Logic gates and antisense DNA devices operating on a translator nucleic Acid scaffold.
about
Artificial Molecular MachinesDNA-based visual majority logic gate with one-vote veto function."One ring to bind them all"-part I: the efficiency of the macrocyclic scaffold for g-quadruplex DNA recognition.Shaping up nucleic acid computation.Applications of synchrotron-based spectroscopic techniques in studying nucleic acids and nucleic acid-functionalized nanomaterialsLabel-free, dual-analyte electrochemical biosensors: a new class of molecular-electronic logic gatesVersatile G-quadruplex-mediated strategies in label-free biosensors and logic systems.Materials learning from life: concepts for active, adaptive and autonomous molecular systems.An enzyme-free and resettable platform for the construction of advanced molecular logic devices based on magnetic beads and DNA.A general approach to the design of allosteric, transcription factor-regulated DNAzymes.DNA electronic logic gates based on metal-ion-dependent induction of oligonucleotide structural motifs.G-quadruplexes as tools for synthetic biology.Construction of DNA logic gates utilizing a H+/Ag+ induced i-motif structure.A reversible fluorescent logic gate for sensing mercury and iodide ions based on a molecular beacon.Integration of graphene oxide and DNA as a universal platform for multiple arithmetic logic units.DNA Triplexes-Guided Assembly of G-Quadruplexes for Constructing Label-free Fluorescent Logic Gates.Controlling G-quadruplex formation via lipid modification of oligonucleotide sequences.A new ditopic ratiometric receptor for detecting zinc and fluoride ions in living cells.Toehold-mediated DNA logic gates based on host-guest DNA-GNPs.Integration of DNA and graphene oxide for the construction of various advanced logic circuits.Using thermally regenerable cerium oxide nanoparticles in biocomputing to perform label-free, resettable, and colorimetric logic operations.Colorimetric logic gates for small molecules using split/integrated aptamers and unmodified gold nanoparticles.Sequential logic operations with surface-confined polypyridyl complexes displaying molecular random access memory features.Simple and universal platform for logic gate operations based on molecular beacon probes.An enzyme-free and DNA-based Feynman gate for logically reversible operation.Harnessing nature's insights: synthetic small molecules with peroxidase-mimicking DNAzyme properties.Reconfigurable and resettable arithmetic logic units based on magnetic beads and DNA.
P2860
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P2860
Logic gates and antisense DNA devices operating on a translator nucleic Acid scaffold.
description
2009 nî lūn-bûn
@nan
2009年の論文
@ja
2009年学术文章
@wuu
2009年学术文章
@zh-cn
2009年学术文章
@zh-hans
2009年学术文章
@zh-my
2009年学术文章
@zh-sg
2009年學術文章
@yue
2009年學術文章
@zh
2009年學術文章
@zh-hant
name
Logic gates and antisense DNA devices operating on a translator nucleic Acid scaffold.
@en
Logic gates and antisense DNA devices operating on a translator nucleic Acid scaffold.
@nl
type
label
Logic gates and antisense DNA devices operating on a translator nucleic Acid scaffold.
@en
Logic gates and antisense DNA devices operating on a translator nucleic Acid scaffold.
@nl
prefLabel
Logic gates and antisense DNA devices operating on a translator nucleic Acid scaffold.
@en
Logic gates and antisense DNA devices operating on a translator nucleic Acid scaffold.
@nl
P2093
P356
P1433
P1476
Logic gates and antisense DNA devices operating on a translator nucleic Acid scaffold.
@en
P2093
Bella Shlyahovsky
Itamar Willner
Johann Elbaz
Oleg Lioubashevski
P304
P356
10.1021/NN900085X
P407
P577
2009-06-09T00:00:00Z