Dipartimento di Chimica, Università degli Studi di Bari A. Moro-Via Orabona, 4 70126 Bari, Italy.
Anal Chem. 2013 Apr 16;85(8):3849-57. doi: 10.1021/ac302702n. Epub 2013 Jan 30.
A Functional Bio-Interlayer Organic Field-Effect Transistor (FBI-OFET) sensor, embedding a streptavidin protein capturing layer, capable of performing label-free selective electronic detection of biotin at 3 part per trillion (mass fraction) or 15 pM, is proposed here. The response shows a logarithmic dependence spanning over 5 orders of magnitude of analyte concentration. The optimization of the FBI analytical performances is achieved by depositing the capturing layer through a controllable Layer-by-Layer (LbL) assembly, while an easy processable spin-coating deposition is proposed for potential low-cost production of equally highly performing sensors. Furthermore, a Langmuirian adsorption based model allows rationalizing the analyte binding process to the capturing layer. The FBI-OFET device is shown to operate also with an antibody interlayer as well as with an ad hoc designed microfluidic system. These occurrences, along with the proven extremely high sensitivity and selectivity, open to FBI-OFETs consideration as disposable electronic strip-tests for assays in biological fluids requiring very low detection limits.
这里提出了一种功能生物界面有机场效应晶体管(FBI-OFET)传感器,嵌入了链霉亲和素蛋白捕获层,能够在 3 部分每万亿(质量分数)或 15 pM 的情况下进行无标记选择性电子检测生物素。响应显示出对数依赖性,跨越了分析物浓度的 5 个数量级。通过可控的层层(LbL)组装沉积捕获层来优化 FBI 的分析性能,同时提出了一种易于处理的旋涂沉积方法,以潜在地生产同样具有高性能的传感器。此外,基于 Langmuir 吸附的模型允许合理分析分析物与捕获层的结合过程。FBI-OFET 器件还可以与抗体夹层以及专门设计的微流控系统一起使用。这些情况,以及已经证明的极高的灵敏度和选择性,使得 FBI-OFET 可以被考虑作为用于需要非常低检测限的生物流体分析的一次性电子条带测试。