Aho Johanna, Edinger Magnus, Botker Johan, Baldursdottir Stefania, Rantanen Jukka
Department of Pharmacy, University of Copenhagen, 2100 Copenhagen, Denmark.
Department of Pharmacy, University of Copenhagen, 2100 Copenhagen, Denmark.
J Pharm Sci. 2016 Jan;105(1):160-7. doi: 10.1016/j.xphs.2015.11.029. Epub 2016 Jan 13.
The flow properties of drug-polymer mixtures have a significant influence on their processability when using techniques such as hot melt extrusion (HME). Suitable extrusion temperature and screw speed to be used in laboratory scale HME were evaluated for mixtures containing 30% of paracetamol (PRC), ibuprofen (IBU), or indomethacin (IND), and 70% of polyethylene oxide, by using small amplitude oscillatory shear rheology. The initial evaluation of the drug:polyethylene oxide solubility was estimated by differential scanning calorimetry of the physical mixtures containing a wide range of weight fractions of the drug substances. Consecutively, the mixtures were extruded, and the maximum plasticizing weight fraction of each drug was determined by means of rheological measurements. IBU was found to have an efficient plasticizing functionality, decreasing the viscosity of the mixtures even above its apparent saturation solubility, whereas IND and PRC initially lowered the viscosity of the mixture slightly but increased it significantly with increasing drug load. The main reason for the enhanced plasticization effect seems to be the lower melting temperature of IBU, which is closer to the used HME temperature, compared to PRC and IND. This study highlights the importance of rheological investigation in understanding the drug-polymer interactions in melt processing.
当使用诸如热熔挤出(HME)等技术时,药物 - 聚合物混合物的流动特性对其加工性能有重大影响。通过小振幅振荡剪切流变学,对含有30%对乙酰氨基酚(PRC)、布洛芬(IBU)或吲哚美辛(IND)以及70%聚环氧乙烷的混合物,评估了实验室规模热熔挤出中适用的挤出温度和螺杆转速。通过对含有各种重量分数药物物质的物理混合物进行差示扫描量热法,初步评估了药物:聚环氧乙烷的溶解度。随后,将混合物进行挤出,并通过流变学测量确定每种药物的最大增塑重量分数。发现IBU具有有效的增塑功能,即使在其表观饱和溶解度以上也能降低混合物的粘度,而IND和PRC最初会使混合物的粘度略有降低,但随着药物负载的增加而显著增加。增塑效果增强的主要原因似乎是IBU的熔点较低,与PRC和IND相比,它更接近所使用的热熔挤出温度。本研究强调了流变学研究在理解熔融加工中药物 - 聚合物相互作用方面的重要性。