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A Metal Chelator as a Plasmonic Signal‐Generation Superregulator for Ultrasensitive Colorimetric Bioassays of Disease Biomarkers

机译:一种金属螯合剂作为疾病生物标记物超灵敏比色生物测定的等离子信号生成超级调节剂。

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摘要

Enzyme‐based assays have been widely applied in clinical diagnosis for decades. However, the intrinsic limitations of enzymes, such as low operation stability, mediocre sensitivity, and high cost in production and purification, heavily constrain their detection application. Here, an enzyme‐free assay is reported that relies on the strong chelating capability of ethylenediamine tetraacetic acid disodium salt (EDTA•2Na, the chelator) for Au3+ ions, in which the cheap EDTA•2Na labeled by targeting moieties can selectively regulate the growth of plasmonic gold nanoparticles (AuNPs) at the target site subjecting to the concentration of analyte in samples. Independent of ambient temperature and unstable H2O2, EDTA•2Na perform superregulation in AuNPs plasmonic signal generation with distinct tonality and outstanding reliability. Upon integrating with silica nanoparticles as the signal amplifying platform, EDTA•2Na‐regulated bioassay can lead to detection‐sensitivity enhancements exceeding three orders of magnitude in protein detection, compared with the gold‐standard assay. The limit of detection of the HBsAg and alpha fetoprotein (AFP) pushes down to 2.6 × 10−15 and 2.5 × 10−19 g mL−1, respectively. EDTA•2Na‐regulated bioassay is also challenged in the clinical serum sample detection and a good consistency is found with the chemiluminescence immunoassay method in clinics.
机译:数十年来,基于酶的分析已广泛应用于临床诊断。然而,酶的固有局限性,例如低的操作稳定性,中等的灵敏度以及生产​​和纯化的高成本,严重限制了它们的检测应用。在此,据报道无酶测定依赖乙二胺四乙酸二钠盐(EDTA•2Na,螯合剂)对Au 3 + 离子的强螯合能力,其中便宜的EDTA•2Na通过靶向部分标记的多肽可以选择性调节靶点上等离激子金纳米颗粒(AuNPs)的生长,这取决于样品中分析物的浓度。 EDTA•2Na与环境温度和不稳定的H2O2无关,在AuNPs等离子体信号生成中执行超调节,具有明显的音调和出色的可靠性。与金纳米标准检测方法相结合,将二氧化硅纳米颗粒作为信号放大平台整合后,EDTA•2Na调节的生物检测方法可以使蛋白质检测的检测灵敏度提高超过三个数量级。 HBsAg和甲胎蛋白(AFP)的检出限降至2.6×10 −15 和2.5×10 −19 g mL −1 。 EDTA•2Na调节的生物测定法在临床血清样品检测中也面临挑战,并且在临床上通过化学发光免疫测定法发现了良好的一致性。

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