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Differential interactions of chiral nanocapsules with DNA
Amani Zoabi,
Katherine Margulis
*
*
Corresponding author for this work
School of Pharmacy
Research output
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Contribution to journal
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Article
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peer-review
5
Scopus citations
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Keyphrases
Nanocapsules
100%
Differential Interactions
100%
Polyurea
66%
Supramolecular Interactions
66%
Lysine
33%
Gene Therapy
33%
Biocompatibility
33%
Electrostatic Interaction
33%
Hollow
33%
Stereospecific
33%
Biodegradability
33%
Chirality
33%
Surface Charge
33%
DNA Concentration
33%
Volatile Oil
33%
Surface Modification
33%
Nanoscopic
33%
Absolute Value
33%
High-rise
33%
Capsule Size
33%
Surface Potential
33%
Solvent-free
33%
Equilibration
33%
DNA Oligonucleotides
33%
Polymeric Nanocapsules
33%
Interaction with DNA
33%
Surface Morphology
33%
Theranostics
33%
Neutral Surface
33%
Polyurea Shell
33%
Oil-in-water Nanoemulsion
33%
Preferential Binding
33%
Polyaddition
33%
Free DNA
33%
Toluene Diisocyanate
33%
Negative zeta Potential
33%
Chiroptical Activity
33%
Nanocaps
33%
SsODN
33%
Material Science
Electrostatic Interaction
100%
Chirality
100%
Surface Charge
100%
Surface Morphology
100%
Enantiomer
100%
Addition Polymerization
100%
Gene Therapy
100%
Surface (Surface Science)
100%
Chemistry
Deoxyribonucleic Acid
100%
Nanocapsule
100%
Electrostatic Interaction
16%
Chirality
16%
Essential Oil
16%
Surface Potential
16%
Oligonucleotide
16%
Zeta Potential
16%
Nanoemulsion
16%
Biodegradability
16%
Single-Stranded DNA Oligonucleotide
16%
Toluene 2,4-diisocyanate
16%
Addition Polymerization
16%
Lysine
16%
Enantiomer
16%
Pharmacology, Toxicology and Pharmaceutical Science
Nanocapsule
100%
Oligonucleotide
50%
Zeta Potential
25%
Essential Oil
25%
Lysine
25%
Nanoemulsion
25%
Single Stranded DNA
25%
Food Science
Essential Oil
100%
Lysine
100%
Chemical Engineering
Nanocapsule
100%
Zeta Potential
25%
Nanoemulsion
25%
Addition Polymerization
25%