Coagulation-Inspired Direct Fibrinogen Assay Using Plasmonic Nanoparticles Functionalized with Red Blood Cell Membranes

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초록

The fast measurement of fibrinogen is essential in evaluating life-threatening sepsis and cardiovascular diseases. Here, we aim to utilize biomimetic plasmonic Au nanoparticles using red blood cell membranes (RBCM-AuNPs) and demonstrate nanoscale coagulation-inspired fibrinogen detection via cross-linking between RBCM-AuNPs. The proposed biomimetic RBCM-AuNPs are highly suitable for fibrinogen detection because hemagglutination, occurring in the presence of fibrinogen, induces a shift in the localized surface plasmon resonance of the NPs. Specifically, when the two ends of the fibrinogen protein are bound to receptors on separate RBCM-AuNPs, cross-linking of the RBCM-AuNPs occurs, yielding a corresponding plasmon shift within 10 min. This coagulation-inspired fibrinogen detection method, with a low sample volume, high selectivity, and high speed, could facilitate the diagnosis of sepsis and cardiovascular diseases. © 2021 American Chemical Society.

키워드

cardiovascular diseasecoagulation-inspiredintegrin αIIbβ3localized surface plasmon resonancered blood cell membraneATOMIC-FORCE MICROSCOPYCARDIOVASCULAR-DISEASESRISKINFLAMMATIONADSORPTIONMORTALITY
제목
Coagulation-Inspired Direct Fibrinogen Assay Using Plasmonic Nanoparticles Functionalized with Red Blood Cell Membranes
저자
Kim, I.Lee, D.Lee, S.W.Lee, J.H.Lee, G.Yoon, D.S.
DOI
10.1021/acsnano.0c08136
발행일
2021-04-27
유형
Article
저널명
ACS Nano
15
4
페이지
6386 ~ 6394