Jalalipour Monireh, Gilani Kambiz, Tajerzadeh Hosnieh, Najafabadi Abdolhossien Rouholamini, Barghi Mohammadali
Biopharmacy and Pharmacokinetic Research Laboratory, School of Pharmacy, Tehran University of Medical Sciences, Tehran, Iran.
Int J Pharm. 2008 Mar 20;352(1-2):209-16. doi: 10.1016/j.ijpharm.2007.10.053. Epub 2007 Nov 17.
The effect of the protein stabilizers on the stability and aerosol performance of spray dried recombinant human growth hormone (SD rhGH) was investigated. rhGH solution was spray dried alone, with polysorbate 20 (at three concentrations of 0.05%, 0.01%, and 0.005%), Zn(2+) (by Zn(2+):rhGH molar ratio of 2:1 and 4:1), and/or lactose (by lactose:rhGH weight ratio of 2:1). Size exclusion chromatography (SEC) analysis of spray dried powders demonstrated that of all the potential protein stabilizers, the combination of polysorbate 20 (0.05%), Zn(2+) (Zn(2+):rhGH molar ratio of 2:1) and lactose (lactose:rhGH weight ratio of 2:1) was the most effective at protecting rhGH against aggregation during spray drying. The results of circular dichroism (CD) analysis revealed that using of polysorbate 20 (in all concentrations) and Zn(2+) (by Zn(2+):rhGH molar ratio of 2:1) together in the formulations would preserve rhGH conformational stability during the process. The particle size distribution data obtained by laser diffraction method showed all SD rhGH formulations had volume median diameter and mean diameter below 5mum. The characterization of the aerosol performance of the spray dried powders by Andersen cascade impactor (ACI) showed that by increasing the concentration of polysorbate 20 in the formulations the aerodynamic efficiency of the resultant particles was reduced. In conclusion, the optimum amounts of polysorbate 20, Zn(2+) and lactose satisfied both physical stability during spray drying process (2.37% aggregation) and good aerosol performance (fine particle fraction; FPF=38.52%).
研究了蛋白质稳定剂对喷雾干燥重组人生长激素(SD rhGH)稳定性和气溶胶性能的影响。rhGH溶液单独进行喷雾干燥,或与聚山梨酯20(三种浓度分别为0.05%、0.01%和0.005%)、Zn(2+)(Zn(2+)与rhGH的摩尔比为2:1和4:1)以及/或者乳糖(乳糖与rhGH的重量比为2:1)一起进行喷雾干燥。对喷雾干燥粉末进行的尺寸排阻色谱(SEC)分析表明,在所有潜在的蛋白质稳定剂中,聚山梨酯20(0.05%)、Zn(2+)(Zn(2+)与rhGH的摩尔比为2:1)和乳糖(乳糖与rhGH的重量比为2:1)的组合在喷雾干燥过程中对保护rhGH防止聚集最为有效。圆二色性(CD)分析结果显示,在制剂中一起使用聚山梨酯20(所有浓度)和Zn(2+)(Zn(2+)与rhGH的摩尔比为2:1)可在该过程中保持rhGH的构象稳定性。通过激光衍射法获得的粒度分布数据表明,所有SD rhGH制剂的体积中值直径和平均直径均低于5μm。用安德森级联撞击器(ACI)对喷雾干燥粉末的气溶胶性能进行表征表明,通过增加制剂中聚山梨酯20的浓度,所得颗粒的空气动力学效率降低。总之,聚山梨酯20、Zn(2+)和乳糖的最佳用量既满足了喷雾干燥过程中的物理稳定性(聚集率为2.37%),又具有良好的气溶胶性能(细颗粒分数;FPF = 38.52%)。