Rapid transport within cerebral perivascular spaces underlies widespread tracer distribution in the brain after intranasal administration.

IF 4.5
Jeffrey J Lochhead, Daniel J Wolak, Michelle E Pizzo, Robert G Thorne
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引用次数: 188

Abstract

The intranasal administration route is increasingly being used as a noninvasive method to bypass the blood-brain barrier because evidence suggests small fractions of nasally applied macromolecules may reach the brain directly via olfactory and trigeminal nerve components present in the nasal mucosa. Upon reaching the olfactory bulb (olfactory pathway) or brainstem (trigeminal pathway), intranasally delivered macromolecules appear to rapidly distribute within the brains of rodents and primates. The mechanisms responsible for this distribution have yet to be fully characterized. Here, we have used ex vivo fluorescence imaging to show that bulk flow within the perivascular space (PVS) of cerebral blood vessels contributes to the rapid central distribution of fluorescently labeled 3 and 10 kDa dextran tracers after intranasal administration in anesthetized adult rats. Comparison of tracer plasma levels and fluorescent signal distribution associated with the PVS of surface arteries and internal cerebral vessels showed that the intranasal route results in unique central access to the PVS not observed after matched intravascular dosing in separate animals. Intranasal targeting to the PVS was tracer size dependent and could be regulated by modifying nasal epithelial permeability. These results suggest cerebral perivascular convection likely has a key role in intranasal drug delivery to the brain.

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鼻内给药后,在脑血管周围空间内的快速运输是示踪剂在脑内广泛分布的基础。
鼻内给药途径越来越多地被用作绕过血脑屏障的非侵入性方法,因为有证据表明,鼻腔施用的一小部分大分子可以通过鼻黏膜中的嗅觉和三叉神经成分直接到达大脑。在到达嗅球(嗅觉通路)或脑干(三叉神经通路)后,经鼻传递的大分子似乎在啮齿动物和灵长类动物的大脑中迅速分布。造成这种分配的机制尚未得到充分的描述。在此,我们使用离体荧光成像技术显示,麻醉成年大鼠经鼻给药后,脑血管血管周围空间(PVS)内的大流量有助于荧光标记的3和10 kDa葡聚糖示踪剂的快速中心分布。对比示踪剂血浆水平和荧光信号分布与表面动脉和颅内血管的PVS相关的结果表明,鼻内途径导致了独特的PVS中央通道,在不同的动物中,在匹配的血管内给药后没有观察到。鼻内对PVS的靶向作用依赖于示踪剂的大小,可以通过改变鼻上皮通透性来调节。这些结果表明,脑血管周围对流可能在鼻内药物输送到大脑中起关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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