El-Gizawy Sanaa A, Osman Mohamed A, Arafa Mona F, El Maghraby Gamal M
Department of Pharmaceutical Technology, College of Pharmacy, University of Tanta, Tanta, Egypt.
Int J Pharm. 2015 Jan 30;478(2):773-8. doi: 10.1016/j.ijpharm.2014.12.037. Epub 2014 Dec 18.
Co-crystallization of drugs with benign co-formers is promising for enhancing dissolution rate of poorly soluble drugs. The selection of safe and pharmacologically inert co-formers is a critical step in this process. Accordingly, the objective of this work was to investigate aerosil 200 as a potential co-former for the preparation of hydrochlorothiazide co-crystal. Co-crystal formation involved acetone assisted co-grinding after mixing hydrochlorothiazide with increasing molar ratios of aerosil (1:1, 1:2 and 1:4). The prepared formulations were subjected to Fourier transform infrared spectroscopy, differential thermal analysis, and powder X-ray diffraction studies. These investigations provided evidence for co-crystal formation between the drug and aerosil. Complete co-crystallization was even achieved at the lowest tested concentration of aerosil suggesting that the stoichiometric ratio of co-crystal formation is 1:1 molar ratio. The dissolution studies revealed faster dissolution rate of the drug from co-crystals compared to the pure unprocessed drug or that which was subjected to wet grinding in absence of aerosil. Increasing the molar ratio of aerosil increased the amount dissolved in the first 5 min. This may be attributed to adsorption of the formed co-crystal on the surface of excess aerosil. In conclusion, aerosil can be considered as co-crystal co-former with potential future application.
药物与良性共形成物的共结晶有望提高难溶性药物的溶解速率。选择安全且药理惰性的共形成物是该过程中的关键步骤。因此,本研究的目的是考察气相二氧化硅200作为制备氢氯噻嗪共晶体的潜在共形成物。共晶体的形成过程为:将氢氯噻嗪与不同摩尔比(1:1、1:2和1:4)的气相二氧化硅混合后,通过丙酮辅助共研磨来实现。对制备的制剂进行傅里叶变换红外光谱、差示热分析和粉末X射线衍射研究。这些研究为药物与气相二氧化硅之间形成共晶体提供了证据。即使在最低测试浓度的气相二氧化硅下也实现了完全共结晶,这表明共晶体形成的化学计量比为1:1摩尔比。溶出度研究表明,与未处理的纯药物或在无气相二氧化硅情况下进行湿磨的药物相比,共晶体中药物的溶出速率更快。增加气相二氧化硅的摩尔比会增加前5分钟内溶解的量。这可能归因于形成的共晶体吸附在过量气相二氧化硅的表面。总之,气相二氧化硅可被视为具有潜在未来应用价值的共晶体共形成物。