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Glucose and Lactate Biosensors for Scanning Electrochemical Microscopy Imaging of Single Live Cells

机译:葡萄糖和乳酸生物传感器用于扫描单个活细胞的电化学显微镜成像

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摘要

We have developed glucose and lactate ultramicroelectrode (UME) biosensors based on glucose oxidase and lactate oxidase (with enzymes immobilized onto Pt UMEs by either electropolymerization or casting) for scanning electrochemical microscopy (SECM), and have determined their sensitivity to glucose and lactate, respectively. The results of our evaluations reveal different advantages for sensors constructed by each method: improved sensitivity and shorter manufacturing time for hand-casting, and increased reproducibility for electropolymerization. We have acquired amperometric approach curves (ACs) for each type of manufactured biosensor UME, and these ACs can be used as a means of positioning the UME above a substrate at a known distance. We have used the glucose biosensor UMEs to record profiles of glucose uptake above individual fibroblasts. Likewise, we have employed the lactate biosensor UMEs for recording the lactate production above single cancer cells with the SECM. We also show that oxygen respiration profiles for single cancer cells do not mimic cell topography, but are rather more convoluted, with a higher respiration activity observed at the points where the cell touches the Petri dish. These UME biosensors, along with the application of others already described in the literature, could prove to be powerful tools for mapping metabolic analytes, such as glucose, lactate and oxygen, in single cancer cells.
机译:我们开发了基于葡萄糖氧化酶和乳酸氧化酶(通过电聚合或浇铸将酶固定在Pt UME上的酶)的葡萄糖和乳酸超微电极(UME)生物传感器,用于扫描电化学显微镜(SECM),并分别确定了它们对葡萄糖和乳酸的敏感性。 。我们的评估结果揭示了每种方法构造的传感器的不同优势:提高了灵敏度,缩短了手工铸造的制造时间,并提高了电聚合的可重复性。我们已经获得了每种制造的生物传感器UME的安培接近曲线(AC),这些AC可用作将UME定位在基板上方已知距离处的一种方式。我们已经使用葡萄糖生物传感器UME来记录单个成纤维细胞上方的葡萄糖摄取情况。同样,我们采用了乳酸生物传感器UME,通过SECM记录了单个癌细胞上方的乳酸产生。我们还显示,单个癌细胞的氧气呼吸谱不能模仿细胞的地形,而更容易被盘绕,在细胞接触皮氏培养皿时观察到更高的呼吸活性。这些UME生物传感器以及其他已经在文献中描述的生物传感器的应用,可以证明是在单个癌细胞中绘制代谢分析物(例如葡萄糖,乳酸和氧)的强大工具。

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