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水凝胶微针辅助分析,整合适体探针和荧光检测,实现无试剂生物标志物定量分析。

Hydrogel Microneedle-Assisted Assay Integrating Aptamer Probes and Fluorescence Detection for Reagentless Biomarker Quantification.

机构信息

Department of Electrical and Computer Engineering, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.

Leslie L. Dan Faculty of Pharmacy, University of Toronto, Toronto, Ontario M5S 3M2, Canada.

出版信息

ACS Sens. 2022 Aug 26;7(8):2387-2399. doi: 10.1021/acssensors.2c01033. Epub 2022 Jul 22.

Abstract

Analyzing interstitial fluid (ISF) via microneedle (MN) devices enables patient health monitoring in a minimally invasive manner and in point-of-care settings. However, most MN-based diagnostic approaches require complicated fabrication processes and postprocessing of the extracted ISF or are limited to detection of electrochemically active biomarkers. Here, we show on-needle measurement of target analytes by integrating hydrogel microneedles with aptamer probes as the recognition elements. Fluorescently tagged aptamer probes are chemically attached to the hydrogel matrix using a simple and novel approach, while a cross-linked patch is formed. For reagentless detection, we employ a strand displacement strategy where fluorophore-conjugated aptamers are hybridized with a DNA competitor strand conjugated to a quencher molecule. The assay is utilized for rapid (2 min) measurement of glucose, adenosine triphosphate, l-tyrosinamide, and thrombin ex vivo. Furthermore, the system enables specific and sensitive quantification of rising and falling concentrations of glucose in an animal model of diabetes to track hypoglycemia, euglycemia, and hyperglycemia conditions. Our assay can be applied for rapid measurement of a diverse range of biomarkers, proteins, or small molecules, introducing a generalizable platform for biomolecule quantification, and has the potential to improve the quality of life of patients who are in need of close monitoring of biomarkers of health and disease.

摘要

通过微针 (MN) 设备分析间质液 (ISF) 能够以微创方式和在即时护理环境中监测患者健康。然而,大多数基于 MN 的诊断方法需要复杂的制造工艺和对提取的 ISF 进行后处理,或者仅限于检测电化学活性生物标志物。在这里,我们通过将水凝胶微针与适体探针作为识别元件集成,展示了在针上对靶标分析物的测量。荧光标记的适体探针通过一种简单而新颖的方法化学附着到水凝胶基质上,同时形成交联贴片。为了进行无试剂检测,我们采用链置换策略,其中荧光标记的适体与与猝灭分子偶联的 DNA 竞争链杂交。该测定法用于快速(2 分钟)测量葡萄糖、三磷酸腺苷、L-酪氨酸酰胺和凝血酶的体外。此外,该系统能够特异性和灵敏地定量检测糖尿病动物模型中葡萄糖浓度的升高和降低,以跟踪低血糖、正常血糖和高血糖情况。我们的测定法可用于快速测量各种生物标志物、蛋白质或小分子,为生物分子定量提供了一个可推广的平台,并有可能提高需要密切监测健康和疾病生物标志物的患者的生活质量。

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