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MyoD Over-Expression Rescues GST-bFGF Repressed Myogenesis
Shu Hsin Fan
, Ning Li
, Kai Fan Huang
, Yun Ting Chang
, Chuan Che Wu
,
Shen Liang Chen
Department of Life Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Scopus citations
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Dive into the research topics of 'MyoD Over-Expression Rescues GST-bFGF Repressed Myogenesis'. Together they form a unique fingerprint.
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Keyphrases
Overexpression
100%
MyoD
100%
Myogenesis
100%
Basic Fibroblast Growth Factor (bFGF)
100%
Muscle Stem Cell (MuSC)
37%
Stemness
25%
Proliferation Effect
18%
Cell Proliferation
12%
C2C12
12%
C2C12 Myoblasts
12%
Myogenic
12%
Post-translational Modification
12%
Pax3
12%
Commercially Available
6%
Escherichia Coli
6%
Cyclin D1 (CCND1)
6%
Cell Differentiation
6%
Myogenic Differentiation
6%
Satellite Cells
6%
Embryogenesis
6%
Eukaryotes
6%
Neural Tube
6%
Myf5
6%
Myotome
6%
Somite
6%
Myogenic Cells
6%
Skeletal muscle
6%
Skeletal muscle Cells
6%
Promoting Effect
6%
Adult Skeletal muscle
6%
Biochemistry, Genetics and Molecular Biology
Myogenesis
100%
MyoD
100%
Basic Fibroblast Growth Factor
100%
C2C12
25%
Skeletal Muscle
12%
Cell Proliferation
12%
Posttranslational Modification
12%
Escherichia coli
6%
Stem Cell
6%
Cyclin D1
6%
Embryogenesis
6%
Eukaryote
6%
Downregulation
6%
Cellular Differentiation
6%
Neural Tube
6%
Somite
6%