Gondkar S, Manudhane K, Amritkar N, Pai A, Lali A
Chemical Engineering Division, Department of Chemical Technology, University of Mumbai, Matunga, Mumbai, India 400 019.
Biotechnol Prog. 2001 May-Jun;17(3):522-9. doi: 10.1021/bp010029m.
Expanded bed or fluidized bed adsorption has emerged as an important unit operation in downstream processing of proteins. A number of specifically designed commercial adsorbents are available today for expanded bed purification of proteins. Protein purification essentially requires adsorbent matrices that have large pore size. Very large pore size or macroporous adsorbents can provide high efficiency in packed beds even at high flow rates on account of reduced pore diffusion resistance resulting from finite intraparticle flow in the macropores. This is reflected in leveling off of HETP (height equivalent to theoretical plate) versus flow curve after a threshold velocity. Expanded bed operation, on the other hand, can also show plateauing of the HETP curve, but not necessarily on account of macroporosity of adsorbent. It is shown in this article how any adsorbent intended for protein adsorption in expanded bed mode can give plateauing HETP curve, regardless of pore size. As a result, RTD measurements on an expanded bed can give equal, and at times better, performance than a corresponding packed bed. Large pore size, on the other hand, can result in lesser retention of biomass and easy flushing of the adsorbent to obtain an entirely particulate-free adsorbent prior to the product elution step. Adsorbent with larger pores is also shown to provide faster and more efficient elution both in packed and expanded bed modes.
扩张床或流化床吸附已成为蛋白质下游加工中的一项重要单元操作。如今有许多专门设计的商业吸附剂可用于蛋白质的扩张床纯化。蛋白质纯化本质上需要具有大孔径的吸附剂基质。非常大的孔径或大孔吸附剂即使在高流速下也能在填充床中提供高效率,这是由于大孔内有限的颗粒内流动导致孔扩散阻力降低。这在达到阈值速度后HETP(理论塔板高度)与流速曲线趋于平稳中得到体现。另一方面,扩张床操作也可能使HETP曲线趋于平稳,但不一定是由于吸附剂的大孔性。本文展示了任何用于扩张床模式下蛋白质吸附的吸附剂如何都能给出趋于平稳的HETP曲线,而与孔径无关。因此,在扩张床上进行的RTD测量可以给出与相应填充床相等甚至有时更好的性能。另一方面,大孔径可导致生物质保留较少,并且在产品洗脱步骤之前易于冲洗吸附剂以获得完全无颗粒的吸附剂。还表明,具有较大孔径的吸附剂在填充床和扩张床模式下都能提供更快、更高效的洗脱。