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Microelectrochemical Smart Needle for Real Time Minimally Invasive Oximetry

机译:微电化学智能针用于实时侵入性血液血液血液

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摘要

A variety of brain disorders such as neural injury, brain dysfunction, vascular malformation, and neurodegenerative diseases are associated with abnormal levels of oxygen. Current methods to directly monitor tissue oxygenation in the brain are expensive and invasive, suffering from a lack of accuracy. Electrochemical detection has been used as an invasiveness and cost-effectiveness method, minimizing pain, discomfort, and injury to the patient. In this work, we developed a minimally invasive needle-sensor with a high surface area to monitor O2 levels in the brain using acupuncture needles. The approach was to directly etch the iron from stainless steel acupuncture needles via a controlled pitting corrosion process, obtaining a high microporous surface area. In order to increase the conductivity and selectivity, we designed and applied for the first time a low-cost coating process using non-toxic chemicals to deposit high surface area carbon nanoparticle, catalytically active laccase, and biocompatible polypyrrole. The physicochemical properties of the materials were characterized as well as their efficacy and viability as probes for the electrochemical detection of PO2. Our modified needles exhibited efficient electrocatalysis and high selectivity toward O2, with excellent repeatability. We well engineered a small diagnostic tool to monitor PO2, minimally invasive, able to monitor real-time O2 in vivo complex environments.
机译:各种脑疾病,如神经损伤,脑功能障碍,血管畸形和神经变性疾病都与氧气异常有关。目前的方法是直接监测大脑中的组织氧合是昂贵的且侵入性的,患有缺乏准确性。电化学检测已被用作侵入性和成本效益方法,最大限度地减少患者的疼痛,不适和伤害。在这项工作中,我们开发了一种具有高表面积的微创针传感器,用于使用针灸针监测大脑中的O2水平。该方法是通过受控的蚀腐蚀过程直接蚀刻来自不锈钢针灸针,获得高微孔表面积。为了提高电导率和选择性,我们首次设计和施加了使用无毒化学物质的低成本涂布方法,以沉积高表面积碳纳米粒子,催化活性漆酶和生物相容性聚吡咯。材料的物理化学性质表征,以及它们作为PO2电化学检测的探针的功效和活力。我们改良的针头表现出高效的电催化和对O2的高选择性,具有出色的可重复性。我们精心设计了一个小型诊断工具来监控PO2,最微创,能够监控体内复杂环境中的实时O2。

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