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通过核心壳型双功能嵌段共聚物混合胶束载体经鼻腔递送来实现奥氮平的脑靶向:体外特性鉴定、鼻毒性的离体评估和体内生物分布研究。

Brain targeting of olanzapine via intranasal delivery of core-shell difunctional block copolymer mixed nanomicellar carriers: in vitro characterization, ex vivo estimation of nasal toxicity and in vivo biodistribution studies.

机构信息

Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Cairo University, 11562 Cairo, Egypt.

出版信息

Int J Pharm. 2013 Aug 16;452(1-2):300-10. doi: 10.1016/j.ijpharm.2013.04.084. Epub 2013 May 14.

DOI:10.1016/j.ijpharm.2013.04.084
PMID:23684658
Abstract

Olanzapine (OZ) is atypical antipsychotic drug that suffers from low brain permeability due to efflux by P-glycoproteins and hepatic first-pass metabolism. The current work aimed to develop OZ-loaded micellar nanocarriers and investigate their nose-to-brain targeting potential. OZ-loaded (5mg/ml) micelles (F1-F12) were prepared, using a Pluronic(®) mixture of L121 and P123, adopting thin-film hydration method. The micelles were evaluated for turbidity, particle size, morphology, drug-entrapment efficiency (EE%), drug-loading characteristics, in vitro drug release and ex vivo nasal toxicity in sheep. The in vivo biodistribution and pharmacokinetic studies in the brain/blood following intravenous (i.v.) and intranasal (i.n.) administrations of technetium-labeled OZ-loaded micelles and OZ-solution were evaluated in rats. Spherical micelles ranging in size from 18.97 to 380.70 nm were successfully developed. (1)H NMR studies confirmed OZ incorporation into micelle core. At a drug:Pluronic(®) L121:Pluronic(®) P123 ratio of 1:8:32 (F11), the micelles achieved a conciliation between kinetic and thermodynamic stability, high drug-EE%, controlled drug-release characteristics and evoked minor histopathological changes in sheep nasal mucosa. The significantly (P<0.05) higher values for F11 micelles (i.n.); brain/blood ratio (0.92), drug targeting index (5.20), drug targeting efficiency (520.26%) and direct transport percentage (80.76%) confirm the development of a promising non-invasive OZ-loaded nose-to-brain delivery system.

摘要

奥氮平(OZ)是一种非典型抗精神病药物,由于 P-糖蛋白外排和肝脏首过代谢,其脑穿透性较低。本研究旨在开发奥氮平载药胶束纳米载体,并研究其经鼻递药的靶向性。采用薄膜水化法,以 Pluronic®混合物 L121 和 P123 为载体,制备载药量为 5mg/ml 的奥氮平载药胶束(F1-F12)。对胶束的浊度、粒径、形态、药物包封效率(EE%)、载药特性、体外药物释放和绵羊鼻毒性进行评价。采用放射性核素标记奥氮平载药胶束和奥氮平溶液,研究静脉(i.v.)和鼻腔(i.n.)给药后在大鼠体内的生物分布和药代动力学。成功制备了粒径为 18.97-380.70nm 的球形胶束。(1)H NMR 研究证实了奥氮平包载于胶束内核。在药物:Pluronic® L121:Pluronic® P123 比例为 1:8:32(F11)时,胶束达到了动力学和热力学稳定性的平衡,具有较高的药物 EE%、控释特性,且对绵羊鼻黏膜的组织病理改变较小。F11 胶束(i.n.)的脑/血比值(0.92)、药物靶向指数(5.20)、药物靶向效率(520.26%)和直接转运率(80.76%)显著升高(P<0.05),表明开发了一种有前途的非侵入性奥氮平经鼻递药系统。

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