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Biologically Produced Bifunctional Recombinant Protein Nanoparticles for Immunoassays

机译:生物生产的用于免疫测定的双功能重组蛋白纳米颗粒

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摘要

Nanoparticles are increasingly used as labels for analytical purposes. In general, nanoparticles need to be functionalized with binding molecules (mostly antibodies or fragments thereof) and label substances using a multistep process that requires several manufacturing and purification steps. Here, we present a biological method of producing functionalized nanoparticles for effective use as label agents in a bioaffinity assay. The particles are based on the globular protein shell of human ferritin. A single chain Fv fragment (scFv) of an antibody is used as the binding moiety and Eu~(3+) ions as the label substance. Conventional chemical conjugation of the particle and antibody fragment is replaced with genetic fusion between the ferritin subunit and scFv genes. The material, for example, the fusion construct is produced in a single bacterial culture as insoluble forms that are easily purified by centrifugations. The subunits are solubilized and self-assembled, and label ions are introduced by shifting the pH. The functionality of these particles is demonstrated with a bioaffinity assay. This method of producing nanoparticles with inherent antigen binding activity presents several possibilities for the simple production of specific, functional nanoparticles. Production is fast, economical, and environmentally sustainable, making the system advantageous, particularly in applications requiring large quantities of specific nanoparticles.
机译:纳米颗粒被越来越多地用作分析目的的标记。通常,需要使用需要几个制造和纯化步骤的多步骤方法,用结合分子(主要是抗体或其片段)和标记物质对纳米颗粒进行功能化。在这里,我们介绍了一种生产功能化纳米颗粒的生物方法,该纳米颗粒可有效用作生物亲和力测定中的标记剂。颗粒基于人铁蛋白的球状蛋白壳。抗体的单链Fv片段(scFv)被用作结合部分,Eu〜(3+)离子被用作标记物质。颗粒和抗体片段的常规化学缀合被铁蛋白亚基和scFv基因之间的遗传融合所取代。材料,例如融合构建体,是在单一细菌培养物中产生的不溶形式,易于通过离心纯化。亚基被增溶并自组装,并且通过改变pH值引入标记离子。这些亲和力的功能已通过生物亲和力测试得以证明。产生具有固有抗原结合活性的纳米颗粒的这种方法为简单地生产特定的功能性纳米颗粒提供了几种可能性。生产是快速,经济和环境可持续的,这使得该系统具有优势,特别是在需要大量特定纳米粒子的应用中。

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