4.7 Article

Label-free and ultrasensitive electrochemiluminescence detection of microRNA based on long-range self-assembled DNA nanostructures

期刊

MICROCHIMICA ACTA
卷 181, 期 7-8, 页码 731-736

出版社

SPRINGER WIEN
DOI: 10.1007/s00604-013-1113-5

关键词

Electrochemiluminescence; Nanomaterials; DNA concatamers; MicroRNA

资金

  1. National Basic Research Program of China [2010CB732403]
  2. National Natural Science Foundation of China [21125524, 21105012]
  3. Program For New Century Excellent Talents in University of China [09-0014]
  4. National Science Foundation of Fujian Province [2010 J06003]

向作者/读者索取更多资源

Electrochemiluminescence (ECL) integrates the advantages of electrochemical detection and chemiluminescent techniques. The method has received particular attention because it is highly sensitive and selective, has a wide linear range but low reagent costs. The use of nanomaterials with their unique physical and chemical properties has led to new kinds of biosensors that exhibit high sensitivity and stability. Compared to other nanomaterials, DNA nanostructures are more biocompatible, more hydrophilic, and thus less prone to nonspecific adsorption onto the electrode surface. We describe here a label-free and ultrasensitive ECL biosensor for detecting a cancer-associated microRNA at a femtomolar level. We have designed two auxiliary probes that cause the formation of a long-range self-assembly in the form of a mu m-long 1-dimensional DNA concatamer. These can be used as carriers for signal amplification. The intercalation of the ECL probe Ru(phen)(3) (2+) into the grooves of the concatamers leads to a substantial increase in ECL intensity. This amplified sensor shows high selectivity for discriminating complementary target and other mismatched RNAs. The biosensor enables the quantification of the expression of microRNA-21 in MCF-7 cells. It also displays very low limits of detection and provides an alternative approach for the detection of RNA or DNA detection in diagnostics and gene analysis.

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