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An RNAi-based approach to down-regulate a gene family in vivo
Jeehee Kim
, Aurora Badaloni
, Torsten Willert
, Ursula Zimber-Strobl
, Ralf Kühn
,
Wolfgang Wurst
, Matthias Kieslinger
Helmholtz Zentrum München German Research Center for Environmental Health
Istituto Scientifico San Raffaele
Research output
:
Contribution to journal
›
Article
›
peer-review
2
Scopus citations
Overview
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Keyphrases
Gene Family
100%
RNA Interference
100%
Knockdown
40%
Cultured Cells
40%
MicroRNA-155 (miR-155)
40%
Genetic Redundancy
40%
Protein Level
20%
MRNA Level
20%
Hetero
20%
B Cells
20%
Transgenic Mice
20%
Hematopoietic Cells
20%
Genomic Deletion
20%
Cellular Factors
20%
Transgenic Animals
20%
MicroRNA
20%
Normal Function
20%
Gene Function
20%
Genetic Approach
20%
B Cell Development
20%
Inducible Expression
20%
Rosa26 Locus
20%
CAG Promoter
20%
Neuronal Expression
20%
Polycistronic
20%
RNAi Machinery
20%
Neuroscience
In Vivo
100%
Multigene Family
100%
Transgene
100%
B Cell
66%
MicroRNA
33%
Promoter Region
33%
Cell Maturation
33%
Gene Function
33%
Gene Deletion
33%
Hematopoietic Cell
33%
Messenger RNA
33%
RNAI
33%
Biochemistry, Genetics and Molecular Biology
RNA Interference
100%
Multigene Family
100%
Transgene
60%
Genetic Redundancy
40%
B Cell
40%
Wild Type
20%
MicroRNA
20%
CAG Promoter
20%
Transgenic Animal
20%
Genetic Approach
20%
Transgenic Mouse
20%
Cell Maturation
20%
Gene Function
20%
down Regulation
20%
Gene Deletion
20%
Messenger RNA
20%
RNAI
20%
Hematopoietic Cell
20%