Department of Pharmaceutics, College of Pharmacy, Shandong University, Jinan 250012, People's Republic of China.
Nanotechnology. 2010 Apr 16;21(15):155104. doi: 10.1088/0957-4484/21/15/155104. Epub 2010 Mar 23.
In this study, we evaluate the effect of particle sizes on the physicochemical properties of silybin and identify the influence of silybin nanosuspensions on its permeation across the Caco-2 cell monolayer. In vivo pharmacokinetic evaluation of silybin nanosuspensions was also carried out in beagle dogs. TEM, AFM and SEM analyses revealed the effect of homogenization pressure on particle size and morphology, and confirmed the existence of a surfactant-stabilizer film on the surface of nanoparticles. DSC and XRPD experiments manifested that the crystalline state was maintained as particle size was reduced and the enhanced dissolution property was due to the increased surface area. Nanosuspensions had a significant influence on drug transport across the Caco-2 cell monolayer and the enhanced dissolution velocity was responsible for the increased permeability. A pharmacokinetics study in beagle dogs further confirmed the in vitro results and demonstrated that oral administration of silybin nanosuspensions significantly increase its bioavailability compared to the coarse powder. Nanosuspensions of silybin with smaller particle size reveal a higher potential to increase their oral bioavailability; while for intravenous infusion the lower pressure produced silybin nanosuspensions appeared to maintain a more sustained drug release profile.
在这项研究中,我们评估了粒径对水飞蓟宾理化性质的影响,并确定了水飞蓟宾纳米混悬液对其穿过 Caco-2 细胞单层渗透性的影响。还在比格犬中进行了水飞蓟宾纳米混悬液的体内药代动力学评价。TEM、AFM 和 SEM 分析表明,均化压力对粒径和形态有影响,并证实纳米颗粒表面存在表面活性剂稳定剂膜。DSC 和 XRPD 实验表明,结晶状态保持不变,随着粒径的减小,增强了溶解性能,这是由于表面积的增加。纳米混悬液对 Caco-2 细胞单层的药物转运有显著影响,增强的溶解速度是渗透性增加的原因。在比格犬中的药代动力学研究进一步证实了体外结果,并表明与粗粉相比,水飞蓟宾纳米混悬剂口服给药可显著提高其生物利用度。粒径较小的水飞蓟宾纳米混悬剂显示出更高的提高口服生物利用度的潜力;而对于静脉输注,较低压力产生的水飞蓟宾纳米混悬剂似乎保持更持续的药物释放曲线。