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首页> 外文期刊>Clinical Chemistry: Journal of the American Association for Clinical Chemists >Stability of model immune complexes during zone electrophoresis and isoelectric focusing in agarose gels.
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Stability of model immune complexes during zone electrophoresis and isoelectric focusing in agarose gels.

机译:琼脂糖凝胶中区域电泳和等电聚焦过程中模型免疫复合物的稳定性。

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摘要

We evaluated the stability of model immune complexes, consisting of radioiodinated follitropin (125I-FSH), bound either to a mouse monoclonal antibody to FSH or to sheep polyvalent anti-FSH antiserum, during zone electrophoresis and isoelectric focusing in agarose gels. The complexes were relatively stable during zone electrophoresis at conventional voltages (less than 40 V/cm), about 80% of the initially bound antigen migrating in the gamma region. Highter voltages resulted in a linear increase in the antigen stripped from the gamma region. By contrast, isoelectric focusing very effectively dissociated the acidic 125I-FSH from the basic sheep immunoglobulins, even if the complexes were subjected to electromotive forces alone, i.e., by loading them onto the neutral region of the gel. The monoclonal complexes were not dissociated by high voltage alone. The monoclonal complexes could be completely dissociated by loading them at the anode, where gel acidification enhances complex dissociation. These observations can form the basis of a simple technique for isolating and dissociating human immune complexes before Western immunoblot analysis. Furthermore, the ease and rapidity with which bound and free antigen can be separated during zone electrophoresis in agarose suggests that this technique may have some application in clinical immunoassays.
机译:我们在区域电泳和琼脂糖凝胶中等电聚焦过程中,评估了模型免疫复合物的稳定性,该复合物由放射性碘标记的促卵泡激素(125I-FSH)组成,该抗体与针对FSH的小鼠单克隆抗体或与绵羊多价抗FSH抗血清结合。在区域电泳过程中,复合物在常规电压(小于40 V / cm)下相对稳定,约80%的初始结合抗原在γ区域迁移。较高的电压导致从伽马区域剥离的抗原呈线性增加。相比之下,即使复合物仅受到电动势,即通过将它们加载到凝胶的中性区域上,等电聚焦也能非常有效地将酸性125I-FSH与碱性绵羊免疫球蛋白解离。单克隆复合物不能仅通过高压解离。单克隆复合物可通过在阳极上加载而完全解离,在凝胶上,酸化可增强复合物的解离。这些观察结果可成为在Western免疫印迹分析之前分离和解离人类免疫复合物的简单技术的基础。此外,在琼脂糖中进行区域电泳时,结合抗原和游离抗原分离的便捷性和快速性表明,该技术可能在临床免疫分析中有一定的应用。

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