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Yield Optimization Strategies for (DNA) Staged Tile Assembly Systems

机译:(DNA)分阶段瓷砖组装系统产生优化策略

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The staged Tile Assembly Model has been introduced by Demaine et al. 2008 as an enhancement of the previous tile self-assembly model of Winfree. In this framework, the assembly is allowed to be performed in parallel in different test-tubes, and the obtained products are stored and mixed in subsequent assembly stages. Using elegant combinatorial constructions, in has been shown that staged assembly systems possess remarkable advantage in comparison to their abstract counterparts. Because of their parallel nature, one can choose from a multitude of staged assembly strategies for assembling a given target structure. In the current work we analyze these assembly variations from a kinetic perspective, in order to determine and possibly maximize, their final assembly yield. As a pre-requirement for this task, we provide a procedure for associating an analytically tractable mathematical model to a given staged assembly experiment, based on which we can predict the yield concentration of the final assembly product. As a case study, we consider various assembly strategies as well as optimized and non-optimized assembly protocols for generating a size-10 tile assembly.
机译:Demaine等人介绍了分阶段瓷砖组装模型。 2008年作为先前瓷砖自我汇编模型的加强。在该框架中,允许组件在不同的试管中并联进行,并将所得产物存储在随后的装配阶段中。使用优雅的组合结构,已经表明,与他们的抽象同行相比,分级装配系统具有显着的优势。由于它们的平行性质,可以从多个分阶段组装策略中进行选择,用于组装给定的目标结构。在目前的工作中,我们将这些装配变化分析了动力学视角,以便确定和可能最大化,它们最终的装配产量。作为该任务的预先要求,我们提供了一种将分析易诊的数学模型与给定分阶段组装实验相关联的程序,基于该程序,我们可以预测最终组装产品的产量浓度。作为一个案例研究,我们考虑各种装配策略以及优化和非优化的装配协议,用于产生尺寸-10瓦片组件。

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