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A superoxide anion biosensor based on direct electron transfer of superoxide dismutase on sodium alginate sol-gel film and its application to monitoring of living cells

机译:基于超氧化物歧化酶在海藻酸钠溶胶-凝胶膜上直接电子转移的超氧阴离子生物传感器及其在活细胞监测中的应用

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摘要

The direct electron transfer of superoxide dismutase (SOD) was greatly facilitated by sodium alginate (SA) sol-gel film with the formal potential of 0.14V, which was just located between O2~(·-)/O2 and O2~(·-)/H2O2. The preparation of the SOD/SA modified electrode was simple without any mediators or promoters. Based on bimolecular recognition for specific reactivity of SOD/SA toward O2~(·-), the SOD modified electrode was utilized to measure O2~(·-) with good analytical performance, such as low applied potential (OV), high selectivity (no obvious interference), wide linear range (0.44-229.88 μM) and low detection limit (0.23 μM) in pH 7,0 phosphate buffer solution. Furthermore, it could be successfully exploited for the determination of O2~(·-) released from living cells directly adhered on the modified electrode surface. Thus, the proposed O2~(·-) biosensor, combining with the properties of SA sol-gel film, provided a novel approach for protein immobilization, direct electron transfer study of the immobilized protein and realtime determination of O2~(·-) released from living cells.
机译:海藻酸钠(SA)溶胶-凝胶薄膜极大地促进了超氧化物歧化酶(SOD)的直接电子转移,其形式电位为0.14V,正好位于O2〜(·-)/ O2和O2〜(·- )/ H2O2。 SOD / SA修饰电极的制备非常简单,没有任何介体或促进剂。基于双分子识别SOD / SA对O2〜(·-)的比活性,SOD修饰电极用于测量O2〜(·-),具有良好的分析性能,如低施加电势(OV),高选择性( pH磷酸盐缓冲溶液中线性范围宽(0.44-229.88μM)和低检测限(0.23μM),无明显干扰)。此外,它还可以成功地用于测定直接附着在修饰电极表面的活细胞释放的O2〜(·-)。因此,所提出的O2〜(·-)生物传感器结合SA溶胶-凝胶膜的特性,为蛋白质固定化,固定化蛋白质的直接电子转移研究以及实时测定释放的O2〜(·-)提供了一种新方法。来自活细胞。

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