Li, Y.; Xu, W.; Wang, X.; Lai, R.; Qiu, X.; Zeng, Z.; Wang, Z.; Wang, J.
Molecular Dynamics and In Vitro Studies Elucidating the Tunable Features of Reconfigurable Nanodiscs for Guiding the Optimal Design of Curcumin Formulation. Bioengineering 2024, 11, 245.
https://doi.org/10.3390/bioengineering11030245
AMA Style
Li Y, Xu W, Wang X, Lai R, Qiu X, Zeng Z, Wang Z, Wang J.
Molecular Dynamics and In Vitro Studies Elucidating the Tunable Features of Reconfigurable Nanodiscs for Guiding the Optimal Design of Curcumin Formulation. Bioengineering. 2024; 11(3):245.
https://doi.org/10.3390/bioengineering11030245
Chicago/Turabian Style
Li, Yongxiao, Wanting Xu, Xinpei Wang, Ruizhi Lai, Xiaohui Qiu, Zekai Zeng, Zhe Wang, and Junqing Wang.
2024. "Molecular Dynamics and In Vitro Studies Elucidating the Tunable Features of Reconfigurable Nanodiscs for Guiding the Optimal Design of Curcumin Formulation" Bioengineering 11, no. 3: 245.
https://doi.org/10.3390/bioengineering11030245
APA Style
Li, Y., Xu, W., Wang, X., Lai, R., Qiu, X., Zeng, Z., Wang, Z., & Wang, J.
(2024). Molecular Dynamics and In Vitro Studies Elucidating the Tunable Features of Reconfigurable Nanodiscs for Guiding the Optimal Design of Curcumin Formulation. Bioengineering, 11(3), 245.
https://doi.org/10.3390/bioengineering11030245