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A Temperature-Responsive Antibody-Like Nanostructure

机译:温度敏感抗体样纳米结构

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摘要

Antibodies play an essential role in various applications. However, antibodies exhibit considerable challenges in applications that require tunable binding capabilities and exposure to nonphysiological conditions such as chemical conjugation. This study is aimed to develop a novel antibody-like nanostructure with special features. The key components of the nanostructure are two DNA aptamers and a dendrimer. The aptamers are used to mimic the antigen-binding sites of an antibody, the dendrimer is used to provide a defined conjugation site for carrying molecules of interest. The results showed that the bivalent nanostructure exhibited a high binding affinity and specificity. Moreover, a temperature shift from 0 to 37 °C would trigger its rapid dissociation from the bound target cells, which is not possible in antibody-antigen complexes. Thus, an antibody-like nanostructure was successfully developed with novel features that natural antibodies do not possess.
机译:抗体在各种应用中起着至关重要的作用。然而,抗体在需要可调节的结合能力和暴露于非生理条件(例如化学结合)的应用中表现出相当大的挑战。这项研究旨在开发具有特殊功能的新型抗体样纳米结构。纳米结构的关键成分是两个DNA适体和一个树状聚合物。适体用于模拟抗体的抗原结合位点,树枝状聚合物用于提供确定的缀合位点以携带目的分子。结果表明,二价纳米结构表现出高的结合亲和力和特异性。此外,从0到37°C的温度变化将触发其与结合的靶细胞的快速解离,这在抗体-抗原复合物中是不可能的。因此,成功开发了具有天然抗体所不具有的新颖特征的抗体样纳米结构。

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