Multiplex Serum Cytokine Immunoassay Using Nanoplasmonic Biosensor Microarrays

被引:264
作者
Chen, Pengyu [1 ]
Chung, Meng Ting [1 ]
McHugh, Walker [2 ]
Nidetz, Robert [1 ]
Li, Yuwei [1 ]
Fu, Jianping [1 ,3 ]
Cornell, Timothy T. [2 ]
Shanley, Thomas P. [2 ]
Kurabayashi, Katsuo [1 ,4 ]
机构
[1] Univ Michigan, Dept Mech Engn, Ann Arbor, MI 48109 USA
[2] Univ Michigan, Dept Pediat & Communicable Dis, Ann Arbor, MI 48109 USA
[3] Univ Michigan, Dept Biomed Engn, Ann Arbor, MI 48109 USA
[4] Univ Michigan, Dept Elect Engn & Comp Sci, Ann Arbor, MI 48109 USA
基金
美国国家科学基金会;
关键词
localized surface plasmon resonance (LSPR); nanoplasmonic sensing; optofluidics; multiplexed immunoassay; serum cytokines; SURFACE-PLASMON RESONANCE; CARDIOPULMONARY BYPASS; TNF-ALPHA; DISEASE; MARKERS; SEPSIS; CANCER; IL-6; CELL;
D O I
10.1021/acsnano.5b00396
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Precise monitoring of the rapidly changing immune status during the course of a disease requires multiplex analysis of cytokines from frequently sampled human blood. However, the current lack of rapid, multiplex, and low volume assays makes immune monitoring for clinical decision-making (e.g., critically ill patients) impractical. Without such assays, immune monitoring is even virtually impossible for infants and neonates with infectious diseases and/or immune mediated disorders as access to their blood in large quantities is prohibited. Localized surface plasmon resonance (LSPR)-based microfluidic optical biosensing is a promising to fill this technical gap as it could potentially permit real-time refractometric detection of biomolecular binding on a metallic nanoparticle surface and sensor miniaturization, both leading to rapid and sample-sparing analyte analysis. Despite this promise, practical implementation of such a microfluidic assay for cytokine biomarker detection in serum samples has not been established primarily due to the limited sensitivity of LSPR biosensing. Here, we developed a high-throughput, label-free, multiarrayed OR optical biosensor device with 480 nanoplasmonic sensing spots in microfluidic channel arrays and demonstrated parallel multiplex immunoassays of six cytokines in a complex serum matrix on a single device chip while overcoming technical limitations. The device was fabricated using easy-to-implement, one-step microfluidic patterning and antibody conjugation of gold nanorods (AuNRs). When scanning the scattering light intensity across the microarrays of AuNR ensembles with dark-field imaging optics, our LSPR biosensing technique allowed for high-sensitivity quantitative cytokine measurements at concentrations down to 5-20 pg/mL from a 1 mu L serum sample. Using the nanoplasmonic biosensor microarray device, we demonstrated the ability to monitor the inflammatory responses of infants following cardiopulmonary bypass (CPB) surgery through tracking the time-course variations of their serum cytokines. The whole parallel on-chip assays, which involved the loading, incubation, and washing of samples and reagents, and 10-fold replicated multianalyte detection for each sample using the entire biosensor arrays, were completed within 40 min.
引用
收藏
页码:4173 / 4181
页数:9
相关论文
共 37 条
[1]   LSPR Chip for Parallel, Rapid, and Sensitive Detection of Cancer Markers in Serum [J].
Acimovic, Srdjan S. ;
Ortega, Maria A. ;
Sanz, Vanesa ;
Berthelot, Johann ;
Garcia-Cordero, Jose L. ;
Renger, Jan ;
Maerkl, Sebastian J. ;
Kreuzer, Mark P. ;
Quidant, Romain .
NANO LETTERS, 2014, 14 (05) :2636-2641
[2]   Tight Glycemic Control versus Standard Care after Pediatric Cardiac Surgery [J].
Agus, Michael S. D. ;
Steil, Garry M. ;
Wypij, David ;
Costello, John M. ;
Laussen, Peter C. ;
Langer, Monica ;
Alexander, Jamin L. ;
Scoppettuolo, Lisa A. ;
Pigula, Frank A. ;
Charpie, John R. ;
Ohye, Richard G. ;
Gaies, Michael G. .
NEW ENGLAND JOURNAL OF MEDICINE, 2012, 367 (13) :1208-1219
[3]   Plasmonic Nanosensors for Simultaneous Quantification of Multiple Protein-Protein Binding Affinities [J].
Ahijado-Guzman, Ruben ;
Prasad, Janak ;
Rosman, Christina ;
Henkel, Andreas ;
Tome, Lydia ;
Schneider, Dirk ;
Rivas, German ;
Soennichsen, Carsten .
NANO LETTERS, 2014, 14 (10) :5528-5532
[4]   Single Unlabeled Protein Detection on Individual Plasmonic Nanoparticles [J].
Ament, Irene ;
Prasad, Janak ;
Henkel, Andreas ;
Schmachtel, Sebastian ;
Soennichsen, Carsten .
NANO LETTERS, 2012, 12 (02) :1092-1095
[5]   Biosensing with plasmonic nanosensors [J].
Anker, Jeffrey N. ;
Hall, W. Paige ;
Lyandres, Olga ;
Shah, Nilam C. ;
Zhao, Jing ;
Van Duyne, Richard P. .
NATURE MATERIALS, 2008, 7 (06) :442-453
[6]  
[Anonymous], 2001, BIOAN METH VAL GUID
[7]   Effects of cardiopulmonary bypass on neonatal and paediatric inflammatory profiles [J].
Ashraf, SS ;
Tian, Y ;
Zacharrias, S ;
Cowan, D ;
Martin, P ;
Watterson, K .
EUROPEAN JOURNAL OF CARDIO-THORACIC SURGERY, 1997, 12 (06) :862-868
[8]   Quantitative Real-Time Imaging of Protein-Protein Interactions by LSPR Detection with Micropatterned Gold Nanoparticles [J].
Bhagawati, Maniraj ;
You, Changjiang ;
Piehler, Jacob .
ANALYTICAL CHEMISTRY, 2013, 85 (20) :9564-9571
[9]   Cytokine profiles as markers of disease severity in sepsis: a multiplex analysis [J].
Bozza, Fernando A. ;
Salluh, Jorge I. ;
Japiassu, Andre M. ;
Soares, Marcio ;
Assis, Edson F. ;
Gomes, Rachel N. ;
Bozza, Marcelo T. ;
Castro-Faria-Neto, Hugo C. ;
Bozza, Patricia T. .
CRITICAL CARE, 2007, 11 (02)
[10]   Plasmonics for future biosensors [J].
Brolo, Alexandre G. .
NATURE PHOTONICS, 2012, 6 (11) :709-713