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A Tailored Thermosensitive PLGA-PEG-PLGA/Emulsomes Composite for Enhanced Oxcarbazepine Brain Delivery via the Nasal Route

机译:量身定制的热敏性PLGA-PEG-PLGA / Emulsomes复合物可通过鼻腔途径增强奥卡西平的脑部递送。

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摘要

The use of nanocarrier delivery systems for direct nose to brain drug delivery shows promise for achieving increased brain drug levels as compared to simple solution systems. An example of such nanocarriers is emulsomes formed from lipid cores surrounded and stabilised by a corona of phospholipids (PC) and a coating of Tween 80, which combines the properties of both liposomes and emulsions. Oxcarbazepine (OX), an antiepileptic drug, was entrapped in emulsomes and then localized in a poly(lactic acid-co-glycolic acid)-poly(ethylene glycol)-poly(lactic acid-co-glycolic acid) (PLGA-PEG-PLGA) triblock copolymer thermogel. The incorporation of OX emulsomes in thermogels retarded drug release and increased its residence time (MRT) in rats. The OX-emulsome and the OX-emulsome-thermogel formulations showed in vitro sustained drug release of 81.1 and 53.5%, respectively, over a period of 24 h. The pharmacokinetic studies in rats showed transport of OX to the systemic circulation after nasal administration with a higher uptake in the brain tissue in case of OX-emulsomes and highest MRT for OX-emulsomal-thermogels as compared to the IN OX-emulsomes, OX-solution and Trileptal® suspension. Histopathological examination of nasal tissues showed a mild vascular congestion and moderate inflammatory changes around congested vessels compared to saline control, but lower toxic effect than that reported in case of the drug solution.
机译:与简单的溶液系统相比,使用纳米载体输送系统直接从鼻到脑给药显示出实现增加脑药物水平的希望。此类纳米载体的一个例子是由脂质核形成的乳脂质体,该脂质核被磷脂(PC)的电晕和Tween 80涂层包围并稳定,该涂层结合了脂质体和乳剂的特性。将抗癫痫药奥卡西平(OX)包裹在乳剂中,然后定位于聚乳酸-乙醇酸-聚乙二醇-聚乳酸-乙醇酸(PLGA-PEG- PLGA)三嵌段共聚物热凝胶。在热凝胶中掺入OX脂质体可延缓药物释放,并增加其在大鼠中的停留时间(MRT)。 OX乳胶和OX乳胶热凝胶制剂在24小时内的体外持续药物释放分别为81.1和53.5%。在大鼠体内进行的药代动力学研究表明,鼻腔给药后,OX转运到全身循环中,与IN- OX脂质体相比,OX-脂质体-热凝胶的MRT最高。溶液和Trileptal ®悬浮液。鼻组织的组织病理学检查显示,与生理盐水对照组相比,充血血管周围有轻度的血管充血和适度的炎症变化,但毒性作用比药物溶液的情况低。

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