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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Immobilization of concanavalin A lectin on a reduced graphene oxidethionine surface by glutaraldehyde crosslinking for the construction of an impedimetric biosensor
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Immobilization of concanavalin A lectin on a reduced graphene oxidethionine surface by glutaraldehyde crosslinking for the construction of an impedimetric biosensor

机译:通过戊二醛交联在减少石墨烯氧基乙硫氨酸表面上的凝固凝集素的固定化,用于构建阻击性生物传感器

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Lectins, which are proteins with selective affinity to glycans or glycoproteins, have been recognized as promising agents for the construction of devices for the detection of specific glycoproteins and for glycoprofiling. This allows for the exploration of new potential biomarkers and for early diagnosis by detection of already known glycosylated biomarkers. In this work, immobilization of Concanavalin A (ConA) lectin on an electrochemically reduced graphene oxide (ErGO)/thionine (Thi) surface via glutaraldehyde (GA) crosslinking is investigated and applied for the impedimetric detection of the glycoprotein invertase (INV). An attachment of ConA/GA aggregates to the ErGO/Thi surface leads to a biosensor with a linear response in the concentration range of 10(14)-10(8) mol for INV and a sensitivity of 6.1% of R, change per decade of INV concentration. The sensitivity towards a negative control, i.e., INV with oxidized glycan moieties, is 2.97-fold lower than that towards INV. These findings provide a platform for the development of lectin-based, miniature and cheap biosensors for possible future disease diagnosis.
机译:凝集素是对聚糖或糖蛋白具有选择性亲和力的蛋白质已被认为是用于施工用于检测特定糖蛋白和糖蛋白的装置的有前途的试剂。这允许通过检测已知的糖基化生物标志物探索新的潜在生物标志物和早期诊断。在这项工作中,研究了通过戊二醛(GA)交联的电化学还原氧化物(ERGO)/硫胺(THI)表面上的康酰伐素A(Cona)凝集素的固定化,并施加用于糖蛋白转化酶(INV)的阻抗检测。将Cona / Ga骨料与ERGO / THI表面的附着在10(14)-10(8)摩尔的浓度范围内的浓度范围内的生物传感器和RIN的浓度为6.1%,每十年的变化INV集中。对阴性对照的敏感性,即氧化甘油部分的INV,比Inv低2.97倍。这些发现为未来疾病诊断提供了基于凝集素,微型和廉价生物传感器的发展,提供了一种平台。

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