败血症
生物传感器
注意事项
重症监护医学
纳米技术
医学
材料科学
检测点注意事项
内科学
病理
作者
Jouha Min,Maria Nothing,Ben Coble,Hui Zheng,Jongmin Park,Hyungsoon Im,Georg F. Weber,Cesar M. Castro,Filip K. Świrski,Ralph Weissleder,Hakho Lee
出处
期刊:ACS Nano
[American Chemical Society]
日期:2018-03-13
卷期号:12 (4): 3378-3384
被引量:134
标识
DOI:10.1021/acsnano.7b08965
摘要
Sepsis is an often fatal condition that arises when the immune response to an infection causes widespread systemic organ injury. A critical unmet need in combating sepsis is the lack of accurate early biomarkers that produce actionable results in busy clinical settings. Here, we report the development of a point-of-care platform for rapid sepsis detection. Termed IBS (integrated biosensor for sepsis), our approach leverages (i) the pathophysiological role of cytokine interleukin-3 (IL-3) in early sepsis and (ii) a hybrid magneto-electrochemical sensor for IL-3 detection. The developed platform produces test results within 1 h from native blood samples and detects IL-3 at a sensitivity of <10 pg/mL; this performance is >5-times faster and >10-times more sensitive than conventional enzyme-linked immunoadsorbent assays, the current gold standard. Using clinical samples, we show that elevated plasma IL-3 levels are associated with high organ failure rate and thus greater risk of mortality, confirming the potential of IL-3 as a sepsis diagnostic biomarker. With further system development (e.g., full automation, data security measures) and rigorous validation studies, the compact and fast IBS could be a practical clinical tool for timely diagnosis and proactive treatment of sepsis.
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