a International University , Ho Chi Minh City , Vietnam.
b School of Medicine , Deakin University , Geelong , Australia.
Drug Dev Ind Pharm. 2019 Mar;45(3):514-519. doi: 10.1080/03639045.2018.1562466. Epub 2019 Jan 24.
The objective of this study was to achieve an optimal formulation of hydrophilic-hydrophobic conjugates for nano-sized solid dispersions (SDs) with enhanced dissolution of multiple drugs in different gastrointestinal (GI) tract environments. A new conjugate powder with an optimized process was used to fabricate SDs that contained three poorly water-soluble drugs that were also poorly soluble in different dissolution media. The self-assembled nanoparticle formation, drug crystallinity and SD molecular interactions were investigated by measuring the particle size during dissolution testing and physicochemical property analysis (powder X-ray diffraction and Fourier transform infrared spectroscopy). Drug release studies indicated that SD containing conjugated powder significantly improved the dissolution rates of these poorly water-soluble drugs in the GI tract. In addition, particle size analysis showed nano-sized particles in the dissolution media in the early stage with a tendency to reduce smaller particles over time. Physicochemical characterizations demonstrated almost amorphous drug states and hydrogen bonding interactions between the drugs and conjugates in the SD. This study optimized a promising material for SD, and the material was shown to have a promising performance under various pH medium conditions with poorly water-soluble drugs.
本研究旨在优化亲水性-疏水性缀合物的配方,以制备纳米级固体分散体(SD),从而提高多种药物在不同胃肠道(GI)环境中的溶解性能。采用一种具有优化工艺的新缀合粉末来制备 SD,其中包含三种在不同溶解介质中也难溶的疏水性差的药物。通过在溶解试验过程中测量粒径和物理化学性质分析(粉末 X 射线衍射和傅里叶变换红外光谱)来研究自组装纳米粒子的形成、药物结晶度和 SD 分子相互作用。药物释放研究表明,含有缀合粉末的 SD 显著提高了这些疏水性差的药物在胃肠道中的溶解速率。此外,粒径分析表明,在溶解介质中存在纳米级颗粒,并且随着时间的推移,颗粒有变小的趋势。物理化学特性表明,药物处于无定形状态,并且药物与 SD 中的缀合物之间存在氢键相互作用。本研究优化了一种有前途的 SD 材料,该材料在具有不同 pH 值的介质条件下对疏水性差的药物表现出良好的性能。