Li, Q.; Liu, X.; Liu, W.; Zhang, Y.; Liu, W.; Wu, M.; Chen, Z.; Zhao, Y.; Zou, L.
Placenta-Targeted Nanoparticles Loaded with PFKFB3 Overexpression Plasmids Enhance Angiogenesis and Placental Function. Bioengineering 2022, 9, 652.
https://doi.org/10.3390/bioengineering9110652
AMA Style
Li Q, Liu X, Liu W, Zhang Y, Liu W, Wu M, Chen Z, Zhao Y, Zou L.
Placenta-Targeted Nanoparticles Loaded with PFKFB3 Overexpression Plasmids Enhance Angiogenesis and Placental Function. Bioengineering. 2022; 9(11):652.
https://doi.org/10.3390/bioengineering9110652
Chicago/Turabian Style
Li, Qi, Xiaoxia Liu, Weifang Liu, Yang Zhang, Wen Liu, Mengying Wu, Zhirui Chen, Yin Zhao, and Li Zou.
2022. "Placenta-Targeted Nanoparticles Loaded with PFKFB3 Overexpression Plasmids Enhance Angiogenesis and Placental Function" Bioengineering 9, no. 11: 652.
https://doi.org/10.3390/bioengineering9110652
APA Style
Li, Q., Liu, X., Liu, W., Zhang, Y., Liu, W., Wu, M., Chen, Z., Zhao, Y., & Zou, L.
(2022). Placenta-Targeted Nanoparticles Loaded with PFKFB3 Overexpression Plasmids Enhance Angiogenesis and Placental Function. Bioengineering, 9(11), 652.
https://doi.org/10.3390/bioengineering9110652