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大麻二酚增强脂纳米胶囊在体内外的血脑屏障通透性。

Cannabidiol Enhances the Passage of Lipid Nanocapsules across the Blood-Brain Barrier Both in Vitro and in Vivo.

机构信息

School of Life, Health and Chemical Sciences, Faculty of Science , The Open University , Milton Keynes MK7 6AA , United Kingdom.

出版信息

Mol Pharm. 2019 May 6;16(5):1999-2010. doi: 10.1021/acs.molpharmaceut.8b01344. Epub 2019 Mar 22.

DOI:10.1021/acs.molpharmaceut.8b01344
PMID:30865462
Abstract

Diseases affecting the central nervous system (CNS) should be regarded as a major health challenge due to the current lack of effective treatments given the hindrance to brain drug delivery imposed by the blood-brain barrier (BBB). Since efficient brain drug delivery should not solely rely on passive targeting, active targeting of nanomedicines into the CNS is being explored. The present study is devoted to the development of lipid nanocapsules (LNCs) decorated with nonpsychotropic cannabinoids as pioneering nonimmunogenic brain-targeting molecules and to the evaluation of their brain-targeting ability both in vitro and in vivo. Noticeably, both the permeability experiments across the hCMEC/D3 cell-based in vitro BBB model and the biodistribution experiments in mice consistently demonstrated that the highest brain-targeting ability was achieved with the smallest-sized cannabinoid-decorated LNCs. Importantly, the enhancement in brain targeting achieved with the conjugation of cannabidiol to LNCs outperformed by 6-fold the enhancement observed for the G-Technology (the main brain active strategy that has already entered clinical trials for the treatment of CNS diseases). As the transport efficiency across the BBB certainly determines the efficacy of the treatments for brain disorders, small cannabinoid-decorated LNCs represent auspicious platforms for the design and development of novel therapies for CNS diseases.

摘要

由于血脑屏障(BBB)对脑内药物递送的阻碍,目前缺乏有效的治疗方法,因此,影响中枢神经系统(CNS)的疾病应被视为主要的健康挑战。由于有效的脑部药物递送不应仅仅依赖于被动靶向,因此正在探索将纳米药物主动靶向到中枢神经系统。本研究致力于开发用非精神类大麻素修饰的脂质纳米胶囊(LNC)作为开创性的非免疫原性脑靶向分子,并评估它们在体外和体内的脑靶向能力。值得注意的是,跨 hCMEC/D3 细胞体外 BBB 模型的渗透实验和在小鼠中的体内分布实验一致表明,具有最小粒径的大麻素修饰 LNC 具有最高的脑靶向能力。重要的是,与 LNC 结合的大麻二酚的脑靶向增强作用是 G-Technology(一种主要的脑活性策略,已经进入 CNS 疾病治疗的临床试验)的 6 倍。由于跨 BBB 的转运效率肯定会决定治疗脑疾病的疗效,因此,小的大麻素修饰 LNC 代表了设计和开发治疗 CNS 疾病的新型治疗方法的有前途的平台。

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