School of Pharmacy, University of East Anglia, Norwich, NR4 7TJ, UK.
Pharm Res. 2013 Apr;30(4):1123-36. doi: 10.1007/s11095-012-0948-5. Epub 2012 Dec 11.
Gelucire 50/13, a polyoxyethylene glycol glyceride mixture, has been widely used in drug delivery, but its moisture uptake behaviour is still poorly understood. In this study, the effects of relative humidity, temperature, and drug incorporation on the moisture uptake of Gelucire are reported in relation to their practical implications for preparation of solid dispersions using this material.
DVS combined with kinetics modelling was used as the main experimental method to study the moisture uptake behaviour of Gelucire. Thermal and microscopic methods were employed to investigate the effect of moisture uptake on the physical properties of the material and drug loaded solid dispersions.
The moisture uptake by Gelucire 50/13 is temperature and relative humidity dependent. At low temperatures and low relative humidities, moisture sorption follows a GAB model. The model fitting indicated that at high relative humidities the sorption is a complex process, potentially involving PEG being dissolved and the PEG solution acting as solvent to dissolve other components.
Careful control of the storage and processing environmental conditions are required when using Gelucire 50/13. The incorporation of model drugs not only influences the moisture uptake capacity of Gelucire 50/13 but also the solidification behaviour.
聚氧乙烯甘油酯混合物 Gelucire 50/13 已广泛应用于药物传递系统,但人们对其吸湿行为仍了解甚少。本研究报道了相对湿度、温度和药物掺入对 Gelucire 吸湿行为的影响,及其对使用该材料制备固体分散体的实际意义。
采用载湿剂法(DVS)结合动力学模型作为主要实验方法,研究 Gelucire 的吸湿行为。采用热重法和显微镜法研究吸湿对材料和载药固体分散体物理性质的影响。
Gelucire 50/13 的吸湿性取决于温度和相对湿度。在低温和低相对湿度下,吸附遵循 GAB 模型。模型拟合表明,在高相对湿度下,吸附是一个复杂的过程,可能涉及 PEG 溶解,PEG 溶液充当溶剂溶解其他成分。
使用 Gelucire 50/13 时,需要仔细控制储存和加工环境条件。模型药物的掺入不仅影响 Gelucire 50/13 的吸湿能力,还影响其固化行为。