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Catechol-Based Hydrogel for Chemical Information Processing

机译:基于邻苯二酚的水凝胶用于化学信息处理

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Catechols offer diverse properties and are used in biology to perform various functions that range from adhesion (e.g., mussel proteins) to neurotransmission (e.g., dopamine), and mimicking the capabilities of biological catechols have yielded important new materials (e.g., polydopamine). It is well known that catechols are also redox-active and we have observed that biomimetic catechol-modified chitosan films are redox-active and possess interesting molecular electronic properties. In particular, these films can accept, store and donate electrons, and thus offer redox-capacitor capabilities. We are enlisting these capabilities to bridge communication between biology and electronics. Specifically, we are investigating an interactive redox-probing approach to access redox-based chemical information and convert this information into an electrical modality that facilitates analysis by methods from signal processing. In this review, we describe the broad vision and then cite recent examples in which the catechol–chitosan redox-capacitor can assist in accessing and understanding chemical information. Further, this redox-capacitor can be coupled with synthetic biology to enhance the power of chemical information processing. Potentially, the progress with this biomimetic catechol–chitosan film may even help in understanding how biology uses the redox properties of catechols for redox signaling.
机译:邻苯二酚具有多种特性,并且在生物学中用于执行从粘附(例如贻贝蛋白)到神经传递(例如多巴胺)的各种功能,并且模仿生物邻苯二酚的功能产生了重要的新材料(例如聚多巴胺)。众所周知,邻苯二酚也具有氧化还原活性,我们已经观察到仿生邻苯二酚改性的壳聚糖薄膜具有氧化还原活性,并具有令人感兴趣的分子电子性质。特别是,这些薄膜可以接受,存储和捐赠电子,因此具有氧化还原电容器的功能。我们正在利用这些功能来桥接生物学和电子学之间的交流。具体来说,我们正在研究一种交互式的氧化还原探测方法,以访问基于氧化还原的化学信息,并将该信息转换为电信号形式,从而有助于通过信号处理方法进行分析。在这篇综述中,我们描述了广阔的视野,然后列举了儿茶酚-壳聚糖氧化还原电容器可以协助访问和理解化学信息的最新例子。此外,该氧化还原电容器可与合成生物学结合使用,以增强化学信息处理的能力。仿生邻苯二酚-壳聚糖膜的潜在进展甚至可能有助于理解生物学如何利用邻苯二酚的氧化还原特性进行氧化还原信号传递。

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