4.1 Article

Low-Volume Label-Free Detection of Molecule-Protein Interactions on Microarrays by Imaging Reflectometric Interferometry

Journal

SLAS TECHNOLOGY
Volume 22, Issue 4, Pages 437-446

Publisher

SAGE PUBLICATIONS INC
DOI: 10.1177/2211068216657512

Keywords

high-throughput protein analysis; imaging label-free detection; reflectometric interferometry; microfluidic biosensor

Funding

  1. German Ministerium fur Wissenschaft, Forschung und Kunst Baden-Wurttemberg within project Ideenwettbewerb Biotechnologie und Medizintechnik [PTJ 33-720.830-6-52]
  2. German BMBF within e:bio project ReelinSys [FKZ 0316174]
  3. European Union within the FP7 innovation funding project CE microarray [606618]

Ask authors/readers for more resources

This system allows the high-throughput protein interaction analysis on microarrays. We apply the interference technology 1-imaging reflectometric interferometry (iRIf) as a label-free detection method and create microfluidic flow cells in microscope slide format for low reagent consumption and lab work compatibility. By now, most prominent for imaging label-free interaction analyses on microarrays are imaging surface plasmon resonance (SPR) methods, quartz crystal microbalance, or biolayer interferometry. SPR is sensitive against temperature drifts and suffers from plasmon crosstalk, and all systems lack array size (maximum 96 spots). Our detection system is robust against temperature drifts. Microarrays are analyzed with a spatial resolution of 7 mu m and time resolution of 50 fps. System sensitivity is competitive, with random noise of <5 x 10(-5) and baseline drift of <3 x 10(-6). Currently available spotting technologies limit array sizes to similar to 4 spots/mm(2) (1080 spots/array); our detection system would allow similar to 40 spots/mm(2) (10,800 spots/array). The microfluidic flow cells consist of structured PDMS inlays sealed by versatilely coated glass slides immobilizing the microarray. The injection protocol determines reagent volumes, priming rates, and flow cell temperatures for up to 44 reagents; volumes of 300 mu L are validated. The system is validated physically by the biotinylated bovine serum albumin streptavidin assay and biochemically by thrombin aptamer interaction analysis, resulting in a KD of similar to 100 nM.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.1
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available