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Development of Immunoaffinity Restricted Access Media for Rapid Extractions of Low-Mass Analytes

机译:用于快速提取低质量分析物的免疫亲和限制访问介质的开发

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Restricted access media using antibodies as immobilized ligands were developed for the rapid and selective capture of small analytes by immunoextraction, giving rise to materials referred to as immunoaffinity restricted access media (IA-RAM). To make such a material, intact antibodies for the desired target were first immobilized onto porous silica, with antibodies at or near the outer surface of the support then being treated with papain (or a related agent) to release and remove their binding domains. The result was a support in which only antibodies deep within the pores remained intact and able to bind to the target. Items evaluated in the development of such media included the immobilization method used for the antibodies, the pore size of the support, and the amount of papain and time that were used for support treatment. A theoretical model was also developed to describe the extent of binding domain removal based on the measured polypeptide content of the IA-RAM support before and after treatment with papain. The final optimized conditions for making the IA-RAM supports were used to prepare columns that contained antifluorescein antibodies. Injections of fluorescein and fluorescein-labeled bovine serum albumin onto these IA-RAM columns gave selective and quantitative extraction of fluorescein in 1-2 s. This approach can be used with other antibodies and low-mass targets and should be valuable for such applications as the rapid separation of drugs from drug-protein complexes or the isolation of labeled/modified peptides from intact proteins that contain the same modification or label.
机译:开发了使用抗体作为固定配体的限制进入介质,用于通过免疫萃取快速而选择性地捕获小分析物,从而产生了称为免疫亲和力限制进入介质(IA-RAM)的材料。为了制造这种材料,首先将用于所需靶标的完整抗体固定在多孔二氧化硅上,然后在支持物的外表面或附近使用抗体,然后用木瓜蛋白酶(或相关试剂)处理以释放和去除其结合结构域。结果是仅在孔深处的抗体保持完整并能够结合靶标的支持物。在这种培养基的开发中评估的项目包括用于抗体的固定方法,支持物的孔径以及用于支持物处理的木瓜蛋白酶的量和时间。还开发了一种理论模型来描述基于木瓜蛋白酶处理之前和之后IA-RAM支持物的多肽含量,从而描述结合结构域去除的程度。用于制造IA-RAM载体的最终优化条件用于制备包含抗荧光素抗体的色谱柱。将荧光素和荧光素标记的牛血清白蛋白注射到这些IA-RAM色谱柱上,可在1-2 s内选择性和定量地提取荧光素。该方法可与其他抗体和低质量靶标一起使用,并且对于诸如从药物-蛋白质复合物中快速分离药物或从包含相同修饰或标记的完整蛋白质中分离标记/修饰的肽等应用具有价值。

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