Department of Analytical Chemistry, University of Vienna, Waehringer Strasse 38, 1090 Vienna, Austria.
J Chromatogr A. 2011 Dec 9;1218(49):8925-36. doi: 10.1016/j.chroma.2011.06.012. Epub 2011 Jun 13.
The aim of this study was to investigate functional increments of ion exchange type ligands, which may improve the performance of mixed-modal ligands for antibody capture out of feed solutions with pH above 6.0 and containing sodium chloride concentrations of 150 mM and higher. For this purpose several functional groups such as sulfonyl, sulfanyl, amide, methoxy, short alkyl and aromatic moieties were tested in combination with a strong sulfonic acid and/or a weak carboxylic acid group. Therefore a series of ligands were synthesized and subsequently coupled onto epoxide activated Fractogel(®) EMD. In the first instance, all materials were tested by static binding capacity measurements (SBC) under test conditions, comprising a wide variety of different sodium chloride concentrations and differing pH values ranging from 4.5 to 7.5. From these preliminary experiment it was found that especially the aromatic groups improved the binding of human immunoglobulin G (h-IgG) under isotonic conditions, while other increments, e.g. thiophilic or amide groups, were not able to increase the capacity significantly. Taking the SBC results into account, the most promising materials were investigated under dynamic binding conditions (DBC) with a reduced selection of test conditions (pH 5.5, 6.5 and 7.4 at 75 and 150mM NaCl). N-benzoyl-homocysteine (material J) and 3,5-dimethoxybenzoyl-homocysteine (material K) showed 100% DBCs of 37 mg/mL and 32 mg/mL in the presence of 75 mM NaCl and pH 6.5. Material L carrying mercaptobenzoic acid as a ligand and tested with the same solution provided a 100% DBC of 68 mg/mL. The influence of Pluronic F68 in a mock feed solution as well as in cell culture supernatant was investigated with the best performing bio-affinity type adsorbent, material L. For the real sample feed subsequent SDS-PAGE was conducted for the collected fractions.
本研究的目的是研究离子交换型配体的功能增量,这些配体可能会改善混合模式配体的性能,使其能够从 pH 值高于 6.0 的溶液中捕获抗体,并且该溶液含有 150mM 及更高浓度的氯化钠。为此,测试了几种官能团,如磺酰基、硫基、酰胺、甲氧基、短烷基和芳基片段,它们与强磺酸基和/或弱羧酸基结合。因此,合成了一系列配体,随后将其偶联到环氧基活化的 Fractogel(®) EMD 上。首先,在测试条件下,通过静态结合容量测量(SBC)测试所有材料,测试条件包括各种不同的氯化钠浓度和从 4.5 到 7.5 变化的 pH 值。从这些初步实验中发现,特别是芳基基团在等渗条件下提高了人免疫球蛋白 G(h-IgG)的结合能力,而其他增量,例如疏硫或酰胺基团,不能显著提高容量。考虑到 SBC 结果,在动态结合条件(DBC)下,选择了具有代表性的材料进行研究,测试条件的选择范围缩小(75 和 150mM NaCl 下的 pH 5.5、6.5 和 7.4)。在 75mM NaCl 和 pH 6.5 存在的情况下,N-苯甲酰同型半胱氨酸(材料 J)和 3,5-二甲氧基苯甲酰同型半胱氨酸(材料 K)显示出 100%DBC 分别为 37mg/mL 和 32mg/mL。携带巯基苯甲酸的配体材料 L 以相同溶液进行测试时,提供了 100%DBC 为 68mg/mL。使用性能最佳的生物亲和型吸附剂材料 L 研究了模拟进料溶液和细胞培养上清液中 Pluronic F68 的影响。对于实际的样品进料,随后对收集到的馏分进行 SDS-PAGE 分析。