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Optimisation & scale‐up of affinity chromatography
Author(s) -
Chase Howard Allaker
Publication year - 1988
Publication title -
makromolekulare chemie. macromolecular symposia
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.257
H-Index - 76
eISSN - 1521-3900
pISSN - 0258-0322
DOI - 10.1002/masy.19880170135
Subject(s) - elution , chromatography , adsorption , process (computing) , chemistry , affinity chromatography , matrix (chemical analysis) , scale (ratio) , ligand (biochemistry) , scale up , process engineering , computer science , engineering , organic chemistry , enzyme , biochemistry , physics , receptor , quantum mechanics , operating system , classical mechanics
When affinity chromatography is used on the large scale, economics dictate that the process must be optimised to ensure high throughputs and high adsorbent utilisation. The optimisation of an affinity chromatography process starts with the selection of both the ligand and matrix components of the affinity adsorbent. The relative merits of using highly selective ligands and small particle matrices in the development of high performance chromatography systems is discussed. Once the adsorbent has been chosen the parameters that characterise its interaction with the adsorbate must be characterised from small scale experiments. The method is illustrated in a series of experiments that show the influence of a number of factors involved in the preparation of immobilised monoclonal antibodies on the subsequent performance of the immunosorbents. These parameters together with computer simulations of the chromatography process can be used to design and optimise the operation of large scale systems. Attention has to be given to the optimisation of the adsorption, washing and elution phases of the process. Apart from initial process design, it is also necessary to optimise the chromatographic separation during the run. This involves the need to be able to measure the chromatographic performance in an on‐line manner and a number of approaches to achieve this are described.

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