Department of Chemical Engineering, University of Osaka Prefecture, Sakai 593, Japan.
Biotechnol Bioeng. 1993 Jan 20;41(2):280-6. doi: 10.1002/bit.260410215.
Equilibrium isotherms for adsorption of bovine serum albumin (BSA) on a strong-base (QAE) dextran-type ion exchanger have been determined experimentally. They were not affected by the initial concentration of BSA but were affected by pH considerably. They were correlated by the Langmuir equation when pH > or = 5.05 and by the Freundlich equation of pH 4.8, which is close to pl approximately 4.8 of BSA. The contribution of ion exchange to adsorption of BSA on the ion exchanger was determined experimentally. The maximum amounts of inorganic anion exchanged for BSA were 1% and 0.4% of the exchange capacity of the ion exchanger at pH 6.9, respectively. Since the effect of the ion exchange on the adsorption appeared small, BSA may be adsorbed mainly by electrostatic attraction when pH > or = 5.05 and by hydrophobic interaction or hydrogen bonding at pH 4.8. When NaCl coexisted in the solution, the shape of the isotherm was similar to the Langmuir isotherm, but it is shifted to the right. When the concentration of NaCl was 0.2 mol/dm(3), BsA was not adsorbed on the resin. When BSA was dissolved in pure water, the saturation capacity of BSA on HPO(4) (2-),-form resin was about 2 times larger than that for adsorption from the solution with buffer (pH 6.9 and 8.79). The saturation capacity for adsorption of BSA in pure water on HPO(4) (2-) + H(2)O(4) (-)-from resin was much smaller than that from the solution with buffer. The isotherms for univalent Cl(-)-and H(2)PO(4) (-)-form resin was peculiar; that is, the amount of BSA adsorbed decreased with increasing the liquid-phase equilibrium concentration of BSA.
已通过实验确定了牛血清白蛋白(BSA)在强碱(QAE)葡聚糖型离子交换剂上吸附的平衡等温线。它们不受 BSA 初始浓度的影响,但受 pH 值影响较大。当 pH 值≥5.05 时,它们可以用朗缪尔方程来关联,而在 pH 值为 4.8 时,它们可以用与 BSA 等电点约为 4.8 的弗伦德利希方程来关联。通过实验确定了离子交换对 BSA 在离子交换剂上吸附的贡献。当 pH 值为 6.9 时,BSA 可交换的无机阴离子的最大量分别为离子交换剂交换容量的 1%和 0.4%。由于离子交换对吸附的影响较小,因此当 pH 值≥5.05 时,BSA 可能主要通过静电吸引吸附,而在 pH 值为 4.8 时,BSA 可能通过疏水相互作用或氢键吸附。当 NaCl 共存于溶液中时,吸附等温线的形状类似于朗缪尔等温线,但向右移动。当 NaCl 浓度为 0.2 mol/dm³时,BSA 不会吸附在树脂上。当 BSA 溶解在纯水中时,HPO₄(2-)-form 树脂上 BSA 的饱和吸附量约为从缓冲液(pH 6.9 和 8.79)溶液中吸附的两倍。在纯水中 HPO₄(2-)+ H₂O(4-)-form 树脂对 BSA 的吸附饱和容量远小于从缓冲液溶液中的吸附饱和容量。单价 Cl(-)-和 H₂PO₄(-)-form 树脂的等温线具有特殊性;即,随着 BSA 液相平衡浓度的增加,吸附的 BSA 量减少。