Impact Of Matrix Surface Area On Griseofulvin Release From Extrudates Prepared Via Nanoextrusion

Meng Li, Casey Furey, Jeffrey Skros, Olivia Xu,Mahbubur Rahman,Mohammad Azad,Rajesh Dave,Ecevit Bilgili

PHARMACEUTICS(2021)

引用 6|浏览3
暂无评分
摘要
We aimed to examine the impact of milling of extrudates prepared via nanoextrusion and the resulting matrix surface area of the particles on griseofulvin (GF, a model poorly soluble drug) release during in vitro dissolution. Wet-milled GF nanosuspensions containing a polymer (Sol: Soluplus(R), Kol: Kolliphor(R) P407, or HPC: Hydroxypropyl cellulose) and sodium dodecyl sulfate were mixed with additional polymer and dried in an extruder. The extrudates with 2% and 10% GF loading were milled-sieved into three size fractions. XRPD-SEM results show that nanoextrusion produced GF nanocomposites with Kol/HPC and an amorphous solid dispersion (ASD) with Sol. For 8.9 mg GF dose (non-supersaturating condition), the dissolution rate parameter was higher for extrudates with higher external specific surface area and those with 10% drug loading. It exhibited a monotonic increase with surface area of the ASD, whereas its increase tended to saturate above similar to 30 x 10(-3) m(2)/cm(3) for the nanocomposites. In general, the nanocomposites released GF faster than the ASD due to greater wettability and faster erosion imparted by Kol/HPC than by Sol. For 100 mg GF dose, the ASD outperformed the nanocomposites due to supersaturation and only 10% GF ASD with 190 x 10(-3) m(2)/cm(3) surface area achieved immediate release (80% release within 30 min). Hence, this study suggests that ASD extrudates entail fine milling yielding > similar to 200 x 10(-3) m(2)/cm(3) for rapid drug release, whereas only a coarse milling yielding similar to 30 x 10(-3) m(2)/cm(3) may enable nanocomposites to release low-dose drugs rapidly.
更多
查看译文
关键词
nanocomposites, amorphous solid dispersion, wet media milling, nanoextrusion, wettability, dissolution
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要