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Robustness of DNA Strand Displacement Systems? ?

机译:DNA链置换系统的坚固性?

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How to construct a reliable deoxyribonucleic acid (DNA) circuit is one of the most important issues in the field of molecular programming and computing. Such a circuit frequently suffers from various kinds of unintended binding reactions on account of a lower specificity of the molecular interaction emerging from base complementarity between DNA strands, which results in low reliability of the molecular circuit. In this study, we propose a method to quantitatively evaluate the robustness of a DNA circuit created by DNA strand displacement reactions. The highlight of our method is representing the circuit system contaminated by unintended reactions by a standard form of a disturbed nonlinear system and evaluating the robustness with theL2gain by solving the Hamilton–Jacobi inequality.
机译:如何构建可靠的脱氧核糖核酸(DNA)电路是分子编程和计算领域中最重要的问题之一。由于从DNA链之间的碱基互补性出现的分子相互作用的特异性较低,因此这种电路经常遭受各种意外的结合反应,这导致分子电路的可靠性低。在这项研究中,我们提出了一种定量评估由DNA链置换反应产生的DNA电路的鲁棒性的方法。我们方法的重点是用标准形式的受干扰的非线性系统来表示被意外反应污染的电路系统,并通过解决汉密尔顿-雅各比不等式来评估L2增益的鲁棒性。

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