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Effect of lanthanide complex structure on cell viability and association
Katie L. Peterson
, Jonathan V. Dang
, Evan A. Weitz
, Cutler Lewandowski
, Valérie C. Pierre
Chemistry (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
20
Scopus citations
Overview
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Keyphrases
Amino Acid Derivatives
33%
Amino Acids-based
33%
Aminopolycarboxylates
33%
Antenna
100%
Benzyl
33%
Cell Association
100%
Cell Viability
100%
Cell-to-cell
33%
Cellular Association
66%
Complex Structure
100%
Core Structure
33%
Dota 2
66%
ED50
33%
Facile Synthesis
33%
Fluorescence Microscopy
33%
High Cell Viability
66%
High Quantum Yield
33%
Hydrophilic Amino Acid
66%
Hydrophilic Behavior
33%
Hydrophobic Moiety
33%
Hydrophobicity
66%
Inductively Coupled Plasma Mass Spectrometry
33%
Lanthanide Complexes
100%
Lipophilicity
33%
Luminescent Probe
66%
Pendant Arm
33%
Probe-based
33%
Reduced Cell
33%
Terbium
33%
Chemistry
Amino Acid
20%
Amino Acid Derivative
20%
Cell Viability
100%
DOTA
60%
Fluorescence Microscopy
20%
Hydrophobicity
40%
Inductively Coupled Plasma Method
20%
Lanthanoid Atom
100%
Lipophilicity
20%
Luminiscence Type
40%
Quantum Yield
20%
Terbium
20%
Material Science
Amino Acid
66%
Antenna
100%
Fluorescence Microscopy
33%
Hydrophobicity
66%
Lanthanide Series
100%
Terbium
33%
Chemical Engineering
Amino Acid
100%
Metal Complex
50%
Rare Earth Element
100%
Terbium
50%