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Preparation and characterization of immunological reagents for analytical applications.

机译:用于分析应用的免疫试剂的制备和表征。

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摘要

Immunochemical reagents were characterized under carefully controlled laboratory conditions using conventional high performance liquid chromatography instrumentation. The stationary phase was prepared by attaching antigen molecules to an insoluble support through a covalent linkage. Experiments were carried out by introducing antibody molecules into the mobile phase and monitoring their interaction with the stationary phase. Monoclonal antibodies were employed because of their more homogeneous properties compared to polyclonal antisera. Radioisotopes were employed to study low level adsorption on the stationary phase. Recovery experiments were carried out in which it was possible to account for all of the material introduced into the mobile phase. Antibodies were purified over a preparative scale antigen affinity column following labeling to insure high immunoreactivity. Studied under normally dissociating conditions, irreversible adsorption of picomole amounts of protein on the antigen stationary phase was greater than on other ligand modified stationary phases. This accumulation decreased with repeated use of the affinity column. The present study provides a framework for evaluation of other immunoaffinity systems and demonstrates that reproducible recovery of immunologically active material in high yield is possible. Monoclonal antibodies labeled with fluorescein were different from unlabeled molecules in binding and physical characteristics. Computer simulations were used to describe binding behavior. Although fluorescein labels improve detection sensitivity over native protein absorbance, their use in this case decreased binding affinity significantly. Heterogeneity of affinity purified fluorescein labeled and unlabeled monoclonal antibodies was examined with two dimensional gel electrophoresis. In addition to increased charge heterogeneity in the labeled antibody fragments, both light and heavy chains possessed more negative character. These results agree with each other. Fluorescein contains a carboxylic acid group, and modification of antibody light chains may interfere with binding affinity. The number and location of labels covalently attached to antibodies must be carefully controlled to obtain maximum detection sensitivity and preserve immunoreactivity.
机译:使用常规高效液相色谱仪器在精心控制的实验室条件下对免疫化学试剂进行了表征。通过将抗原分子通过共价键连接至不溶性支持物来制备固定相。通过将抗体分子引入流动相并监测其与固定相的相互作用来进行实验。使用单克隆抗体是因为与多克隆抗血清相比,它们具有更均一的特性。放射性同位素用于研究固定相上的低水平吸附。进行了回收实验,其中有可能考虑了所有引入到流动相中的物质。标记后通过制备规模的抗原亲和柱纯化抗体,以确保高免疫反应性。在正常的解离条件下研究,在抗原固定相上不可逆的picomole量蛋白质的不可逆吸附大于在其他配体修饰的固定相上的吸附。随着亲和柱的重复使用,这种积累减少了。本研究提供了评估其他免疫亲和系统的框架,并证明以高产率可再现地回收免疫活性物质是可能的。用荧光素标记的单克隆抗体在结合和物理特性上与未标记的分子不同。使用计算机模拟来描述绑定行为。尽管荧光素标记相对于天然蛋白质吸光度提高了检测灵敏度,但在这种情况下使用荧光标记会显着降低结合亲和力。用二维凝胶电泳检查亲和纯化的荧光素标记的和未标记的单克隆抗体的异质性。除了在标记的抗体片段中增加电荷异质性之外,轻链和重链均具有更多的阴性特征。这些结果彼此一致。荧光素包含一个羧酸基团,抗体轻链的修饰可能会干扰结合亲和力。必须仔细控制与抗体共价连接的标记的数量和位置,以获取最大的检测灵敏度并保持免疫反应性。

著录项

  • 作者

    Nielsen Randall Gunnar.;

  • 作者单位
  • 年度 1988
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  • 原文格式 PDF
  • 正文语种 en
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