Interfibio Consolidated Research Group, Department of Chemical Engineering, Universitat Rovira I Virgili, 43007 Tarragona, Spain.
Institució Catalana de Recerca I Estudis Avançats (ICREA), Passeig Lluís Companys 23, 08010 Barcelona, Spain.
Biosensors (Basel). 2022 Nov 4;12(11):972. doi: 10.3390/bios12110972.
Aptamer-based assays and sensors are garnering increasing interest as alternatives to antibodies, particularly due to their increased flexibility for implementation in alternative assay formats, as they can be employed in assays designed for nucleic acids, such as molecular aptamer beacons or aptamer detection combined with amplification. In this work, we took advantage of the inherent nucleic acid nature of aptamers to enhance sensitivity in a rapid and facile assay format. An aptamer selected against the anaphylactic allergen β-conglutin was used to demonstrate the proof of concept. The aptamer was generated by using biotinylated dUTPs, and the affinity of the modified aptamer as compared to the unmodified aptamer was determined by using surface plasmon resonance to calculate the dissociation constant (K), and no significant improvement in affinity due to the incorporation of the hydrophobic biotin was observed. The modified aptamer was then applied in a colorimetric competitive enzyme-linked oligonucleotide assay, where β-conglutin was immobilized on the wells of a microtiter plate, competing with β-conglutin free in solution for the binding to the aptamer. The limit of detection achieved was 68 pM, demonstrating an improvement in detection limit of three orders of magnitude as compared with the aptamer simply modified with a terminal biotin label. The concept was then exploited by using electrochemical detection and screen-printed electrodes where detection limits of 326 fM and 7.89 fM were obtained with carbon and gold electrodes, respectively. The assay format is generic in nature and can be applied to all aptamers, facilitating an easy and cost-effective means to achieve lower detection limits.
适配体基检测和传感器作为抗体的替代品越来越受到关注,特别是因为它们在替代检测模式中的应用具有更高的灵活性,因为它们可以用于设计用于核酸的检测,如分子适配体信标或与扩增结合的适配体检测。在这项工作中,我们利用适配体固有的核酸性质,在快速简便的检测模式中提高了灵敏度。选择针对过敏性过敏原β-伴大豆球蛋白的适配体来证明概念验证。该适配体是通过使用生物素化 dUTP 生成的,并且通过表面等离子体共振来确定修饰的适配体与未修饰的适配体的亲和力来计算解离常数 (K),由于亲脂性生物素的掺入而观察到亲和力没有显著提高。然后将修饰的适配体应用于比色竞争性酶联寡核苷酸检测中,其中β-伴大豆球蛋白固定在微孔板的孔中,与溶液中游离的β-伴大豆球蛋白竞争与适配体结合。实现的检测限为 68 pM,与仅用末端生物素标记修饰的适配体相比,检测限提高了三个数量级。然后通过电化学检测和丝网印刷电极利用该概念,分别使用碳和金电极获得了 326 fM 和 7.89 fM 的检测限。该检测模式具有通用性,可以应用于所有适配体,为实现更低的检测限提供了一种简单且具有成本效益的方法。