Holtzapple C K, Pishko E J, Stanker L H
Agricultural Research Service, U.S. Department of Agriculture, College Station, Texas 77845, USA.
Anal Chem. 2000 Sep 1;72(17):4148-53. doi: 10.1021/ac000065k.
To demonstrate that two structurally similar chemicals can be extracted from a complex matrix and then separated from each other on the basis of their relative affinities for an antibody, an automated column-switching system was used, incorporating on-line, high-performance immunoaffinity chromatography (HPIAC). A high-affinity monoclonal antibody (Mab Sara-95) against the fluoroquinolone sarafloxacin was covalently cross-linked to a protein G column and used to capture fluoroquinolones in fortified serum samples. Interference from matrix components adhering nonspecifically to the column was minimized by the insertion of a protein G cleanup column between the injection port and the Mab Sara-95 derivatized HPIAC column. Upon injection, serum samples containing the fluoroquinolones passed through both columns. The cleanup column detained serum components, that otherwise would bind nonspecifically to the HPIAC column, but allowed the fluoroquinolones to pass through unhindered to the HPIAC column. The fluoroquinolones were then eluted from the HPIAC column according to their relative affinities for the antibody, and individual peaks were monitored using fluorescence detection. By using an on-line cleanup column in tandem with an HPIAC column, the fluoroquinolones could be separated from the serum matrix and then separated from each other on the basis of their affinity for Mab Sara-95 without the use of organic solvents or reversed-phase liquid chromatography (RPLC). This method demonstrates true immunoaffinity separation of structurally related compounds in a complex matrix.
为了证明可以从复杂基质中提取两种结构相似的化学物质,然后根据它们对抗体的相对亲和力将它们彼此分离,使用了一种自动柱切换系统,该系统结合了在线高效免疫亲和色谱法(HPIAC)。一种针对氟喹诺酮类沙拉沙星的高亲和力单克隆抗体(Mab Sara-95)与蛋白G柱共价交联,并用于捕获强化血清样品中的氟喹诺酮类。通过在进样口和Mab Sara-95衍生的HPIAC柱之间插入蛋白G净化柱,可将非特异性粘附在柱上的基质成分的干扰降至最低。进样时,含有氟喹诺酮类的血清样品通过两根柱子。净化柱保留血清成分,否则这些成分会非特异性结合到HPIAC柱上,但允许氟喹诺酮类不受阻碍地通过到HPIAC柱。然后根据氟喹诺酮类对抗体的相对亲和力从HPIAC柱上洗脱,并使用荧光检测监测各个峰。通过将在线净化柱与HPIAC柱串联使用,无需使用有机溶剂或反相液相色谱法(RPLC),氟喹诺酮类就可以从血清基质中分离出来,然后根据它们对Mab Sara-95的亲和力彼此分离。该方法证明了在复杂基质中对结构相关化合物的真正免疫亲和分离。