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A Network of Networks to Reproduce the Electrical Features of an Aptamer-ligand Complex - What an Electrical Network Tells about Affinity

机译:用于再现Aptamer-Ligand复制的网络的网络网络 - 电网对亲和力讲述的内容

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The increasing interest in the production and selection of aptamers for therapeutic and diagnostic applications yields many studies in recent years. Most of them investigated the production techniques, usually performed in vitro, but also the possibility of an in silico selection. Due to their specific ability of target-inhibition, some aptamers are under clinical trials, and some other were just patented by several pharmaceutical companies. However, the mechanism of aptamer-ligand formation is not completely understood. In this paper we explore the possibility to describe some topological and electrical features of the aptamer TBA alone and complexed with thrombin, its specific ligand, by using a network consisting of two different networks. The results are quite intriguing, confirming some conjectures about the different role of two cations, i.e. Na~+ and K~+, in stabilizing the compound. Furthermore, this study suggests the use of resistance measurements to discriminate among different affinities.
机译:近年来,对治疗和诊断应用的适体的生产和选择的兴趣增加产生了许多研究。其中大多数研究了生产技术,通常在体外进行,也可以在硅选择中进行的可能性。由于其特定的目标抑制能力,一些适体在临床试验中,其他一些适体由几家制药公司专利。然而,不完全理解Aptamer-anigand形成的机制。在本文中,我们探讨了通过使用由两个不同网络组成的网络,通过使用由两个不同的网络组成的网络来描述Aptamer TBA的一些拓扑和电气特征,并用凝血酶复杂化其特定的配体。结果非常有趣,确认了一些关于两个阳离子的不同作用的猜想,即Na〜+和K〜+,稳定化合物。此外,该研究表明,使用电阻测量以区分不同的亲和力。

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