Xin Jiayu, Tang Jingling, Bu Meng, Sun Yanhui, Wang Xinyu, Wu Linhua, Liu Hongzhuo
a School of Pharmacy, Shenyang Pharmaceutical University , Shenyang , P.R. China .
b Department of Pharmacy , The Second Affiliated Hospital, Harbin Medical University , Harbin , P.R. China , and.
Drug Dev Ind Pharm. 2016;42(4):525-34. doi: 10.3109/03639045.2015.1082582. Epub 2015 Sep 4.
The aim of this study was to design novel mixed micelles as an ophthalmic delivery system for alpha-tocopherol (TOC) to prevent its degradation and improve ocular efficacy. The nonionic polymers, Polyoxyl 15 Hydroxystearate (Solutol® HS15) and Pluronic® F127, were discovered to be the most effective agents for retaining the activity and solubilization of TOC, respectively. Prepared by a thin-film hydration method, HS15/Pluronic® F127 yielded good encapsulation percentages of TOC, with a 27.7% drug loading efficiency. Incorporation of cetalkonium chloride (CKC) into HS15/Pluronic® F127 mixed micelles made the zeta potential of the micelles +17 mV, potentially prolonging the residence time of formulations on ocular surfaces. The optimized micelle preparation remained stable when diluted in a synthetic tear solution. It is known that the antioxidant ability of TOC in typical formulations reduces to around 85% of its initial value after 1 month when stored at 4 or 25 °C under an air atmosphere, which limits ophthalmic applications to less than 1 month. However, encapsulated TOC in investigated micelles remained stable for at least 6 months when sealed with N2. Finally, the cationic micelles were well tolerated after multiple administrations in rabbits, and they improved ocular accumulation of TOC. Taken together, these data suggest that the optimized micelle preparations described in this study may be suitable drug carriers for the treatment of ocular oxidant damage.
本研究的目的是设计新型混合胶束作为α-生育酚(TOC)的眼部给药系统,以防止其降解并提高眼部疗效。发现非离子聚合物聚氧乙烯15羟基硬脂酸酯(Solutol® HS15)和普朗尼克® F127分别是保留TOC活性和增溶的最有效试剂。通过薄膜水化法制备的HS15/普朗尼克® F127对TOC具有良好的包封率,载药效率为27.7%。将西他氯铵(CKC)掺入HS15/普朗尼克® F127混合胶束中,使胶束的ζ电位为+17 mV,可能会延长制剂在眼表的停留时间。优化后的胶束制剂在合成泪液中稀释时仍保持稳定。众所周知,在空气气氛下于4或25°C储存1个月后,典型制剂中TOC的抗氧化能力降至其初始值的约85%,这将眼科应用限制在不到1个月。然而,用N2密封时,所研究胶束中包封的TOC至少可稳定6个月。最后,阳离子胶束在兔多次给药后耐受性良好,并且它们提高了TOC在眼部的蓄积。综上所述,这些数据表明本研究中描述的优化胶束制剂可能是治疗眼部氧化损伤的合适药物载体。