Hnin Hay Marn, Stefánsson Einar, Loftsson Thorsteinn, Asasutjarit Rathapon, Charnvanich Dusadee, Jansook Phatsawee
Faculty of Pharmaceutical Sciences, Chulalongkorn University, 254 Phyathai Road, Pathumwan, Bangkok 10330, Thailand.
Department of Ophthalmology, Faculty of Medicine, National University Hospital, University of Iceland, Landspitalinn, IS-101 Reykjavik, Iceland.
Pharmaceutics. 2022 May 27;14(6):1147. doi: 10.3390/pharmaceutics14061147.
This study aimed to develop a chemically stable niosomal eye drop containing fosinopril (FOS) for lowering intraocular pressure. The effects of cyclodextrin (CD), surfactant types and membrane stabilizer/charged inducers on physiochemical and chemical properties of niosome were evaluated. The pH value, average particle size, size distribution and zeta potentials were within the acceptable range. All niosomal formulations were shown to be slightly hypertonic with low viscosity. Span 60/dicetyl phosphate niosomes in the presence and absence of γCD were selected as the optimum formulations according to their high %entrapment efficiency and negative zeta potential values as well as controlled release profile. According to ex vivo permeation study, the obtained lowest flux and apparent permeability coefficient values confirmed that FOS/γCD complex was encapsulated within the inner aqueous core of niosome and could be able to protect FOS from its hydrolytic degradation. The in vitro cytotoxicity revealed that niosome entrapped FOS or FOS/γCD formulations were moderate irritation to the eyes. Furthermore, FOS-loaded niosomal preparations exhibited good physical and chemical stabilities especially of those in the presence of γCD, for at least three months under the storage condition of 2-8 °C.
本研究旨在开发一种含有福辛普利(FOS)的化学稳定的纳米脂质体滴眼液,用于降低眼压。评估了环糊精(CD)、表面活性剂类型以及膜稳定剂/电荷诱导剂对纳米脂质体物理化学和化学性质的影响。pH值、平均粒径、粒径分布和zeta电位均在可接受范围内。所有纳米脂质体制剂均显示为轻度高渗且粘度较低。根据其高包封率、负zeta电位值以及控释曲线,选择了存在和不存在γCD的Span 60/磷酸二鲸蜡酯纳米脂质体作为最佳制剂。根据体外渗透研究,获得的最低通量和表观渗透系数值证实FOS/γCD复合物被包裹在纳米脂质体的内水核中,并且能够保护FOS免受水解降解。体外细胞毒性显示,包裹FOS的纳米脂质体或FOS/γCD制剂对眼睛有中度刺激。此外,负载FOS的纳米脂质体制剂表现出良好的物理和化学稳定性,尤其是在存在γCD的情况下,在2-8°C的储存条件下至少可稳定三个月。