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Design and synthesis of digitally encoded polymers that can be decoded and erased

机译:可以解码和擦除的数字编码聚合物的设计和合成

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Biopolymers such as DNA store information in their chains using controlled sequences of monomers. Here we describe a non-natural information-containing macromolecule that can store and retrieve digital information. Monodisperse sequence-encoded poly(alkoxyamine amide)s were synthesized using an iterative strategy employing two chemoselective steps: the reaction of a primary amine with an acid anhydride and the radical coupling of a carbon-centred radical with a nitroxide. A binary code was implemented in the polymer chains using three monomers: one nitroxide spacer and two interchangeable anhydrides defined as 0-bit and 1-bit. This methodology allows encryption of any desired sequence in the chains. Moreover, the formed sequences are easy to decode using tandem mass spectrometry. Indeed, these polymers follow predictable fragmentation pathways that can be easily deciphered. Moreover, poly(alkoxyamine amide) s are thermolabile. Thus, the digital information encrypted in the chains can be erased by heating the polymers in the solid state or in solution.
机译:DNA等生物聚合物使用受控的单体序列将信息存储在其链中。在这里,我们描述了一种可以存储和检索数字信息的包含非自然信息的大分子。使用两个化学选择性步骤的迭代策略合成了单分散序列编码的聚(烷氧基胺酰胺):伯胺与酸酐的反应以及碳中心自由基与硝基的自由基偶联。使用三种单体在聚合物链中实现了二进制编码:一个氮氧化物间隔基和两个可互换的酸酐(定义为0位和1位)。这种方法允许对链中的任何所需序列进行加密。此外,所形成的序列易于使用串联质谱法进行解码。的确,这些聚合物遵循可容易破解的可预测的断裂途径。此外,聚(烷氧基胺酰胺)是不耐热的。因此,可以通过加热固态或溶液中的聚合物来擦除链中加密的数字信息。

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