BIOSYST-MeBioS, KU Leuven-University of Leuven, Willem de Croylaan 42, B-3001 Leuven, Belgium.
Biosens Bioelectron. 2013 May 15;43:245-51. doi: 10.1016/j.bios.2012.12.022. Epub 2012 Dec 20.
The rising prevalence to food allergies in the past two decades, together with the fact that the only existing therapy is avoidance of allergen-containing food next to the implementation of anti-allergic drugs, urges the need for improved performance of current assays to detect potential allergens in food products. Therein, the focus has been on aptamer-based biosensors in recent years. In this paper we report for the first time the selection of aptamers against one of the most important peanut allergens, Ara h 1. Several Ara h1 DNA aptamers were selected after eight selection rounds using capillary electrophoresis (CE)-SELEX. The selected aptamers specifically recognized Ara h 1 and did not significantly bind with other proteins, including another peanut allergen Ara h 2. The dissociation constant of a best performing aptamer was in the nanomolar range as determined independently by three different approaches, which are surface plasmon resonance, fluorescence anisotropy, and capillary electrophoresis (353 ± 82 nM, 419 ± 63 nM, and 450 ± 60 nM, respectively). Furthermore, the selected aptamer was used for bioassay development on a home-built fiber optic surface plasmon resonance (FO-SPR) biosensor platform for detecting Ara h 1 protein in both buffer and food matrix samples demonstrating its real potential for the development of novel, more accurate aptamer-based biosensors. In conclusion, the reported aptamer holds a great potential for the detection of Ara h 1 in both the medical field and the food sector due to its high affinity and specificity for the target protein.
在过去的二十年中,食物过敏的患病率不断上升,而唯一现有的治疗方法是避免食用含过敏原的食物,同时还要使用抗过敏药物,这促使人们需要改进当前用于检测食品中潜在过敏原的检测方法。近年来,人们将重点放在了适配体生物传感器上。本文首次报道了针对花生过敏原 Ara h 1 的适配体的选择。在使用毛细管电泳(CE)-SELEX 进行了八轮选择后,筛选出了几个 Ara h1 DNA 适配体。所选的适配体特异性地识别 Ara h 1,并且与其他蛋白质(包括另一种花生过敏原 Ara h 2)没有明显的结合。通过三种不同方法(表面等离子体共振、荧光各向异性和毛细管电泳)独立确定的最佳性能适配体的解离常数均在纳摩尔范围内(分别为 353±82 nM、419±63 nM 和 450±60 nM)。此外,所选择的适配体还用于基于光纤表面等离子体共振(FO-SPR)生物传感器平台的生物测定开发,以检测缓冲液和食品基质样品中的 Ara h 1 蛋白,这证明了它在开发新型、更准确的适配体生物传感器方面的实际潜力。总之,由于该适配体对目标蛋白具有高亲和力和特异性,因此它在医学领域和食品领域中具有很大的潜力用于检测 Ara h 1。