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Continuous Hydrogel-Based Glucose Sensors With Reduced pH Interference and Contact–Free Signal Transduction

机译:连续的基于水凝胶的葡萄糖传感器,减少了pH干扰和无接触信号传导

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摘要

There is a great societal need for continuous glucose sensors that can monitor glucose concentrations in patients suffering from diabetes as well as in bioreactors used to manufacture pharmaceutical proteins. In our previous paper (Nguyen et al, Sensors & Actuators B, 2018), we have shown that polyampholytic glucose-sensitive hydrogels (GSHs) that contain both fixed positive and negative charges along the polymer backbone are particularly suitable for this application, provided that the hydrogels contain an excess of positive over negative charges at typical pH values. Here, we show how the autonomous swelling response of such a polyampholytic GSH can be transduced into electrical signals using a contact-free method that employs magnetometers. Contact-free signal transduction should improve the biocompatibility of continuous glucose sensors as well as reduce the risk of corrosion to key electronic components. In addition, we show that one can substantially reduce pH interference upon the glucose sensor signal by replacing a portion of the tertiary amines present in the polyampholytic GSHs with cationic quaternary amines.
机译:社会上非常需要连续的葡萄糖传感器,其可以监测患有糖尿病的患者以及用于制造药物蛋白的生物反应器中的葡萄糖浓度。在我们之前的论文中(Nguyen等人,Sensors&Actuators B,2018),我们已经显示了沿着聚合物主链同时包含固定正电荷和负电荷的聚两性葡萄糖敏感水凝胶(GSH)特别适用于此应用。在典型的pH值下,水凝胶含有过量的正电荷而不是负电荷。在这里,我们展示了如何使用采用磁力计的非接触式方法将这种多两性GSH的自发溶胀反应转化为电信号。非接触信号转导应改善连续葡萄糖传感器的生物相容性,并降低对关键电子元件的腐蚀风险。此外,我们表明,通过用阳离子季胺取代多两性GSH中存在的一部分叔胺,可以大大降低pH对葡萄糖传感器信号的干扰。

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