Freitag R, Horváth C
Institut für Technische Chemie, Universität Hannover, Germany.
Adv Biochem Eng Biotechnol. 1996;53:17-59. doi: 10.1007/BFb0102324.
Chromatography techniques are essential for the isolation and purification of most of the high value products of modern biotechnology. The economically sensible and technically satisfactory downstream processing of a therapeutic protein, usually involves a number of chromatographic steps. Its development and optimization require considerable knowledge of the various physico-chemical and engineering aspects of biochemical chromatography. This review addresses the various modes of chromatography and the design of chromatographic separation processes from a biotechnologist's point of view. Strategies for optimizing the structure of the downstream process are outlined and scaling up consideration are discussed. The importance of the different chromatographic methods in research and development is estimated in an analysis of protein purification schemes recently published in the literature. Finally, examples of the application of chromatographic procedures for process scale product purification in the biotechnological industry are given.
色谱技术对于现代生物技术中大多数高价值产品的分离和纯化至关重要。治疗性蛋白质经济上合理且技术上令人满意的下游加工通常涉及多个色谱步骤。其开发和优化需要对生化色谱的各种物理化学和工程方面有相当多的了解。本综述从生物技术学家的角度探讨了色谱的各种模式以及色谱分离过程的设计。概述了优化下游工艺结构的策略,并讨论了放大方面的考虑因素。通过对最近文献中发表的蛋白质纯化方案的分析,评估了不同色谱方法在研发中的重要性。最后,给出了色谱程序在生物技术产业中用于工艺规模产品纯化的应用实例。