A DNAzyme-mediated logic gate for programming molecular capture and release on DNA origami
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Title
A DNAzyme-mediated logic gate for programming molecular capture and release on DNA origami
Authors
Keywords
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Journal
CHEMICAL COMMUNICATIONS
Volume 52, Issue 54, Pages 8369-8372
Publisher
Royal Society of Chemistry (RSC)
Online
2016-05-16
DOI
10.1039/c6cc02989b
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Related references
Note: Only part of the references are listed.- Bridging the Two Worlds: A Universal Interface between Enzymatic and DNA Computing Systems
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- Enzyme-Free Unlabeled DNA Logic Circuits Based on Toehold-Mediated Strand Displacement and Split G-Quadruplex Enhanced Fluorescence
- (2013) Jinbo Zhu et al. ADVANCED MATERIALS
- Label-Free Colorimetric Aptasensor Based on Nicking Enzyme Assisted Signal Amplification and DNAzyme Amplification for Highly Sensitive Detection of Protein
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- A Logic-Gated Nanorobot for Targeted Transport of Molecular Payloads
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- Turning the 10-23 DNAzyme On and Off with Light
- (2010) Julia L. Richards et al. CHEMBIOCHEM
- Loading and selective release of cargo in DNA nanotubes with longitudinal variation
- (2010) Pik Kwan Lo et al. Nature Chemistry
- Single-molecule chemical reactions on DNA origami
- (2010) Niels V. Voigt et al. Nature Nanotechnology
- pH-Stimulated Concurrent Mechanical Activation of Two DNA “Tweezers”. A “SET−RESET” Logic Gate System
- (2009) Johann Elbaz et al. NANO LETTERS
- Interactions between Redox Complexes and Semiconductor Quantum Dots Coupled via a Peptide Bridge
- (2008) Igor L. Medintz et al. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
- Programming biomolecular self-assembly pathways
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- Capture and Release of Protein by a Reversible DNA-Induced Sol–Gel Transition System
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