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Multienzyme Inkjet Printed 2D Arrays

机译:多酶喷墨印刷二维阵列

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The use of printing to produce 2D arrays is well established, and should be relatively facile to adapt for the purpose of printing biomaterials; however, very few studies have been published using enzyme solutions as inks. Among the printing technologies, inkjet printing is highly suitable for printing biomaterials and specifically enzymes, as it offers many advantages. Formulation of the inkjet inks is relatively simple and can be adjusted to a variety of biomaterials, while providing nonhannful environment to the enzymes. Here we demonstrate the applicability of inkjet printing for patterning multiple enzymes in a predefined array in a very straightforward, noncontact method. Specifically, various arrays of the enzymes glucose oxidase (GOx), invertase (INV) and horseradish peroxidase (HP) were printed on aminated glass surfaces, followed by immobilization using glutardialdehyde after printing. Scanning electrochemical microscopy (SECM) was used for imaging the printed patterns and to ascertain the enzyme activity. The successful formation of 2D arrays consisting of enzymes was explored as a means of developing the first surface confined enzyme based logic gates. Principally, XOR and AND gates, each consisting of two enzymes as the Boolean operators, were assembled, and their operation was studied by SECM.
机译:使用印刷来产生二维阵列已经很成熟,并且应该相对容易适应印刷生物材料的目的。然而,很少有使用酶溶液作为油墨的研究发表。在打印技术中,喷墨打印非常适合用于打印生物材料,尤其是酶,因为它具有许多优点。喷墨油墨的配制相对简单,可以调整为多种生物材料,同时为酶提供了无害的环境。在这里,我们演示了喷墨打印在一种非常简单,非接触式的模式下以预定阵列中的多种酶构图的适用性。具体而言,将各种酶的葡萄糖氧化酶(GOx),转化酶(INV)和辣根过氧化物酶(HP)印刷在胺化玻璃表面上,然后在印刷后使用戊二醛固定。扫描电化学显微镜(SECM)用于成像印刷图​​案并确定酶活性。探索成功形成由酶组成的2D阵列,作为开发基于表面限制酶的第一个逻辑门的方法。原则上,组装了XOR和AND门,它们分别由两种酶组成布尔运算符,并通过SECM研究了它们的操作。

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