Jarić Stefan, Wenger Mario, Bobrinetskiy Ivan, Stapelfeldt André, Pena-Amelunxen Glorismer, Šikoparija Branko, Aglas Lorenz
BioSense Institute - Research and Development Institute for Information Technologies in Biosystems, University of Novi Sad, Novi Sad, 21000, Serbia.
Department of Biosciences and Medical Biology, Paris Lodron University of Salzburg, Salzburg, 5020, Austria.
Heliyon. 2024 Oct 4;10(20):e38922. doi: 10.1016/j.heliyon.2024.e38922. eCollection 2024 Oct 30.
Pollen traps, the current gold standard to determine pollen load and thereby the allergy season, are not sufficient to determine the allergenic risk. Therefore, the establishment of highly sensitive assays for allergen measurement is of highest interest. Herein, a graphene field-effect transistor (GFET) was constructed on an interdigitated electrodes chip to develop an immersible biosensor, which was used to detect the major birch pollen allergen Bet v 1. Graphene was wet-transferred on interdigitated electrodes that contain a reference electrode used as a liquid gate in the GFET. Using a standard ELISA protocol, two different anti-Bet v 1 antibodies were chosen and immobilized on graphene for the specific capture of the target allergen. The sensitivity of the GFET biosensor was evaluated using a standard Ag/AgCl liquid gate electrode and a reference electrode when the chip was immersed in Bet v 1-containing solutions. The results showed a higher performance and sensitivity for Bet v 1 detection compared to a mediator release method, one of the most sensitive assays for allergen detection. Compared with conventional methods of allergen detection, these immersible biosensors significantly improved the speed and level of detection providing the foundation of a point-of-need platform for in-field application. Furthermore, the proposed technique provides both a new biosensor for allergen detection and a strategy for designing low-cost integrated biosensors.
花粉捕捉器是目前确定花粉负载量从而确定过敏季节的金标准,但不足以确定致敏风险。因此,建立高灵敏度的过敏原检测方法至关重要。在此,在叉指电极芯片上构建了石墨烯场效应晶体管(GFET),以开发一种可浸入式生物传感器,用于检测主要的桦树花粉过敏原Bet v 1。石墨烯通过湿法转移到包含用作GFET中液体栅极的参比电极的叉指电极上。采用标准酶联免疫吸附测定(ELISA)方案,选择两种不同的抗Bet v 1抗体并固定在石墨烯上,用于特异性捕获目标过敏原。当芯片浸入含Bet v 1的溶液中时,使用标准的Ag/AgCl液体栅极电极和参比电极评估GFET生物传感器的灵敏度。结果表明,与过敏原检测最灵敏的方法之一——介质释放法相比,该生物传感器在检测Bet v 1时具有更高的性能和灵敏度。与传统的过敏原检测方法相比,这些可浸入式生物传感器显著提高了检测速度和水平,为现场应用的即时检测平台奠定了基础。此外,所提出的技术既提供了一种用于过敏原检测的新型生物传感器,也提供了一种设计低成本集成生物传感器的策略。