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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Assembly and Characterization of a Slingshot DNA Nanostructure for the Analysis of Bivalent and Bispecific Analytes with Biosensors
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Assembly and Characterization of a Slingshot DNA Nanostructure for the Analysis of Bivalent and Bispecific Analytes with Biosensors

机译:用于分析生物传感器双特异性分析的弹弓DNA纳米结构的组装和表征

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摘要

The characterization of novel therapeutic antibodies with multivalent or multispecific binding sites requires new measurement modalities for biosensors, to discriminate the engagement of antigens via one, two, or even more binding moieties. The presentation of antigens on a sensor surface in a well-controlled spatial arrangement is a prerequisite for the successful interpretation of binding kinetics measurements of multivalent analytes, but the adjustment of defined distances between immobilized ligands is difficult to achieve in state-of-the-art biosensor systems. Here, we introduce a simple DNA nanostructure resembling a slingshot, which can be configured with two identical or two different antigens (bivalent or bispecific), which are spaced at a defined distance. We characterize the slingshot structure with a chip-based biosensor using electrically switchable DNA nanolevers and demonstrate that bivalent and monovalent antibodies selectively interact with slingshots that have been functionalized with two identical or two different antigens, respectively. The dissociation kinetics are quantified in real-time measurements and we show that the slingshot structure enables a clear differentiation between affinity and avidity effects.
机译:具有多价或多特异性结合位点的新型治疗性抗体的表征需要用于生物传感器的新测量模态,以通过一种,两个或甚至更结合的部分区分抗原的接合。在控制的空间布置中的传感器表面上的抗原呈现是成功解释多价分析物的结合动力学测量的先决条件,但在状态的状态下难以实现在固定化配体之间的限定距离的调节艺术生物传感器系统。这里,我们介绍一种类似于弹簧的简单DNA纳米结构,其可以配置有两个相同或两种不同的抗原(二价或双特异性),其在限定的距离处间隔开。我们使用电可切换的DNA纳米载体用基于芯片的生物传感器表征弹弓结构,并证明了二价和一价抗体选择性地与已经用两种相同或两种不同抗原官能化的弹弓相互作用。解离动力学在实时测量中量化,并且我们表明弹弓结构能够在亲和力和亲和力的效果之间清晰分化。

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