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作为一种伊曲康唑脑部靶向载体的冰片和聚乙二醇双重修饰牛血清白蛋白纳米粒。

Borneol and poly (ethylene glycol) dual modified BSA nanoparticles as an itraconazole vehicle for brain targeting.

机构信息

State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing 210009, PR China.

Faculty of Pharmaceutical Sciences, Government College University Faisalabad, Faisalabad, Pakistan.

出版信息

Int J Pharm. 2020 Feb 15;575:119002. doi: 10.1016/j.ijpharm.2019.119002. Epub 2019 Dec 29.

Abstract

Itraconazole (ITZ) can be used for the treatment of cryptococcus neoformans meningitis and aspergillus brain abscess. While, the inherent hydrophobicity of ITZ and the existence of blood brain barrier (BBB) limit its applications as a central nervous system drug. In this study, a novel brain targeting drug delivery system based on bovine serum albumin (BSA) was constructed for enhancing ITZ distribution in brain. Firstly, ITZ was loaded into BSA nanoparticles (ITZ-NPs) with 11.6% of drug loading. Subsequently, the nanoparticles were modified with borneol (BO) and polyethylene glycol (PEG) (PEG/BO-ITZ-NPs). The resulting nanoparticles retained their nanosize (186.3 nm), uniform and spherical morphology, and negative surface charge (-21.03 mV). Cell uptake studies showed that compared with ITZ-NPs, PEG/BO-ITZ-NPs had significantly increased uptake in bEnd.3 cells, and the increase in BO concentration was beneficial for the cellular uptake of NPs. Moreover, PEG/BO-ITZ-NPs displayed an approximately 3.5-fold higher area under the curve in rats and about 2-fold higher brain distribution in mice than that of Sporanox®, i.e. ITZ solubilized by hydroxylpropyl-β-cyclodetrin, after i.v. administration. In a word, BO and PEG dual modified BSA nanoparticles may potentially serve as an ITZ vehicle for brain targeting.

摘要

伊曲康唑(ITZ)可用于治疗新型隐球菌性脑膜炎和曲霉菌性脑脓肿。然而,ITZ 的固有疏水性和血脑屏障(BBB)的存在限制了其作为中枢神经系统药物的应用。在这项研究中,构建了一种基于牛血清白蛋白(BSA)的新型脑靶向药物传递系统,以增强 ITZ 在脑内的分布。首先,将 ITZ 载入 BSA 纳米粒(ITZ-NPs)中,载药量为 11.6%。随后,纳米粒用冰片(BO)和聚乙二醇(PEG)(PEG/BO-ITZ-NPs)进行修饰。所得纳米粒保持纳米尺寸(186.3nm)、均匀和球形形态以及负表面电荷(-21.03mV)。细胞摄取研究表明,与 ITZ-NPs 相比,PEG/BO-ITZ-NPs 在 bEnd.3 细胞中的摄取显著增加,并且 BO 浓度的增加有利于 NPs 的细胞摄取。此外,与 Sporanox®(即羟丙基-β-环糊精溶解的 ITZ)相比,静脉注射后,PEG/BO-ITZ-NPs 在大鼠中的曲线下面积增加了约 3.5 倍,在小鼠中的脑分布增加了约 2 倍。总之,BO 和 PEG 双重修饰的 BSA 纳米粒可能作为 ITZ 的脑靶向载体。

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