College of Chemistry and Chemical Engineering, Fujian Normal University , Fuzhou 350108, P. R. China.
College of Physics and Energy, Fujian Normal University , Fuzhou 350108, P. R. China.
Anal Chem. 2016 Oct 4;88(19):9532-9538. doi: 10.1021/acs.analchem.6b02101. Epub 2016 Sep 14.
It is a great challenge to fabricate multiplex and convenient photoelectrochemical biosensors for ultrasensitive determination of biomarkers. Herein, a fascinating potentiometric addressable photoelectrochemical biosensor was reported for double biomarkers' detection by varying the applied bias in the detection process. In this biosensor, the nanocomposite of cube anatase TiO mesocrystals and polyamidoamine dendrimers modified a dual disk electrode as an excellent photoelectrochemical sensing matrix. Subsequently, two important biomarkers in serum for prostate cancer, prostate-specific antigen and human interleukin-6, were immobilized onto the different disks of modified electrode via glutaraldehyde bridges. Then another two photosensitizers, graphitic-carbon-nitride-labeled and CS-AgI-labeled different antibodies, were self-assembled onto the electrode surface by a corresponding competitive immune recognition reaction. The change in photocurrent with the target antigen concentration at different critical voltages enables us to selectively and quantitatively determine targets. The results demonstrated that this potentiometric addressable photoelectrochemical biosensing strategy not only has great promise as a new point-of-care diagnostic tool for early detection of prostate cancer but also can be conveniently expanded to multiplex biosensing by simply change biomarkers. More importantly, this work provides an unambiguous operating guideline of multiplex photoelectrochemical immunoassay.
制备用于超灵敏测定生物标志物的多路复用且方便的光电化学生物传感器是一项巨大的挑战。在此,通过在检测过程中改变施加的偏压,报道了一种迷人的电位可寻址光电化学生物传感器,用于双生物标志物的检测。在该生物传感器中,多枝状聚酰胺胺修饰的立方锐钛矿 TiO 介孔晶体纳米复合物作为一种优异的光电化学传感基质修饰双圆盘电极。随后,两种重要的血清前列腺癌生物标志物,前列腺特异性抗原和人白细胞介素-6,通过戊二醛桥固定在修饰电极的不同圆盘上。然后,通过相应的竞争性免疫识别反应,将另两种光敏剂,石墨相氮化碳标记和 CS-AgI 标记的不同抗体,自组装到电极表面上。在不同临界电压下,随着目标抗原浓度的变化的光电流使我们能够选择性和定量地确定目标。结果表明,这种电位可寻址光电化学生物传感策略不仅有望成为早期前列腺癌诊断的新型即时诊断工具,而且通过简单改变生物标志物,还可以方便地扩展到多路复用生物传感。更重要的是,这项工作为多路复用光电化学免疫分析提供了明确的操作指南。