Adwan Samer, Abu-Dahab Rana, Al-Bakri Amal G, Sallam Alsayyed
Faculty of Pharmacy, The University of Jordan , Amman , Jordan and.
Pharm Dev Technol. 2015 May;20(3):361-6. doi: 10.3109/10837450.2013.871030. Epub 2014 Jan 6.
This study investigated the preparation and characterization of glyceryl monooleate- (GMO) based drug delivery system containing ofloxacin for the treatment of otitis externa. Acetate buffer (pH 4.5) containing dissolved ofloxacin was added to molten GMO as an aqueous phase, this resulted in the formation of a cubic and a reverse hexagonal phases. The release behavior of ofloxacin from the drug delivery system was studied using three different methods. The mechanism of drug release using paddles/dissolution apparatus and Franz diffusion cells followed Higuchi and Fickian diffusion models; whereas intrinsic release rate method showed zero-order kinetics. The intrinsic release rate was estimated and found to be 187.2 µg/cm(2)/h. The release mechanisms were similar irrespective of the loaded ofloxacin amount, however, the higher drug load displayed higher release rate. The drug delivery system was proven to be microbiologically effective by using agar diffusion method, against Staphylococcus aureus, and Pseudomonas aeruginosa. The GMO/ofloxacin formulation was stable for 6 months after preparation at room temperature as measured with respect to phase stability and antibacterial activity.
本研究考察了含氧氟沙星的甘油单油酸酯(GMO)基药物递送系统的制备与表征,用于治疗外耳道炎。将溶解有氧氟沙星的醋酸盐缓冲液(pH 4.5)作为水相加入熔融的GMO中,这导致形成了立方相和反六角相。使用三种不同方法研究了氧氟沙星从药物递送系统中的释放行为。使用桨板/溶出装置和Franz扩散池的药物释放机制遵循Higuchi和Fickian扩散模型;而固有释放速率法显示为零级动力学。估计固有释放速率为187.2 μg/cm²/h。无论氧氟沙星负载量如何,释放机制相似,然而,较高的药物负载量显示出较高的释放速率。通过琼脂扩散法证明该药物递送系统对金黄色葡萄球菌和铜绿假单胞菌具有微生物学有效性。制备后,GMO/氧氟沙星制剂在室温下在相稳定性和抗菌活性方面测量显示6个月内稳定。