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Engineered Aptamers to Probe Molecular Interactions on the Cell Surface

机译:工程化的适体可探测细胞表面上的分子相互作用

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摘要

Significant progress has been made in understanding the nature of molecular interactions on the cell membrane. To decipher such interactions, molecular scaffolds can be engineered as a tool to modulate these events as they occur on the cell membrane. To guarantee reliability, scaffolds that function as modulators of cell membrane events must be coupled to a targeting moiety with superior chemical versatility. In this regard, nucleic acid aptamers are a suitable class of targeting moieties. Aptamers are inherently chemical in nature, allowing extensive site-specific chemical modification to engineer sensing molecules. Aptamers can be easily selected using a simple laboratory-based in vitro evolution method enabling the design and development of aptamer-based functional molecular scaffolds against wide range of cell surface molecules. This article reviews the application of aptamers as monitors and modulators of molecular interactions on the mammalian cell surface with the aim of increasing our understanding of cell-surface receptor response to external stimuli. The information gained from these types of studies could eventually prove useful in engineering improved medical diagnostics and therapeutics.
机译:在了解细胞膜上分子相互作用的本质方面已经取得了重大进展。为了破译这种相互作用,可以将分子支架工程化为调节这些事件在细胞膜上发生时的工具。为确保可靠性,必须将具有细胞膜事件调节剂功能的支架与具有优异化学多功能性的靶向部分偶联。在这方面,核酸适体是合适的靶向部分。适体本质上是化学的,可以进行广泛的针对特定位点的化学修饰,以工程化传感分子。可以使用简单的基于实验室的体外进化方法轻松选择适体,从而能够设计和开发针对多种细胞表面分子的基于适体的功能性分子支架。本文综述了适体作为哺乳动物细胞表面分子相互作用的监测和调节剂的应用,目的是增进我们对细胞表面受体对外部刺激反应的了解。从这些类型的研究中获得的信息最终可以证明对工程改进医疗诊断和治疗方法有用。

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