4.8 Article

Programmable and Multiparameter DNA-Based Logic Platform For Cancer Recognition and Targeted Therapy

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 137, Issue 2, Pages 667-674

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ja509263k

Keywords

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Funding

  1. National Key Scientific Program of China [2011CB911000]
  2. NSFC [NSFC 21221003, NSFC 21327009]
  3. China National Instrumentation Program [2011YQ03012412]
  4. National Institutes of Health [GM079359, CA133086]

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The specific inventory of molecules on diseased cell surfaces (e.g., cancer cells) provides clinicians an opportunity for accurate diagnosis and intervention. With the discovery of panels of cancer markers, carrying out analyses of multiple cell-surface markers is conceivable. As a trial to accomplish this, we have recently designed a DNA-based device that is capable of performing autonomous logic-based analysis of two or three cancer cell-surface markers. Combining the specific target-recognition properties of DNA aptamers with toehold-mediated strand displacement reactions, multicellular marker-based cancer analysis can be realized based on modular AND, OR, and NOT Boolean logic gates. Specifically, we report here a general approach for assembling these modular logic gates to execute programmable and higher-order profiling of multiple coexisting cell-surface markers, including several found on cancer cells, with the capacity to report a diagnostic signal and/or deliver targeted photodynamic therapy. The success of this strategy demonstrates the potential of DNA nanotechnology in facilitating targeted disease diagnosis and effective therapy.

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