An analytical comparison of three immunoassay platforms for subpicomolar detection of protein biomarker GAD65

被引:13
作者
Costa, Olivier R. [1 ,2 ]
Verhaeghen, Katrijn [1 ]
Roels, Sarah [2 ]
Starige, Geert [2 ]
Ling, Zhidong [2 ]
Pipeleers, Daniel [2 ]
Gorus, Frans K. [1 ,2 ]
Martens, Geert A. [2 ,3 ]
机构
[1] UZ Brussel, Dept Clin Biol, Brussels, Belgium
[2] Brussels Free Univ VUB, Ctr Beta Cell Therapy Diabet, Brussels, Belgium
[3] AZ Delta, Dept Lab Med, Roeselare, Belgium
关键词
BETA-CELL DEATH; GLUTAMIC-ACID DECARBOXYLASE; ASSAY; DNA;
D O I
10.1371/journal.pone.0193670
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
A disproportional increase of circulating GAD65 within hours from an intraportal islet allotransplantation has been validated as biomarker of beta cell loss and poor functional outcome. More sensitive assays are, however, needed to allow detection of episodes of subtle beta cell loss during late-stage graft rejection or in the peri-onset period of type 1 diabetes. We applied the same sandwich monoclonal antibody couple reactive towards the Cand N-terminus of GAD65 on three advanced immunoassay platforms-the Cytometric Bead Array (CBA, Becton, Dickinson and Company), ElectroChemiLuminescence Immuno Assay (ECLIA, Meso Scale Discovery) and digital ELISA technology (Single Molecule Array -SIMOA, Quanterix. We then compared analytical performance (linearity, imprecision, limit of detection and functional sensitivity), correlation of results, and practicality. All evaluated techniques showed linearity up to at least 500 ng/dL (76.9 pmol/L). SIMOA achieved the lowest imprecision. The 3 platforms correlate well with each other and could all detect subpi-comolar concentrations of GAD65 in plasma, but only SIMOA and CBA could quantify down to that range. SIMOA can achieve the highest sample throughput. The three methods tested allow sensitive detection of GAD65, but SIMOA appears best suited for automated quantification of subpicomolar concentrations.
引用
收藏
页数:10
相关论文
共 21 条
[1]   Detection of β cell death in diabetes using differentially methylated circulating DNA [J].
Akirav, Eitan M. ;
Lebastchi, Jasmin ;
Galvan, Eva M. ;
Henegariu, Octavian ;
Akirav, Michael ;
Ablamunits, Vitaly ;
Lizardi, Paul M. ;
Herold, Kevan C. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2011, 108 (47) :19018-19023
[2]  
Armbruster David A, 2008, Clin Biochem Rev, V29 Suppl 1, pS49
[3]  
CLSI, 2003, EV LIN QUANT MEAS PR
[4]  
CLSI, 2004, EV PREC PERF QUANT M
[5]  
CLSI, 2012, EV DET CAP CLIN LAB
[6]   Development of an Enhanced Sensitivity Bead-Based Immunoassay for Real-Time In Vivo Detection of Pancreatic β-Cell Death [J].
Costa, Olivier R. ;
Stange, Geert ;
Verhaeghen, Katrijn ;
Brackeva, Benedicte ;
Nonneman, Ellen ;
Hampe, Christiane S. ;
Ling, Zhidong ;
Pipeleers, Daniel ;
Gorus, Frans K. ;
Martens, Geert A. .
ENDOCRINOLOGY, 2015, 156 (12) :4755-4760
[7]   Multiplex measurement of proinflammatory cytokines in human serum: Comparison of the Meso Scale Discovery electrochemiluminescence assay and the Cytometric Bead Array [J].
Dabitao, Djeneba ;
Margolick, Joseph B. ;
Lopez, Joseph ;
Bream, Jay H. .
JOURNAL OF IMMUNOLOGICAL METHODS, 2011, 372 (1-2) :71-77
[8]   Circulating miR-375 as a Biomarker of β-Cell Death and Diabetes in Mice [J].
Erener, Suheda ;
Mojibian, Majid ;
Fox, Jessica K. ;
Denroche, Heather C. ;
Kieffer, Timothy J. .
ENDOCRINOLOGY, 2013, 154 (02) :603-608
[9]   Protein detection using proximity-dependent DNA ligation assays [J].
Fredriksson, S ;
Gullberg, M ;
Jarvius, J ;
Olsson, C ;
Pietras, K ;
Gústafsdóttir, SM ;
Östman, A ;
Landegren, U .
NATURE BIOTECHNOLOGY, 2002, 20 (05) :473-477
[10]   MONOCLONAL-ANTIBODIES TO GLUTAMIC-ACID DECARBOXYLASE [J].
GOTTLIEB, DI ;
CHANG, YC ;
SCHWOB, JE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1986, 83 (22) :8808-8812