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利用荧光探针和滚环扩增技术检测 SARS-CoV-2 受体结合域。

Detection of SARS-CoV-2 receptor binding domain using fluorescence probe and DNA flowers enabled by rolling circle amplification.

机构信息

Division of Pure and Applied Biochemistry, Department of Chemistry, Lund University, Box124, 22100, Lund, Sweden.

出版信息

Mikrochim Acta. 2023 Mar 29;190(4):163. doi: 10.1007/s00604-023-05747-6.

Abstract

Using rolling circle amplification (RCA) and two different ways of signal readout, we developed analytical methods to detect the receptor-binding domain (RBD) of SARS-CoV-2 spike protein (S protein). We modified streptavidin-coated magnetic beads with an aptamer of RBD through a biotin-tagged complementary DNA strand (biotin-cDNA). Binding of RBD caused the aptamer to dissociate from the biotin-cDNA, making the cDNA available to initiate RCA on the magnetic beads. Detection of RBD was achieved using a dual signal output. For fluorescence signaling, the RCA products were mixed with a dsDNA probe labeled with fluorophore and quencher. Hybridization of the RCA products caused the dsDNA to separate and to emit fluorescence (λ = 488 nm, λ = 520 nm). To generate easily detectable UV-vis absorbance signal, the RCA amplification was extended to produce DNA flower to encapsulate horseradish peroxidase (HRP). The HRP-encapsulated DNA flower catalyzed a colorimetric reaction between HO and 3,3',5,5'-tetramethylbenzidine (TMB) to generate an optical signal (λ = 450 nm). The fluorescence and colorimetric assays for RBD have low detection limits (0.11 pg mL and 0.904 pg mL) and a wide linear range (0.001-100 ng mL). For detection of RBD in human saliva, the recovery was 93.0-100% for the fluorescence assay and 87.2-107% for the colorimetric assay. By combining fluorescence and colorimetric detection with RCA, detection of the target RBD in human saliva was achieved with high sensitivity and selectivity.

摘要

利用滚环扩增(RCA)和两种不同的信号读取方式,我们开发了分析方法来检测 SARS-CoV-2 刺突蛋白(S 蛋白)的受体结合域(RBD)。我们通过带有生物素标记的互补 DNA 链(biotin-cDNA)将适体修饰到链霉亲和素包被的磁珠上。RBD 的结合导致适体从 biotin-cDNA 上解离,从而使 cDNA 可在磁珠上启动 RCA。通过双信号输出检测 RBD。对于荧光信号,将 RCA 产物与标记有荧光团和猝灭剂的双链 DNA 探针混合。RCA 产物的杂交导致双链 DNA 分离并发出荧光(λ=488nm,λ=520nm)。为了产生易于检测的紫外-可见吸收信号,将 RCA 扩增扩展为产生 DNA 花以包裹辣根过氧化物酶(HRP)。包裹 HRP 的 DNA 花催化 HO 和 3,3',5,5'-四甲基联苯胺(TMB)之间的比色反应,生成光学信号(λ=450nm)。用于 RBD 的荧光和比色测定具有较低的检测限(0.11pg mL 和 0.904pg mL)和较宽的线性范围(0.001-100ng mL)。用于检测人唾液中的 RBD,荧光测定的回收率为 93.0-100%,比色测定的回收率为 87.2-107%。通过将荧光和比色检测与 RCA 相结合,实现了人唾液中目标 RBD 的高灵敏度和选择性检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0796/10060335/45d0efa85547/604_2023_5747_Sch1_HTML.jpg

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