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DNA origami: Nanorobots grab cellular control
Johann Elbaz
*
, Itamar Willner
*
Corresponding author for this work
Hebrew University of Jerusalem
Research output
:
Contribution to journal
›
Short survey
›
peer-review
30
Scopus citations
Overview
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Keyphrases
Leukemia Cells
100%
Nanorobots
100%
Clam
100%
Aptamer
100%
Grab
100%
Logic Operation
100%
Cellular Control
100%
DNA Origami
100%
DNA Duplex
100%
Nanomedicine
50%
Reconfiguration
50%
Tissue Culture
50%
Cell Growth
50%
Cell Surface
50%
High Sensitivity
50%
Nucleic Acids
50%
Cancer Cells
50%
Growth Arrest
50%
Nanostructures
50%
High Specificity
50%
Clasp
50%
Intracellular Activity
50%
DNA Nanostructures
50%
Surface Cues
50%
Cell Markers
50%
Medicine and Dentistry
Leukemia Cell
100%
Nanomaterial
100%
Double Stranded DNA
100%
Aptamer
100%
Cancer Cell
50%
Cell Growth
50%
Cell Marker
50%
Cell Surface
50%
Growth Disorder
50%
Sensitivity and Specificity
50%
Target Cell
50%
Nucleic Acid
50%
Nanomedicine
50%
Pharmacology, Toxicology and Pharmaceutical Science
Leukemia
100%
Double Stranded DNA
100%
Clam
100%
Aptamer
100%
Nanomaterial
100%
Nanomedicine
50%
Malignant Neoplasm
50%
Cell Marker
50%
Nucleic Acid
50%
Growth Disorder
50%
Material Science
Nanostructure
100%
Nucleic Acid
50%
Cell Growth
50%
Nanomedicine
50%