Electrical & Computer Engineering Department, University of California, Los Angeles, CA, 90095, USA.
Bioengineering Department, University of California, Los Angeles, CA, 90095, USA.
Small. 2023 Dec;19(51):e2300617. doi: 10.1002/smll.202300617. Epub 2023 Apr 27.
Multiplexed computational sensing with a point-of-care serodiagnosis assay to simultaneously quantify three biomarkers of acute cardiac injury is demonstrated. This point-of-care sensor includes a paper-based fluorescence vertical flow assay (fxVFA) processed by a low-cost mobile reader, which quantifies the target biomarkers through trained neural networks, all within <15 min of test time using 50 µL of serum sample per patient. This fxVFA platform is validated using human serum samples to quantify three cardiac biomarkers, i.e., myoglobin, creatine kinase-MB, and heart-type fatty acid binding protein, achieving less than 0.52 ng mL limit-of-detection for all three biomarkers with minimal cross-reactivity. Biomarker concentration quantification using the fxVFA that is coupled to neural network-based inference is blindly tested using 46 individually activated cartridges, which shows a high correlation with the ground truth concentrations for all three biomarkers achieving >0.9 linearity and <15% coefficient of variation. The competitive performance of this multiplexed computational fxVFA along with its inexpensive paper-based design and handheld footprint makes it a promising point-of-care sensor platform that can expand access to diagnostics in resource-limited settings.
本文展示了一种用于即时检验(point-of-care)的血清诊断分析方法,该方法可同时定量检测三种急性心脏损伤生物标志物,实现了基于计算的多重检测。该即时检验传感器包括一种基于纸的荧光垂直流分析(fxVFA),该分析由低成本的移动阅读器进行处理,通过训练有素的神经网络对目标生物标志物进行定量分析,所有检测过程都可在 15 分钟内完成,每个患者只需 50µL 血清样本。该 fxVFA 平台使用人血清样本进行验证,以定量三种心脏生物标志物,即肌红蛋白、肌酸激酶同工酶-MB 和心脏型脂肪酸结合蛋白,所有三种生物标志物的检测限均小于 0.52ng/mL,且交叉反应性最小。使用基于神经网络推断的 fxVFA 进行生物标志物浓度定量分析,使用 46 个单独激活的试剂盒进行了盲测,结果显示所有三种生物标志物的相关性均很高,线性相关度>0.9,变异系数<15%。这种基于计算的多重 fxVFA 的竞争性能及其廉价的纸质设计和手持式占地面积,使其成为一种很有前途的即时检验传感器平台,有望在资源有限的环境中扩大诊断服务的可及性。