Chen Ting, Yun Qiang, Bi Jing-Xiu, Ma Guang-Hui, Su Zhi-Guo
Civil & Environmental Engineering School, University of Science and Technology of Beijing, Beijing 100083, China.
Sheng Wu Gong Cheng Xue Bao. 2005 Mar;21(2):284-8.
In order to separate and purify the PEGylated recombinant human granulocyte stimulating factor (rhG-CSF) at large laboratory-scale level, a two-step ion-exchange chromatographic separation procedure was designed. Cation-exchange chromatography was applied first to separate PEGylated rhG-CSF from un-reacted rhG-CSF, followed by anion-exchange chromatography to dissolve individual PEG-rhG-CSF species (mono-, di- and tri-PEGylated rhG-CSF) and remove the free PEG. The molecular weight of individual PEGylated rhG-CSF was determined by MALDI-TOF and SDS-PAGE. MALDI-TOF mass spectrometry revealed that the molecular weights of mono-, di- and tri-PEGylated rhG-CSF are 23.8 kD, 28.6kD and 33.8kD, respectively. Cell proliferation activity was detected by MTT assay using NFS-60 cell. The in vitro residual bioactivity of mono-, di- and tri-PEGylated rhG-CSF were 90%, 75% and 43% respectively, comparing with the un-conjugated rhG-CSF. These results indicated that the un-conjugated rhG-CSF and excess free PEG can be removed completely and the three conjugate species can be purified into homogeneity by the two consecutive ion-exchange chromatographic steps. The purification procedure is easy to scale-up, high in performance and recovery.
为了在大型实验室规模水平上分离和纯化聚乙二醇化重组人粒细胞刺激因子(rhG-CSF),设计了两步离子交换色谱分离程序。首先应用阳离子交换色谱从未反应的rhG-CSF中分离聚乙二醇化rhG-CSF,然后进行阴离子交换色谱以溶解各个聚乙二醇化rhG-CSF物种(单、双和三聚乙二醇化rhG-CSF)并去除游离聚乙二醇。通过基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)和十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)测定各个聚乙二醇化rhG-CSF的分子量。MALDI-TOF质谱显示,单、双和三聚乙二醇化rhG-CSF的分子量分别为23.8 kD、28.6 kD和33.8 kD。使用NFS-60细胞通过MTT法检测细胞增殖活性。与未缀合的rhG-CSF相比,单、双和三聚乙二醇化rhG-CSF的体外残留生物活性分别为90%、75%和43%。这些结果表明,未缀合的rhG-CSF和过量的游离聚乙二醇可以被完全去除,并且通过连续的两步离子交换色谱步骤可以将三种缀合物种纯化至均一性。该纯化程序易于放大,性能和回收率高。