Shah Alok K, Hill Michelle M, Shiddiky Muhammad J A, Trau Matt
The University of Queensland Diamantina Institute, The University of Queensland, Translational Research Institute, QLD 4102, Australia.
Analyst. 2014 Nov 21;139(22):5970-6. doi: 10.1039/c4an00781f.
Aberrant protein glycosylation is associated with a range of pathological conditions including cancer and possesses diagnostic importance. Translation of glycoprotein biomarkers will be facilitated by the development of a rapid and sensitive analytical platform that simultaneously interrogates both the glycan and protein epitopes of glycoproteins in body fluids such as serum or saliva. To this end, we developed an electrochemical biosensor based on the immobilization of a lectin on the gold electrode surface to recognize/capture a target glycan epitope conjugated to glycoproteins, followed by detection of the protein epitope using a target protein-specific antibody. Electrochemical signals are generated by label-free voltammetric or impedimetric interrogation of a ferro/ferricyanide redox couple (e.g. Fe(CN)6) on the sensing surface, where the change in voltammetric current or interfacial electron transfer resistance was measured. The detection system was demonstrated using the model glycoprotein chicken ovalbumin with Sambucus nigra agglutinin type I (SNA lectin), and exhibits femtomolar sensitivity in the background of diluted human serum. The results obtained in this proof-of-concept study demonstrate the possibility of using electrochemical detection for developing cheap point-of-care diagnostics with high specificity and sensitivity for blood glycoprotein biomarkers.
异常的蛋白质糖基化与包括癌症在内的一系列病理状况相关,并且具有诊断重要性。开发一种快速且灵敏的分析平台将有助于糖蛋白生物标志物的翻译,该平台能够同时检测血清或唾液等体液中糖蛋白的聚糖和蛋白质表位。为此,我们开发了一种电化学生物传感器,其基于将凝集素固定在金电极表面以识别/捕获与糖蛋白缀合的目标聚糖表位,随后使用目标蛋白特异性抗体检测蛋白质表位。通过对传感表面上的亚铁氰化钾/铁氰化钾氧化还原对(例如Fe(CN)6)进行无标记伏安法或阻抗分析法来产生电化学信号,其中测量伏安电流或界面电子转移电阻的变化。使用含有I型黑接骨木凝集素(SNA凝集素)的模型糖蛋白鸡卵清蛋白对检测系统进行了验证,并且在稀释的人血清背景下表现出飞摩尔灵敏度。在这项概念验证研究中获得的结果表明,利用电化学检测开发针对血液糖蛋白生物标志物具有高特异性和灵敏度的廉价即时诊断方法是有可能的。