Antimicrobial Resistance Interdisciplinary Research Group (AMR-IRG), Singapore-MIT Alliance in Research and Technology (SMART), 1 CREATE Way, 138602 Singapore.
Department of Chemical Engineering, Massachusetts Institute of Technology (MIT), 25 Ames Street, Building 66, Cambridge, MA 02139, USA.
Lab Chip. 2022 Mar 29;22(7):1321-1332. doi: 10.1039/d2lc00073c.
Surveillance of SARS-CoV-2 infection is critical for controlling the current pandemic. Antigen rapid tests (ARTs) provide a means for surveillance. Available lateral flow assay format ARTs rely heavily on nitrocellulose paper, raising challenges in supply shortage. Vertical flow assay (VFA) with cellulose paper as test material attracts much attention as a complementary test approach. However, current reported VFAs are facing challenges in reading the test signal from the bottom face of the test cassette, complicating the test workflow and hindering translation into rapid test application. Here, we address this gap with an enhanced VFA against SARS-CoV-2 N protein that adapts a cellulose pull-down test format allowing (1) one-step sample application at the top of the test cassette and (2) readout of the test signal from the top. We also demonstrate the feasibility of translating the enhanced VFA into a point-of-care application that can help in SARS-CoV-2 surveillance.
监测 SARS-CoV-2 感染对于控制当前的大流行至关重要。抗原快速检测(ART)提供了一种监测手段。现有的侧向流动分析(LFA)格式的 ART 严重依赖于硝酸纤维素(NC)纸,这在供应短缺方面带来了挑战。以纤维素纸为检测材料的垂直流动分析(VFA)作为一种补充检测方法引起了广泛关注。然而,目前报道的 VFA 在从检测盒底部读取检测信号方面面临挑战,这增加了检测工作流程的复杂性,并阻碍了其向快速检测应用的转化。在这里,我们通过一种针对 SARS-CoV-2 N 蛋白的增强型 VFA 来解决这一差距,该 VFA 采用了纤维素下拉检测格式,允许(1)在检测盒的顶部进行一步样品添加,(2)从顶部读取检测信号。我们还展示了将增强型 VFA 转化为即时护理应用的可行性,这有助于 SARS-CoV-2 的监测。