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首页> 外文期刊>Pharmaceutical development and technology >Ocular ciprofloxacin hydrochloride mucoadhesive chitosan-coated liposomes.
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Ocular ciprofloxacin hydrochloride mucoadhesive chitosan-coated liposomes.

机译:眼用盐酸环丙沙​​星粘膜壳聚糖包衣的脂质体。

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摘要

The aim of this work is to improve the ocular bioavailability of ciprofloxacin hydrochloride (CPX) through the preparation of ocular mucoadhesive chitosan (CS)-coated liposomes. Liposomes were prepared by the thin film hydration technique, using different molar ratios of L-α-phosphatidylcholine (PC), cholesterol (CH), stearylamine (SA) and dicetyl phosphate (DP). CS was used to coat the optimal liposomal formulae. The prepared formulae were characterized regarding encapsulation efficiency (%EE), particle size, physical morphology and in vitro drug release. The in vivo characterization of the prepared formulae was performed through evaluating the level of CPX in the external eye tissue of nine albino rabbits. Results showed an alteration in release rate and %EE of CPX from liposomal formulae upon varying the molar ratios of the lipid bilayer composition. The optimal liposomal formulae F1 (10:0, PC:CH), F12 (10:0:0.5, PC:CH:SA) and F15 (10:0:1, PC:CH:DP), showed % EE of 38.5?±?2.10, 39.65?±?1.85 and 30.05?±?0.75 and % in vitro release after 8 hours (Q(8h)) of 78.15?±?2.4, 54.07?±?2.3 and 62.14?±?2.9, respectively. In vitro drug release and in vivo results confirmed that CS-coated liposomal formulae have exhibited a higher retention of CPX. Consequently, CS-coated liposomes could be a promising approach to increase the ocular bioavailability of CPX.
机译:这项工作的目的是通过制备眼粘膜粘着性壳聚糖(CS)涂层脂质体来提高盐酸环丙沙​​星(CPX)的眼生物利用度。通过薄膜水化技术,使用不同摩尔比的L-α-磷脂酰胆碱(PC),胆固醇(CH),硬脂胺(SA)和磷酸二鲸蜡酯(DP)制备脂质体。 CS被用于包被最佳脂质体配方。制备的配方的特征在于包封效率(%EE),粒径,物理形态和体外药物释放。通过评估九只白化病兔子的外眼组织中CPX的水平,对制备的配方进行了体内表征。结果显示,通过改变脂质双层组合物的摩尔比,脂质体配方中CPX的释放速率和%EE发生变化。最佳脂质体公式F1(10:0,PC:CH),F12(10:0:0.5,PC:CH:SA)和F15(10:0:1,PC:CH:DP)的EE百分比为38.5 α±2.10、39.65±1.85和30.05±0.75和8小时(Q(8h))后体外释放百分比分别为78.15±2.4、54.07±2.3和62.14±2.9。 。体外药物释放和体内结果证实,CS包衣脂质体配方具有较高的CPX保留率。因此,CS涂层脂质体可能是增加CPX的眼生物利用度的有前途的方法。

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