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Reconfigurable Self-Assembly and Kinetic Control of Multiprogrammed DNA-Coated Particles

机译:可重新配置的自组装和多分册DNA涂层颗粒的动力学控制

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摘要

DNA is a unique molecule for storing information, which is used to provide particular biological instructions. Its function is primarily determined by the sequence of its four nucleobases, which have highly specific base-pairing interactions. This unique feature can be applied to direct the self-assembly of colloids by grafting DNA onto them. Due to the sequence-specific interactions, colloids can be programmed with multiple instructions. Here, we show that particles having multiple DNA strands with different melting profiles can undergo multiple phase transitions and reassemble into different crystalline structures in response to temperature. We include free DNA strands in the medium to selectively switch on and off DNA hybridization depending on temperature. We also demonstrate that DNA hybridization kinetics can be used as a means to achieve targeted assembling structure of colloids. These transitions impart a reconfigurability to colloids in which systems can be transformed an arbitrary number of times using thermal and kinetic control.
机译:DNA是用于存储信息的独特分子,其用于提供特定的生物学指令。其功能主要由其四种核碱基的序列确定,其具有高度特异性的基础配对相互作用。可以应用这种独特的特征来通过将DNA移植到它们上来指导胶体的自组装。由于序列特异性相互作用,可以用多个指令编程胶体。这里,我们表明,具有不同熔化型材的多个DNA链的颗粒可以经历多相转变并响应于温度重新组装成不同的结晶结构。我们包括培养基中的自由DNA链,可根据温度选择性地接通和关闭DNA杂交。我们还证明DNA杂交动力学可以用作实现胶体的靶向组装结构的手段。这些转变赋予胶体的可重构性,其中可以使用热和动力控制将系统转换任意次数。

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