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背景(考古学)
医学
C反应蛋白
败血症
免疫分析
分析物
内科学
免疫学
色谱法
生物
病理
化学
抗体
炎症
古生物学
作者
Xiangkun Elvis Cao,Serge Y. Ongagna-Yhombi,Rui-Sheng Wang,Yue Ren,Balaji Srinivasan,Joshua Hayden,Zhen Zhao,David Erickson,Saurabh Mehta
出处
期刊:EBioMedicine
[Elsevier]
日期:2022-02-01
卷期号:76: 103867-103867
被引量:12
标识
DOI:10.1016/j.ebiom.2022.103867
摘要
Early and accurate determination of bacterial infections as a potential cause for a patient's systemic inflammatory response is required for timely administration of appropriate treatment and antibiotic stewardship. Procalcitonin (PCT) and C-reactive protein (CRP) have both been used as biomarkers to infer bacterial infections, particularly in the context of sepsis. There is an urgent need to develop a platform for simultaneous quantification of PCT and CRP, to enable the potential use of these biomarkers at the point-of-care.A multiplexed lateral flow assay (LFA) and a fluorescence optical reader were developed. Assay performance was validated by testing spiked antigens in the buffer, followed by a validation study comparing results with conventional assays (Roche Cobas e411 Elecsys PCT and Siemens ADVIA XPT CRP) in 25 archived remnant human serum samples.A linear regression correlation of 0·97 (P < 0·01) was observed for PCT, and a correlation of 0·95 (P < 0·01) was observed for CRP using direct patient samples. We also validated our platform's ability to accurately quantify high-dose CRP in the hook effect range where excess unlabeled analytes occupy binding sites at test lines.A fluorescence reader-based duplex LFA for simultaneous quantification of PCT and CRP was developed and successfully validated with clinical samples. The rapid, portable, and low-cost nature of the platform offers potential for differentiation of bacterial and viral infections in emergency and low-resource settings at the point-of-care.NIH/NIBIB Award 1R01EB021331, and Academic Venture Fund from the Atkinson Center for a Sustainable Future at Cornell University.
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