Pandey Vikas, Gilhotra Ritu M, Kohli Seema
a Department of Pharmaceutics , Suresh Gyan Vihar University , Jaipur , Rajasthan , India.
b Department of Pharmaceutical Sciences , Kalaniketan Polytechnic College , Jabalpur , Madhya Pradesh , India.
Drug Dev Ind Pharm. 2017 Jun;43(6):1023-1032. doi: 10.1080/03639045.2017.1291668. Epub 2017 Feb 23.
The current research work was executed with an aim to explore and promote the potential of self-microemusifying drug delivery systems (SMEDDS) in the form of tablets, in order to enhance solubility and oral bioavailability of poorly aqueous soluble drug Repaglinide (RPG). RPG-loaded liquid SMEDDS were developed consisting Labrafil M 1944CS, Kolliphor EL and Propylene glycol, which were then characterized on various parameters. After characterization and optimization, liquid SMEDDS were converted into solid form by adsorbing on Aeroperl® 300 pharma and polyplasdone XL. Further, selection of suitable excipients was done and mixed with prepared solidified SMEDDS powder followed by the preparation of self-microemulsifying tablets (SMET's) wet granulation-compression method. SMET's were subjected to differential scanning calorimetry (DSC) and particle X-ray diffraction (RXRD) studies, results of which indicated transformation of crystalline structure of RPG because of dispersion of RPG at molecular level in liquid SMEDDS. This was further assured by micrographs obtained from scanning electron microscope. SMET's shown more than 85% (30 min) of in vitro drug release in contrast to conventional marketed tablets (13.2%) and pure RPG drug (3.2%). Results of in vivo studies furnished that SMET's had shown marked decrease in the blood glucose level and prolonged duration of action (up to 8 h) in comparison with conventional marketed tablets and pure RPG drug. In conclusion, SMET's serves as a promising tool for successful oral delivery of poorly aqueous soluble drug(s) such as RPG.
当前的研究工作旨在探索并提升片剂形式的自微乳化药物递送系统(SMEDDS)的潜力,以提高难溶性药物瑞格列奈(RPG)的溶解度和口服生物利用度。制备了含Labrafil M 1944CS、聚氧乙烯蓖麻油EL和丙二醇的载RPG液体SMEDDS,并对其进行了各项参数表征。在表征和优化后,通过吸附在Aeroperl® 300 Pharma和交联聚维酮XL上,将液体SMEDDS转化为固体形式。此外,选择了合适的辅料并与制备好的固化SMEDDS粉末混合,随后采用湿法制粒压片法制备自微乳化片剂(SMET)。对SMET进行了差示扫描量热法(DSC)和颗粒X射线衍射(RXRD)研究,结果表明由于RPG在液体SMEDDS中分子水平的分散,其晶体结构发生了转变。扫描电子显微镜获得的显微照片进一步证实了这一点。与市售传统片剂(13.2%)和纯RPG药物(3.2%)相比,SMET在体外30分钟的药物释放率超过85%。体内研究结果表明,与市售传统片剂和纯RPG药物相比,SMET的血糖水平显著降低,作用持续时间延长(长达8小时)。总之,SMET是成功口服递送如RPG这类难溶性药物的一种有前景的工具。