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Improved transfer efficiency of supercharged 36 + GFP protein mediate nucleic acid delivery
Lidan Wang
, Jingping Geng
, Linlin Chen
, Xiangli Guo
, Tao Wang
, Yanfen Fang
, Bonn Belingon
, Jiao Wu
, Manman Li
, Ying Zhan
, Wendou Shang
, Yingying Wan
, Xuemei Feng
, Xianghui Li
,
Hu Wang
Research output
:
Contribution to journal
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Article
›
peer-review
Overview
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Keyphrases
Transfer Efficiency
100%
DOT1L
100%
Nucleic Acid Delivery
100%
Dimethyl Sulfoxide
66%
Incubation
33%
Clinical Setting
33%
Plasmid DNA (pDNA)
33%
Fusion Protein
33%
Delivery System
33%
Subcellular Location
33%
Location of Interest
33%
Cargo Delivery
33%
Nucleic Acid Therapeutics
33%
Delivery Efficiency
33%
Biomacromolecules
33%
Penetration Enhancer
33%
Plasmid DNA Delivery
33%
Major Challenges
33%
Biochemistry, Genetics and Molecular Biology
Plasmid
100%
Dimethyl Sulfoxide
100%
Nucleic Acid Delivery
100%
Gene Targeting
50%
Macromolecule
50%
Transfection
50%
Enhancer Region
50%
Target Cell
50%
Nucleic Acid
50%
Chimeric Protein
50%
Neuroscience
Nucleic Acid
100%
Plasmid DNA
100%
Dimethyl Sulfoxide
100%
Gene Delivery
50%
Transfection
50%
Enhancer Region
50%
Chimeric Protein
50%