Basha Mona, Salama Alaa H, El Awdan Sally
Department of Pharmaceutical Technology, National Research Centre, Cairo, Egypt.
Department of Pharmaceutical Technology, National Research Centre, Cairo, Egypt.
Int J Pharm. 2017 Oct 30;532(1):478-490. doi: 10.1016/j.ijpharm.2017.09.033. Epub 2017 Sep 18.
The current article highlights the application of spray drying technique to produce an ultra-fine powder encapsulating the antihyperlipidemic drug, atorvastatin calcium (ATV). First, ATV was dissolved in an emulsion formulation, and different carriers (pectin, alginate, chitosan HCl and hydroxypropylmethyl cellulose) in two concentrations (1.5 and 3%) were added. Then, these carrier-containing formulations were subjected to spray drying, whereby ultra-fine ATV-loaded spray dried emulsions were produced (ATV-SDE). The optimum formulation; ATV-SDE7 containing 3% w/w pectin was selected showing an obviously enhanced dissolution profile compared to the other used polymers which could be attributed to its lower ability to swell in acidic medium, resulting in faster drug diffusion into release medium. Thus, ATV-SDE7 was subjected to further characterization including; DSC, XRPD, SEM and flowability properties. In-vivo studies were conducted using high-fat induced hyperlipidemic rats. The optimum formulation depicted normal lipid profile showing significant reduction in the measured parameters at the end of daily oral treatment, compared to ATV marketed tablets and control hyperlipidemic rats confirmed by normal liver sections upon histopathological examination. The superior lipid-lowering activity of ATV-SDE7 was not only due to the enhanced dissolution of ATV but also due to the presence of pectin which is capable of lowering both cholesterol and triglyceride serum levels. Hence, the present study suggests that the formulation strategy employing ultrafine redispersible spray dried emulsion with pectin as a carrier holds a promising approach for the development of a novel dosage form of enhanced antihyperlipidemic effect for ATV.
当前文章重点介绍了喷雾干燥技术在制备包裹抗高血脂药物阿托伐他汀钙(ATV)的超细粉末方面的应用。首先,将ATV溶解在乳液制剂中,并添加两种浓度(1.5%和3%)的不同载体(果胶、海藻酸盐、盐酸壳聚糖和羟丙基甲基纤维素)。然后,对这些含载体的制剂进行喷雾干燥,从而制备出载有ATV的超细喷雾干燥乳液(ATV-SDE)。选择了含有3%(w/w)果胶的最佳制剂ATV-SDE7,与其他使用的聚合物相比,其溶出曲线明显增强,这可能归因于其在酸性介质中较低的溶胀能力,从而使药物更快地扩散到释放介质中。因此,对ATV-SDE7进行了进一步表征,包括差示扫描量热法(DSC)、X射线粉末衍射法(XRPD)、扫描电子显微镜(SEM)和流动性特性。使用高脂诱导的高血脂大鼠进行了体内研究。与市售的ATV片剂相比,最佳制剂在每日口服治疗结束时显示出正常的血脂谱,所测参数显著降低,并且经组织病理学检查,正常肝脏切片证实与对照高血脂大鼠相比也是如此。ATV-SDE7卓越的降脂活性不仅归因于ATV溶出度的提高,还归因于果胶的存在,果胶能够降低血清胆固醇和甘油三酯水平。因此,本研究表明,采用以果胶为载体的超细可再分散喷雾干燥乳液的制剂策略,为开发具有增强抗高血脂作用的ATV新型剂型提供了一种有前景的方法。