Department of Chemical and Biochemical Engineering, Rutgers University, 98 Brett Road, Piscataway, NJ 08854, USA.
Drug Dev Ind Pharm. 2011 Apr;37(4):428-35. doi: 10.3109/03639045.2010.521160. Epub 2010 Oct 13.
The purpose of this study was to investigate the effect of mechanical shear on hydrophobicity of pharmaceutical powder blends as a function of composition and particle size, and to determine the impact on drug release from tablets.
Four powder formulations were subjected to three different shear strain conditions (40 rev, 160 rev, and 640 rev) in a controlled shear environment operating at a shear rate of 80 rpm. A total of 12 blends were tested for hydrophobicity. Subsequently, sheared blends were compressed into tablets at 8 kN and 12 kN in a rotary tablet press. During tablet compression, powder samples were collected after the feed frame and their hydrophobicity was again measured.
Results indicated that increase in shear strain could significantly increase hydrophobicity, predominantly as an interacting function of blend composition. Blends with both colloidal silica and magnesium stearate (MgSt) were found to show higher hydrophobicity with shear than other blends. Additional shear applied by the tablet press feed frame was found to change the powder hydrophobicity only in the absence of MgSt.
Studies showed that the drug release rates dropped with shear more for the blends with both colloidal silica and MgSt than the other blends. Furthermore, the rate of drug release dropped with a decrease in particle size of the main excipient. Surprisingly, the relationship between the relative increase in hydrophobicity and a corresponding drop in the drug release rate was not found when either MgSt or colloidal silica was mixed alone in the blends.
本研究旨在探讨机械剪切对药物粉末混合物疏水性的影响,研究内容包括组成和粒径的函数关系,以及对片剂中药物释放的影响。
四种粉末制剂在控制剪切环境下以 80rpm 的剪切速率分别经受三种不同剪切应变条件(40 转、160 转和 640 转)。总共测试了 12 种混合物的疏水性。随后,将剪切后的混合物在旋转压片机中以 8kN 和 12kN 的压力压制成片剂。在片剂压缩过程中,在进料框架后收集粉末样品,并再次测量其疏水性。
结果表明,剪切应变的增加可显著增加疏水性,主要是混合物组成的相互作用功能。与其他混合物相比,含有胶体二氧化硅和硬脂酸镁(MgSt)的混合物在剪切作用下表现出更高的疏水性。发现压片机进料框架施加的额外剪切仅在没有 MgSt 的情况下改变粉末的疏水性。
研究表明,对于含有胶体二氧化硅和 MgSt 的混合物,药物释放速率随剪切的降低比其他混合物更快。此外,主要赋形剂粒径的减小会导致药物释放速率降低。令人惊讶的是,当 MgSt 或胶体二氧化硅单独混合在混合物中时,发现相对疏水性增加与药物释放速率相应下降之间没有关系。