Department of Drug Sciences, University of Sassari, Sassari, Italy.
Nanotechnology. 2012 Mar 9;23(9):095101. doi: 10.1088/0957-4484/23/9/095101. Epub 2012 Feb 10.
New solid lipid nanoparticles (SLN), composed of Compritol ATO888 (C) and hydroxypropyl-β-cyclodextrin (HP), were developed in order to study a new colon-specific formulation for diclofenac sodium (D) delivery. The prepared batches differ from each other by the molecular ratio between HP and D and by the composition of the matrix. Nanoparticles composed of an exclusively lipid matrix and nanoparticles with an oligomeric and lipid matrix were compared in order to establish the effect of both components on the drug delivery tests performed. The SLN preparation method was based on the oil/water hot homogenization process. Emulsions produced were cooled at room temperature and lyophilized in order to obtain dried nanoparticles; possible damage to nanoparticle shape and size was avoided by the addition of cryoprotectants to the aqueous dispersion of nanoparticles before exsiccation. An in vitro toxicity study was performed using CaCo(2) cells to establish the safety of the prepared SLN. Data obtained showed that production method studied guarantees emulsions composed of nanosized drops which can be dried by lyophilization into SLN with a size range of 300-600 nm. In vitro and ex vivo tests demonstrated that dried SLN can be considered as colon delivery systems; however, the matrix composition as well as the presence of cryoprotectant on their surface influences the release and permeation rate of D. The in vitro toxicity studies indicated that the SLN are well tolerated.
为了研究一种新的载有双氯芬酸钠(D)的结肠特异性制剂,我们开发了一种由 Compritol ATO888(C)和羟丙基-β-环糊精(HP)组成的新型固体脂质纳米粒(SLN)。所制备的批次在 HP 与 D 的分子比以及基质组成上彼此不同。我们比较了仅由脂质基质组成的纳米粒和由寡聚物和脂质基质组成的纳米粒,以确定这两种成分对所进行的药物传递测试的影响。SLN 的制备方法基于油/水热匀化过程。所产生的乳液在室温下冷却并冻干以获得干燥的纳米粒;通过在干燥之前向纳米粒的水性分散体中添加冷冻保护剂,可以避免对纳米粒形状和大小的可能损害。通过使用 CaCo(2)细胞进行体外毒性研究来确定所制备的 SLN 的安全性。所得数据表明,所研究的生产方法保证了由纳米级液滴组成的乳液,这些液滴可以通过冻干成 300-600nm 范围内的 SLN 来干燥。体外和离体试验表明,干燥的 SLN 可以被认为是结肠递药系统;然而,基质组成以及其表面上是否存在冷冻保护剂会影响 D 的释放和渗透速率。体外毒性研究表明,SLN 具有良好的耐受性。