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橄榄苦苷在干眼治疗中的眼部应用:制剂研究与生物学评价

Ocular Application of Oleuropein in Dry Eye Treatment: Formulation Studies and Biological Evaluation.

作者信息

Burgalassi Susi, Zucchetti Erica, Birindelli Elena, Tampucci Silvia, Chetoni Patrizia, Monti Daniela

机构信息

Department of Pharmacy, University of Pisa, Via Bonanno 6, 56126 Pisa, Italy.

Inter-University Center for the Promotion of the 3Rs Principles in Teaching & Research (Centro 3R), Largo Lazzarino 1, 56122 Pisa, Italy.

出版信息

Pharmaceuticals (Basel). 2021 Nov 12;14(11):1151. doi: 10.3390/ph14111151.

Abstract

BACKGROUND

Oleuropein is already known for its numerous pharmacological properties, but its activity in the ocular field has not yet been investigated. The study aims to verify a possible use of oleuropein (OLE)-based eye drops both in terms of efficacy in dry eye syndrome and stability in aqueous solution.

METHODS

OLE was co-precipitated with HP-β-cyclodextrin, and the obtained complex was encapsulated into liposomes prepared by hydration of a lipid film composed of Lipoid S100 and cholesterol with different pH buffer solutions. The hydrated vesicles were shrunk by ultrasonication or extrusion. The preparations were characterized from the physicochemical point of view by subjecting them to differential scanning calorimetry, ATR-FTIR, dynamic light scattering analysis, and microscopy. Subsequently, OLE protective activity against hyperosmotic and oxidative stress on rabbit corneal epithelial cells (RCE) was evaluated.

RESULTS

The liposomal vesicles obtained after extrusion showed a tendency towards greater encapsulation efficiency (up to 80.77%) compared to that obtained by sonication, and the liposomes hydrated in pH 5.5 solution tended to incapsulate more than the neutral ones. Ultrasonication produced two-dimensional populations of liposomes, the largest of which reached 2149 nm. On the contrary, the extruded liposomes showed homogeneous diameters of about 250 nm. Complexation with cyclodextrin and subsequent encapsulation in liposomes greatly increased the OLE stability in aqueous solution, especially at 4 °C and for the extruded formulations. OLE aqueous solution (OLE7.4-sol, reference) and neutral extruded liposomes (F7.4-e) were well tolerated on RCE cells. Moreover, OLE was able to control the effects of hyperosmolarity on ocular surface cells and to prevent oxidative stress-induced loss of cell viability.

摘要

背景

橄榄苦苷因其众多药理特性已为人所知,但其在眼部领域的活性尚未得到研究。本研究旨在验证基于橄榄苦苷(OLE)的眼药水在干眼症治疗效果及水溶液稳定性方面的潜在用途。

方法

将OLE与HP-β-环糊精共沉淀,所得复合物被包裹于脂质体中,脂质体通过用不同pH缓冲溶液水化由Lipoid S100和胆固醇组成的脂质膜制备。水化后的囊泡通过超声处理或挤压进行缩小。通过差示扫描量热法、衰减全反射傅里叶变换红外光谱法、动态光散射分析和显微镜检查从物理化学角度对制剂进行表征。随后,评估OLE对兔角膜上皮细胞(RCE)的高渗和氧化应激的保护活性。

结果

与超声处理得到的脂质体相比,挤压后得到的脂质体囊泡显示出更高的包封效率趋势(高达80.77%),且在pH 5.5溶液中水化的脂质体比中性脂质体倾向于包裹更多。超声处理产生二维脂质体群体,其中最大的达到2149纳米。相反,挤压后的脂质体显示出约250纳米的均匀直径。与环糊精络合并随后包裹于脂质体中极大地提高了OLE在水溶液中的稳定性,尤其是在4℃时以及对于挤压制剂而言。OLE水溶液(OLE7.4-sol,对照)和中性挤压脂质体(F7.4-e)在RCE细胞上耐受性良好。此外,OLE能够控制高渗对眼表细胞的影响并防止氧化应激诱导的细胞活力丧失。

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