Issue 17, 2012

Aptamer-based silver nanosensor for multiple protein detection

Abstract

In the present work we design a novel aptamer-based silver nanosensor for one-spot simultaneously detection of multiple proteins. SS-DNA modified AgNPs were immobilized on the aldehyde coated glass slide to form an AgNP array. Then dye-labeled aptamer sequences were allowed to hybridize with their complementary strands assembled on the surface of AgNPs. The target proteins were introduced to associate with the corresponding aptamers to form the aptamer–target complexes. The removal of the aptamer–target complexes resulted in a remarkable decrease in fluorescent signals. This nanosensor is found to be highly sensitive for the detection of proteins. When thrombin was employed as a sample model, the limit of detection of the optimized nanosenor was 0.4 fmol with a linear response of 0.8 fmol to 0.5 pmol. We further demonstrated the multiple protein detection of IgE and thrombin using multicolor silver nanoprobes, which shows effective recognition of the relative protein individually or simultaneously. This silver nanosensor offers a unique heterogeneous approach for protein detection with several advantages, such as high sensitivity, rapidity, high throughput, and miniaturization.

Graphical abstract: Aptamer-based silver nanosensor for multiple protein detection

Article information

Article type
Paper
Submitted
03 Apr 2012
Accepted
22 May 2012
First published
24 May 2012

Lab Chip, 2012,12, 3184-3189

Aptamer-based silver nanosensor for multiple protein detection

Y. Wang, D. Xu and H. Chen, Lab Chip, 2012, 12, 3184 DOI: 10.1039/C2LC40322F

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