College of Information Science Technology, Nankai University, Tianjin, China.
Analyst. 2011 Nov 7;136(21):4533-8. doi: 10.1039/c1an15133a. Epub 2011 Sep 16.
A bio-mimetic anchoring strategy based on L-3,4-dihydroxyphenylalanine (L-DOPA) was exploited to activate the surface of light addressable potentiometric sensor (LAPS), with the structure of Si(3)N(4)/SiO(2)/Si. X-Ray photoelectron spectroscopy (XPS) measurements were carried out to ascertain its existence. The protein's immobilization on L-DOPA-initiated LAPS were also tested by our LAPS system. Then L-DOPA-activated LAPS were applied in the unlabeled rabbit anti-mouse immunoglobulin (IgG) detection. The maximum sensitivity of L-DOPA-activated LAPS to antigen (Ag) is about 5.68 nA/p[Ag]. LAPS responses in IgG measurements were from 95 to 180 nA, when the concentration was varied from 0-4 μg mL(-1). These experiments show that L-DOPA is an available material for LAPS surface modifications. At the same time, simulations based on MEDICI (Synopsys™) were performed. The simulated curves are in accordance with experimental data which demonstrate our theoretical analysis for the experimental phenomenon, and indicate the feasibility of simulating biological electronic devices with MEDICI.
采用基于 L-3,4-二羟基苯丙氨酸 (L-DOPA) 的仿生锚定策略来激活光寻址电位传感器 (LAPS) 的表面,其结构为 Si(3)N(4)/SiO(2)/Si。通过 X 射线光电子能谱 (XPS) 测量来确定其存在。还通过我们的 LAPS 系统测试了 L-DOPA 引发的 LAPS 上蛋白质的固定化。然后,将 L-DOPA 激活的 LAPS 应用于未标记的兔抗小鼠免疫球蛋白 (IgG) 的检测。L-DOPA 激活的 LAPS 对抗原 (Ag) 的最大灵敏度约为 5.68 nA/p[Ag]。当浓度从 0 到 4 μg mL(-1) 变化时,在 IgG 测量中 LAPS 的响应从 95 到 180 nA。这些实验表明 L-DOPA 是 LAPS 表面修饰的一种可用材料。同时,基于 MEDICI(Synopsys™)进行了模拟。模拟曲线与实验数据一致,证明了我们对实验现象的理论分析,并表明了使用 MEDICI 模拟生物电子器件的可行性。