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Fabrication of levofloxacin polyethylene glycol decorated nanoliposomes for enhanced management of acute otitis media: Statistical optimization, trans-tympanic permeation and in vivo evaluation

机译:左氧氟沙星聚乙二醇的制备装饰纳米素瘤,增强急性中耳炎的管理:统计优化,反对渗透和体内评价

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摘要

Acute otitis media (AOM), an infection in the middle ear, is usually treated through systemic administration of antibiotics because the stratum corneum of the intact tympanic-membrane (TM) possesses low permeability that holds against the ototopical antibiotics use. Therefore, the objective of this work was to encapsulate levofloxacin (LFX) into polyethylene glycol 400 (PEG 400) decorated nanoliposomes (PNLs) as an approach for drug delivery through the intact tympanic-membrane. LFX loaded-PNLs were primed by ethanol injection technique. A 2(3) full factorial design, using Design-Expert (R) software, was developed to optimize formulation variables. Particle size, polydispersity index, zeta potential and entrapment efficiency percent of the formulae were determined. The optimal formulation (F7, prepared using 30:1 phospholipid to drug weight ratio, 30 mg cholesterol and 125 mg PEG 400) exhibited improved ex vivo trans-tympanic permeation compared to nanoliposomes lacking PEG 400 and drug solution. In addition, F7 showed greater extent of in vivo deposition of LFX in the intact TM compared to drug solution. Furthermore, in vivo histopathological examination proved the tolerability of the PNLs after ototopical application. Overall, the obtained results revealed that PNLs could be promising for LFX delivery through intact TM providing means for the ototopical drug application for treatment of acute middle ear infections.
机译:急性中耳介质(AOM),中耳的感染,通常通过系统施用抗生素治疗,因为完整的鼓膜(TM)的层内胚层具有抗液相传抗生素使用的低渗透性。因此,本作作品的目的是将左氧氟沙星(LFX)封装到聚乙二醇400(PEG 400)装饰的纳米体(PNL)中作为通过完整鼓膜膜的药物递送的方法。 LFX负载PNL被乙醇注射技术引发。使用Design-Expert(R)软件开发了2(3)个完整因子设计以优化配方变量。确定粒径,多分散指数,Zeta电位和夹带效率百分比的配方。与缺乏PEG 400和药物溶液的纳米脂质相比,使用30:1磷脂制备的使用30:1磷脂与药物重量比制备的F7,30mg胆固醇和125mg PEG 400)表现出改善的离体反射鼓膜渗透。此外,与药物溶液相比,F7在完整的TM中表现出LFX体内体内沉积的程度。此外,在体内组织病理学检查中证明了在otoTopical应用后PNL的耐受性。总的来说,所得结果显示,通过完整的TM提供对急性中耳感染的Itotopical药物应用的手段,PNL可以对LFX递送。

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