Department of Pharmaceutics, School of Pharmaceutical Education & Research, Jamia Hamdard, New Delhi, India.
College of Pharmacy, Aljouf University, Sakaka, Aljouf, Saudi Arabia.
Int J Biol Macromol. 2018 Sep;116:648-663. doi: 10.1016/j.ijbiomac.2018.04.122. Epub 2018 Apr 30.
Enhancing the ocular hypotensive effect of forskolin (FK) by means of biodegradable chitosan (CS) coated poly lactic-co-glycolic acid (PLGA) nanoparticles (NP's).
One step emulsion-sonication process was employed for the formulation of CS-PLGA NP's with optimization being carried out by employing a four factor four level Box Behnken Design. The physical and spectral characterization, drug release, permeation, confocal and ocular tolerance studies (ex-vivo &in vivo) were performed. The corneal retention was assessed by gamma scintigraphic analysis and dexamethasone induced glaucamotous rabbit's intraocular pressure (IOP) was measured by means of Schiotz tonometer.
Particle size of optimized CS-PLGA NP's was found as 201.56 ± 10.92 nm with a good PDI and positive zeta potential value. Entrapment efficiency and drug loading were found to be 72.32 ± 1.12% and 28.39 ± 1.67% respectively. Spectral characterization confirmed the purity and encapsulation of the drug within polymeric system. Sustained drug release and enhanced permeation profile was observed with maximum depth penetration. Ocular tolerance studies explicated its safe use. Scintigraphy studies indicated longer retention of CS-PLGA NP's while increased effectiveness after single instillation in reducing the intraocular pressure was observed.
CS-PLGA-NP's could be successfully formulated and are an excellent vehicle for FK in ocular delivery.
通过生物可降解壳聚糖(CS)包被聚乳酸-共-羟基乙酸(PLGA)纳米粒(NP's)来增强forskolin(FK)的眼降压作用。
采用一步乳化-超声法制备 CS-PLGA NP's,采用四因素四水平 Box Behnken 设计进行优化。对其进行物理和光谱特性、药物释放、渗透、共聚焦和眼耐受性(离体和体内)研究。通过伽马闪烁分析评估角膜滞留,通过 Schiotz 眼压计测量地塞米松诱导的青光眼兔眼内压(IOP)。
优化后的 CS-PLGA NP's 的粒径为 201.56±10.92nm,具有良好的 PDI 和正的 Zeta 电位值。包封效率和载药量分别为 72.32±1.12%和 28.39±1.67%。光谱特征证实了药物在聚合物系统中的纯度和包封。观察到药物释放持续时间延长,渗透增强,最大深度渗透。眼耐受性研究表明其安全使用。闪烁扫描研究表明,CS-PLGA-NP's 的保留时间更长,单次滴眼后降低眼内压的效果增强。
CS-PLGA-NP's 可以成功制备,是 FK 眼内递药的理想载体。