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一种新型乳铁蛋白修饰的β-环糊精纳米载体用于脑靶向药物递送。

A novel lactoferrin-modified β-cyclodextrin nanocarrier for brain-targeting drug delivery.

机构信息

Department of Pharmaceutics, School of Pharmacy, East China University of Science and Technology, Shanghai 200237, China.

出版信息

Int J Pharm. 2013 Dec 15;458(1):110-7. doi: 10.1016/j.ijpharm.2013.10.005. Epub 2013 Oct 12.

Abstract

The blood-brain barrier (BBB) restricts the transfer and delivery of most drug substances to brain. In this study, a novel nano-drug delivery system for brain-targeting was developed and investigated in vitro and in vivo. Lactoferrin (Lf) was selected as a brain-targeting ligand and conjugated to β-cyclodextrin (β-CD) via the heterobifunctional polyethyleneglycol (PEG) linker NHS-PEG-MAL, yielding Lf conjugated β-cyclodextrin (Lf-CD). UV-vis, FTIR, NMR and transmission electron microscopy (TEM) techniques clearly demonstrated the successful synthesis of Lf-CD nanoparticles with the average diameter of 92.9 ± 16.5 nm. Using near-infrared fluorescent dye IR-775 chloride (IR) as a model compound of poorly water-soluble drugs, IR-loaded Lf-CD nanoparticles (Lf-CD/IR) were successfully prepared with a high entrapment efficiency of 98.1 ± 4.8%. Biodistribution and pharmacokinetics of Lf-CD/IR were evaluated in KM mice after intravenous administration. The results of tissue distribution studies revealed that Lf-CD/IR treatment showed greatly improved BBB transport efficiency. In addition, AUC0-2h of IR in brain after Lf-CD/IR treatment was seven fold higher compared with that of IR treatment without Lf-CD nano-carriers, demonstrating that the introduction of Lf-CD drug-delivery system positively resulted in a higher AUC located in brain tissue. These results provide evidence that Lf-CD nanoparticles could be exploited as a potential brain-targeting drug delivery system for hydrophobic drugs and diagnostic reagents which normally fail to pass through the BBB.

摘要

血脑屏障(BBB)限制了大多数药物物质向大脑的转移和传递。在这项研究中,开发了一种新型的脑靶向纳米药物传递系统,并进行了体外和体内研究。乳铁蛋白(Lf)被选为脑靶向配体,并通过杂双功能聚乙二醇(PEG)接头 NHS-PEG-MAL 与β-环糊精(β-CD)连接,得到Lf 共轭β-环糊精(Lf-CD)。紫外可见分光光度法、傅里叶变换红外光谱(FTIR)、核磁共振(NMR)和透射电子显微镜(TEM)技术清楚地证明了成功合成了平均直径为 92.9 ± 16.5nm 的 Lf-CD 纳米粒子。以近红外荧光染料 IR-775 氯化物(IR)作为亲脂性差的药物模型化合物,成功制备了载有 IR 的 Lf-CD 纳米粒子(Lf-CD/IR),包封率为 98.1 ± 4.8%。静脉注射后,在 KM 小鼠中评价了 Lf-CD/IR 的体内分布和药代动力学。组织分布研究结果表明,Lf-CD/IR 治疗显著提高了 BBB 的转运效率。此外,Lf-CD/IR 治疗后 IR 在脑中的 AUC0-2h 是未用 Lf-CD 纳米载体治疗的 7 倍,表明 Lf-CD 药物传递系统的引入导致位于脑组织中的 AUC 更高。这些结果为 Lf-CD 纳米粒子可以被开发为用于亲脂性药物和诊断试剂的潜在脑靶向药物传递系统提供了证据,这些药物通常无法通过 BBB。

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