Department of Pharmaceutics, School of Pharmacy, Fudan University, 826 Zhangheng Road, Room 604, Shanghai, 201203, People's Republic of China.
Pharm Res. 2012 Feb;29(2):546-58. doi: 10.1007/s11095-011-0641-0. Epub 2011 Dec 14.
To investigate the possible pathways for transport of wheat germ agglutinin conjugated PEG-PLA nanoparticles (WGA-NP) into the brain after nasal administration.
The nose-to-brain pathways were investigated using WGA-NP containing 6-coumarin (as a fluorescent marker) and (125)I-labeled WGA-NP. Ex vivo imaging analysis was also employed to visualize the transport process.
Nasal administration of WGA-NP to rats resulted in transcellular absorption across the olfactory epithelium and transfer to the olfactory bulb within 5 min. After entering the lamina propria, a proportion of WGA-NP were transferred from the olfactory nerve bundles and their surrounding connective tissue to the olfactory bulb. The trigeminal nerves also contributed to WGA-NP brain transfer, especially to WGA-NP distribution in the caudal brain areas. However, cerebrospinal fluid pathway may have little contribution to the process of transferring WGA-NP into the central nervous system (CNS) after intranasal administration.
These results demonstrated that intranasally administered WGA-NP reach the CNS via olfactory pathway and trigeminal nerve pathway, and extracellular transport along these nerves is the most possible mechanism.
研究小麦胚芽凝集素偶联聚乙二醇-聚乳酸纳米粒(WGA-NP)经鼻给药后进入大脑的可能途径。
使用含有 6-香豆素(作为荧光标记物)和(125)I 标记的 WGA-NP 的 WGA-NP 来研究鼻脑途径。还采用离体成像分析来可视化转运过程。
WGA-NP 经鼻腔给予大鼠后,5 分钟内即可穿过嗅上皮细胞进行跨细胞吸收,并转移至嗅球。进入固有层后,一部分 WGA-NP 从嗅神经束及其周围结缔组织转移到嗅球。三叉神经也有助于 WGA-NP 的脑转移,特别是在尾部脑区的 WGA-NP 分布。然而,脑脊髓液途径在 WGA-NP 经鼻内给药后进入中枢神经系统(CNS)的过程中可能贡献不大。
这些结果表明,经鼻给予的 WGA-NP 通过嗅觉途径和三叉神经途径到达 CNS,并且沿着这些神经的细胞外转运是最可能的机制。