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Digital Patterning of Glucose Oxidase for Electrochemical Glucose Biosensors

机译:电化学葡萄糖生物传感器的葡萄糖氧化酶的数字模式。

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Type 1 diabetes is a pancreatic disease that afflicts over one million people in the United States. Patients with type 1 diabetes are not able to produce their own insulin and must use portable blood glucose monitors to measure glucose levels, and have insulin delivered by injection or pump. Glucose monitoring in the subcutaneous tissue closely parallels the blood glucose values, and allows patients to be alerted to hypoglycemia and hyperglycemia conditions. We are using electrohydrodynamic (e-jet) printing to pattern glucose oxidase on flexible amperometric glucose sensors. E-jet printing is of interest for these sensors since printing of features down to 200 nm has previously been demonstrated, while e-jet printing also allows significant flexibility in the digital patterning of glucose enzyme electrodes on either rigid or flexible substrates in a variety of sizes and shapes. In this presentation we will discuss glucose oxidase ink formulation, surface pretreatment conditions, and electrochemical characterization of the printed glucose enzyme electrodes.
机译:1型糖尿病是一种胰腺疾病,在美国折磨着超过100万人。 1型糖尿病患者无法产生自己的胰岛素,必须使用便携式血糖监测仪测量葡萄糖水平,并通过注射或泵送胰岛素。皮下组织中的葡萄糖监测与血糖值非常相似,并可以提醒患者注意低血糖和高血糖情况。我们正在使用电动(e-jet)印刷技术在柔性电流型葡萄糖传感器上对葡萄糖氧化酶进行图案化。对于这些传感器,E-jet印刷是令人感兴趣的,因为先前已经证明了可印刷至200 nm的特征,而e-jet印刷还可以在各种刚性或柔性基材上的葡萄糖酶电极的数字图案化中提供显着的灵活性。大小和形状。在本演示中,我们将讨论葡萄糖氧化酶墨水的配方,表面预处理条件以及印刷的葡萄糖酶电极的电化学特性。

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