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