Sessi Violetta, Ibarlucea Bergoi, Seichepine Florent, Klinghammer Stephanie, Ibrahim Imad, Heinzig André, Szabo Nadine, Mikolajick Thomas, Hierlemann Andreas, Frey Urs, Weber Walter M, Baraban Larysa, Cuniberti Gianaurelio
Institute of Semiconductor and Microsystems, TU Dresden, Dresden, Germany.
Center for Advancing Electronics Dresden, TU Dresden, Dresden, Germany.
Front Neurosci. 2022 Jun 3;16:875656. doi: 10.3389/fnins.2022.875656. eCollection 2022.
Many biomarkers including neurotransmitters are found in external body fluids, such as sweat or saliva, but at lower titration levels than they are present in blood. Efficient detection of such biomarkers thus requires, on the one hand, to use techniques offering high sensitivity, and, on the other hand, to use a miniaturized format to carry out diagnostics in a minimally invasive way. Here, we present the hybrid integration of bottom-up silicon-nanowire Schottky-junction FETs (SiNW SJ-FETs) with complementary-metal-oxide-semiconductor (CMOS) readout and amplification electronics to establish a robust biosensing platform with 32 × 32 aptasensor measurement sites at a 100 μm pitch. The applied hetero-junctions yield a selective biomolecular detection down to femtomolar concentrations. Selective and multi-site detection of dopamine is demonstrated at an outstanding sensitivity of ∼1 V/fM. The integrated platform offers great potential for detecting biomarkers at high dilution levels and could be applied, for example, to diagnosing neurodegenerative diseases or monitoring therapy progress based on patient samples, such as tear liquid, saliva, or eccrine sweat.
包括神经递质在内的许多生物标志物都存在于诸如汗液或唾液等体外体液中,但与血液中的含量相比,其滴定水平较低。因此,要高效检测此类生物标志物,一方面需要采用具有高灵敏度的技术,另一方面需要采用小型化形式以微创方式进行诊断。在此,我们展示了自下而上的硅纳米线肖特基结场效应晶体管(SiNW SJ-FET)与互补金属氧化物半导体(CMOS)读出和放大电子器件的混合集成,以建立一个稳健的生物传感平台,该平台具有间距为100μm的32×32个适体传感器测量位点。所应用的异质结能够实现低至飞摩尔浓度的选择性生物分子检测。已证明对多巴胺的选择性和多位点检测具有约1 V/fM的出色灵敏度。该集成平台在高稀释水平下检测生物标志物方面具有巨大潜力,例如可应用于基于患者样本(如泪液、唾液或外分泌汗液)诊断神经退行性疾病或监测治疗进展。