Luo, L.; Zhang, W.; Chen, W.; Fu, X.; Wang, X.; Xu, R.; Hu, D.
Based on a Self-Feeder Layer, a Novel 3D Culture Model of Human ADSCs Facilitates Trans-Differentiation of the Spheroid Cells into Neural Progenitor-Like Cells Using siEID3 with a Laminin/Poly-d-lysine Matrix. Cells 2021, 10, 493.
https://doi.org/10.3390/cells10030493
AMA Style
Luo L, Zhang W, Chen W, Fu X, Wang X, Xu R, Hu D.
Based on a Self-Feeder Layer, a Novel 3D Culture Model of Human ADSCs Facilitates Trans-Differentiation of the Spheroid Cells into Neural Progenitor-Like Cells Using siEID3 with a Laminin/Poly-d-lysine Matrix. Cells. 2021; 10(3):493.
https://doi.org/10.3390/cells10030493
Chicago/Turabian Style
Luo, Liang, Wei Zhang, Wenjin Chen, Xiaojun Fu, Xujie Wang, Ruxiang Xu, and Dahai Hu.
2021. "Based on a Self-Feeder Layer, a Novel 3D Culture Model of Human ADSCs Facilitates Trans-Differentiation of the Spheroid Cells into Neural Progenitor-Like Cells Using siEID3 with a Laminin/Poly-d-lysine Matrix" Cells 10, no. 3: 493.
https://doi.org/10.3390/cells10030493
APA Style
Luo, L., Zhang, W., Chen, W., Fu, X., Wang, X., Xu, R., & Hu, D.
(2021). Based on a Self-Feeder Layer, a Novel 3D Culture Model of Human ADSCs Facilitates Trans-Differentiation of the Spheroid Cells into Neural Progenitor-Like Cells Using siEID3 with a Laminin/Poly-d-lysine Matrix. Cells, 10(3), 493.
https://doi.org/10.3390/cells10030493