4.8 Article

A label-free and enzyme-free platform with a visible output for constructing versatile logic gates using caged G-quadruplex as the signal transducer

期刊

CHEMICAL SCIENCE
卷 9, 期 2, 页码 300-306

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c7sc04007e

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资金

  1. NSFC [21407029]
  2. Guangdong Natural Science Funds for distinguished Young Scholars [2016A030306012]
  3. Special Support Program for Young Talented Scholars of Guangdong Province [2015TQ01Z092]
  4. GDAS' Special Project of Science and Technology Development [2017GDASCX-0405]
  5. Science and Technology Program of Guangzhou [201508020010]
  6. Science and Technology Program of Guangdong Province [2016B070701015]
  7. SPICC Program [2016GDASPT-0105]

向作者/读者索取更多资源

A complete set of binary basic logic gates (OR, AND, NOR, NAND, INHIBT, IMPLICATION, XOR and XNOR) is realized on a label-free and enzyme-free sensing platform using caged G-quadruplex as the signal transducer. In the presence of an appropriate input, the temporarily blocked G-rich sequence in the hairpin DNA is released through cleavage by the synergetically-stabilized Mg2+-dependent DNAzyme which can be made to function via the input-guided cooperative conjunction of the DNAzyme subunits. In the presence of hemin, the unblocked G-quadruplex DNAzyme catalyzes the oxidation of 3,3',5,5'-tetramethylbenzidine (TMB) by H2O2 to generate a colored readout signal which can be readily distinguished by the naked eye. This strategy is quite versatile and straightforward for logic operations. Two combinatorial gates (XOR + AND and XOR + NOR) are also successfully fabricated to demonstrate the modularity and scalability of the computing elements. The distinctive advantage of this logic system is that molecular events in aqueous solution could be translated into a color change which can be directly observed by the naked eye without resorting to any analytical instrumentation. Moreover, this work reveals a new route for the design of molecular logic gates that can be executed without any labeling and immobilization procedure or separation and washing step, which holds great promise for intelligent point-of-care diagnostics and in-field applications.

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