The Molecular Mechanism of the TEAD1 Gene and miR-410-5p Affect Embryonic Skeletal Muscle Development: A miRNA-Mediated ceRNA Network Analysis
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Hu, W.; Wang, X.; Bi, Y.; Bao, J.; Shang, M.; Zhang, L. The Molecular Mechanism of the TEAD1 Gene and miR-410-5p Affect Embryonic Skeletal Muscle Development: A miRNA-Mediated ceRNA Network Analysis. Cells 2023, 12, 943. https://doi.org/10.3390/cells12060943
Hu W, Wang X, Bi Y, Bao J, Shang M, Zhang L. The Molecular Mechanism of the TEAD1 Gene and miR-410-5p Affect Embryonic Skeletal Muscle Development: A miRNA-Mediated ceRNA Network Analysis. Cells. 2023; 12(6):943. https://doi.org/10.3390/cells12060943
Chicago/Turabian StyleHu, Wenping, Xinyue Wang, Yazhen Bi, Jingjing Bao, Mingyu Shang, and Li Zhang. 2023. "The Molecular Mechanism of the TEAD1 Gene and miR-410-5p Affect Embryonic Skeletal Muscle Development: A miRNA-Mediated ceRNA Network Analysis" Cells 12, no. 6: 943. https://doi.org/10.3390/cells12060943
APA StyleHu, W., Wang, X., Bi, Y., Bao, J., Shang, M., & Zhang, L. (2023). The Molecular Mechanism of the TEAD1 Gene and miR-410-5p Affect Embryonic Skeletal Muscle Development: A miRNA-Mediated ceRNA Network Analysis. Cells, 12(6), 943. https://doi.org/10.3390/cells12060943

