Duggirala S, Deluca P P
College of Pharmacy, University of Kentucky, Lexington, USA.
PDA J Pharm Sci Technol. 1996 Sep-Oct;50(5):290-6.
The purpose of this study was to assess the properties of aqueous solutions of various polymeric materials intended for use as components of a sustained release device for various proteins. Polymers that were studied included Sodium Carboxymethylcellulose (CMC), Methylcellulose (MC), Hydroxypropylmethylcellulose (HPMC) and Sodium Alginate (ALG). The effects of polymer concentration, temperature and autoclaving on solution viscosity were determined. With all the polymers, viscosity/ concentration relationships were linearized by using an equation of the type mu = (Ca + beta)gamma, where mu and C referred to solution viscosity and concentration, respectively. alpha and gamma were constants related to polymer type and molecular weight, whereas beta reflected viscosity of water at the temperature of measurement. gamma, which reflects the sensitivity of the viscosity/concentration relationship, was determined to be 4 for both low and high molecular weight CMC and ALG, and 8 for MC and HPMC. alpha, on the other hand, was directly proportional to polymer molecular weight. The same equation could also adequately describe viscosity/temperature relationships for each polymer. For both CMC and ALG, increasing solution concentration had a greater effect on the reduction of viscosity upon increasing temperature. A concentration dependent thermal "gelation" phenomena was observed with MC solutions. Autoclaving effects were more pronounced in ALG solutions as compared to CMC samples in the 0.5 to 3.0% w/v concentration range. No significant long term effects on solution viscosity were observed with MC and HPMC, however.
本研究的目的是评估各种高分子材料水溶液的性质,这些材料拟用作各种蛋白质缓释装置的组件。所研究的聚合物包括羧甲基纤维素钠(CMC)、甲基纤维素(MC)、羟丙基甲基纤维素(HPMC)和海藻酸钠(ALG)。测定了聚合物浓度、温度和高压灭菌对溶液粘度的影响。对于所有聚合物,粘度/浓度关系通过使用μ = (αC + β)γ类型的方程进行线性化,其中μ和C分别表示溶液粘度和浓度。α和γ是与聚合物类型和分子量相关的常数,而β反映了测量温度下水的粘度。反映粘度/浓度关系敏感性的γ,对于低分子量和高分子量的CMC和ALG均确定为4,对于MC和HPMC为8。另一方面,α与聚合物分子量成正比。相同的方程也可以充分描述每种聚合物的粘度/温度关系。对于CMC和ALG,溶液浓度增加时,温度升高对粘度降低的影响更大。在MC溶液中观察到浓度依赖性的热“凝胶化”现象。在0.5至3.0% w/v浓度范围内,与CMC样品相比,ALG溶液中的高压灭菌效果更明显。然而,MC和HPMC对溶液粘度未观察到显著的长期影响。