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Developing recombinant antibodies for biomarker detection

机译:开发用于生物标志物检测的重组抗体

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Monoclonal antibodies (mAbs) have an essential role in biomarker validation and diagnostic assays. A barrier to pursuing these applications is the reliance on immunization and hybridomas to produce mAbs, which is time-consuming and may not yield the desired mAb. We recommend a process flow for affinity reagent production that utilizes combinatorial protein display systems (e.g., yeast surface display or phage display) rather than hybridomas. These systems link a selectable phenotype--binding conferred by an antibody fragment--with a means for recovering the encoding gene. Recombinant libraries obtained from immunizations can produce high-affinity antibodies (<10 nM) more quickly than other methods. Non-immune libraries provide an alternate route when immunizations are not possible, or when suitable mAbs are not recovered from an immune library. Directed molecular evolution (DME) is an integral part of optimizing mAbs obtained from combinatorial protein display, but can also be used on hybridoma-derived mAbs. Variants can easily be obtained and screened to increase the affinity of the parent mAb (affinity maturation). We discuss examples where DME has been used to tailor affinity reagents to specific applications. Combinatorial protein display also provides an accessible method for identifying antibody pairs, which are necessary for sandwich-type diagnostic assays.
机译:单克隆抗体(mAb)在生物标志物验证和诊断测定中具有重要作用。追求这些应用的障碍是对免疫和杂交瘤产生mAb的依赖,这是耗时的并且可能无法产生所需的mAb。我们建议使用结合蛋白展示系统(例如酵母表面展示或噬菌体展示)而非杂交瘤的亲和试剂生产流程。这些系统将选择性表型(由抗体片段赋予的结合)与用于回收编码基因的方法相连接。通过免疫获得的重组文库可以比其他方法更快地产生高亲和力抗体(<10 nM)。当无法进行免疫接种,或无法从免疫文库中回收合适的单克隆抗体时,非免疫文库提供了另一种途径。定向分子进化(DME)是优化从组合蛋白展示获得的mAb不可或缺的一部分,但也可以用于杂交瘤衍生的mAb。可以轻松获得变体并进行筛选,以增加亲本mAb的亲和力(亲和力成熟)。我们讨论了使用DME定制亲和试剂以适应特定应用的示例。组合蛋白展示还为鉴定抗体对提供了一种便捷的方法,这对于三明治型诊断测定是必不可少的。

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