Alba-Patiño Alejandra, Russell Steven M, Borges Marcio, Pazos-Pérez Nicolás, Álvarez-Puebla Ramón A, de la Rica Roberto
Multidisciplinary Sepsis Group, Balearic Islands Health Research Institute (IdISBa), Son Espases University Hospital S Building, Carretera de Valldemossa 79 07120 Palma de Mallorca Spain
Department of Chemistry, University of the Balearic Islands Carretera de Vallemossa km 7.5 07021 Palma de Mallorca Spain.
Nanoscale Adv. 2020 Jan 22;2(3):1253-1260. doi: 10.1039/d0na00026d. eCollection 2020 Mar 17.
Detecting small variations in the levels of IL-6 is crucial for the early diagnosis of sepsis. To be useful in clinical decision-making, this requires detecting IL-6 rapidly in whole blood and with portable readers. Here we introduce immunosensors made of filter paper that use plasmonic nanoprobes to detect IL-6 rapidly in unprocessed blood with an unmodified smartphone. Key aspects of the biosensor fabrication were optimized in order to reduce the assay time without losing sensitivity. This included testing three bioconjugation routes for protein attachment to nanoprobes using gold nanoparticles covered with carboxylate or amine moieties, or polyvinylpyrrolidone (PVP), as starting materials, and using alternating layers of polyelectrolytes to bind the capture antibody to the paper substrate. Smartphone-based signal quantification was achieved with a custom-made app featuring a unique augmented reality guidance system that circumvents the need for smartphone attachments and automates all the steps involved in color quantification. The biosensors were able to detect IL-6 with a limit of detection of 0.1 pg mL and a total assay time within 17 min. They could also detect an increase in IL-6 of only 12.5 pg mL over basal levels in whole blood with 99% confidence. The high sensitivity and rapid turnaround time afforded by the optimized biosensors and the fully automated real-time densitometry app make our biosensors well suited for emergency healthcare situations such as the identification of potential sepsis cases.
检测白细胞介素-6(IL-6)水平的微小变化对于脓毒症的早期诊断至关重要。为了在临床决策中发挥作用,这需要使用便携式读数器在全血中快速检测IL-6。在此,我们介绍一种由滤纸制成的免疫传感器,它使用等离子体纳米探针,借助未改装的智能手机在未经处理的血液中快速检测IL-6。为了在不损失灵敏度的情况下缩短检测时间,对生物传感器制造的关键环节进行了优化。这包括测试三种生物共轭途径,即将蛋白质附着到纳米探针上,使用覆盖有羧酸盐或胺基部分的金纳米颗粒,或聚乙烯吡咯烷酮(PVP)作为起始材料,并使用聚电解质交替层将捕获抗体结合到纸质基底上。基于智能手机的信号定量是通过一个定制应用程序实现的,该应用程序具有独特的增强现实引导系统,无需智能手机附件,并且能自动完成颜色定量所涉及的所有步骤。这些生物传感器能够检测IL-6,检测限为0.1 pg/mL,总检测时间在17分钟内。它们还能够以99%的置信度检测全血中IL-6水平仅比基础水平增加12.5 pg/mL的情况。优化后的生物传感器以及全自动实时密度测定应用程序所提供的高灵敏度和快速周转时间,使我们的生物传感器非常适合诸如识别潜在脓毒症病例等紧急医疗情况。