Forouzanfar Shahrzad, Alam Fahmida, Pala Nezih, Wang Chunlei
Department of Electrical and Computer Engineering, Florida International University, United States.
Department of Electrical and Computer Engineering, Florida International University, United States.
Biosens Bioelectron. 2020 Dec 15;170:112598. doi: 10.1016/j.bios.2020.112598. Epub 2020 Sep 18.
-Label-free electrochemical aptasensors for cancer biomarker detection can be a promising means for early detection of cancer due to their high sensitivity, selectivity, and stability, and low cost. In this study, a highly sensitive and selective label-free electrochemical aptasensor based on carbon microelectromechanical systems (C-MEMS) was developed for the detection of platelet-derived growth factor-BB (PDGF-BB). The active electrodes of the aptasensors were synthesized via carbonization of SU-8 derived electrodes at high temperatures in an oxygen-free furnace. An oxygen-plasma oxidation treatment was used to functionalize the C-MEMS electrodes, which provided efficient covalent immobilization of amino terminated affinity aptamers. The turn-off and turn-on detection strategies-based on capacitance and resistance measurement, respectively-were employed. The capacitance detection strategies exhibited a wide linear response range of 0.01-50 nM, with a high sensitivity of 3.33 mF cm-2 Logc-1 (unit of c, nM) and a low limit of detection of 7 pM (S/N = 3). The resistance detection strategies exhibited an even wider linear response range of 0.005-50 nM, and a lower limit of detection of 1.9 pM (S/N = 3), with a high sensitivity of 1.65 × 103 Ω Logc (unit of c, nM). Both detection strategies provided high selectivity for PDGF-BB and high stability of 90.34% after 10 days. This research demonstrates that the developed label-free electrochemical C-MEMS based PDGF-BB aptasensor is highly sensitive, selective, and robust. This aptasensor is a promising prospect for the highly demanding task of early detection of cancer biomarkers.
用于癌症生物标志物检测的无标记电化学适体传感器,因其高灵敏度、高选择性、高稳定性及低成本,有望成为癌症早期检测的有效手段。本研究基于碳微机电系统(C-MEMS)开发了一种高灵敏度、高选择性的无标记电化学适体传感器,用于检测血小板衍生生长因子-BB(PDGF-BB)。该适体传感器的活性电极通过在无氧炉中高温碳化SU-8衍生电极合成。采用氧等离子体氧化处理对C-MEMS电极进行功能化,实现氨基末端亲和适体的高效共价固定。分别采用基于电容和电阻测量的关断和开启检测策略。电容检测策略的线性响应范围宽达0.01-50 nM,灵敏度高达3.33 mF cm-2 Logc-1(c的单位为nM),检测下限低至7 pM(S/N = 3)。电阻检测策略的线性响应范围更宽,为0.005-50 nM,检测下限为1.9 pM(S/N = 3),灵敏度高达1.65×103 Ω Logc(c的单位为nM)。两种检测策略对PDGF-BB均具有高选择性,且在10天后稳定性高达90.34%。本研究表明,所开发的基于C-MEMS的无标记电化学PDGF-BB适体传感器具有高灵敏度、高选择性和高稳定性。该适体传感器在癌症生物标志物早期检测这一高要求任务中具有广阔前景。