Aleem, M.T.; Wen, Z.; Yu, Z.; Chen, C.; Lu, M.; Xu, L.; Song, X.; Li, X.; Yan, R.
Inhibition of Trichinella spiralis Membrane-Associated Progesterone Receptor (MAPR) Results in a Reduction in Worm Burden. Vaccines 2023, 11, 1437.
https://doi.org/10.3390/vaccines11091437
AMA Style
Aleem MT, Wen Z, Yu Z, Chen C, Lu M, Xu L, Song X, Li X, Yan R.
Inhibition of Trichinella spiralis Membrane-Associated Progesterone Receptor (MAPR) Results in a Reduction in Worm Burden. Vaccines. 2023; 11(9):1437.
https://doi.org/10.3390/vaccines11091437
Chicago/Turabian Style
Aleem, Muhammad Tahir, Zhaohai Wen, Zhengqing Yu, Cheng Chen, Mingmin Lu, Lixin Xu, Xiaokai Song, Xiangrui Li, and Ruofeng Yan.
2023. "Inhibition of Trichinella spiralis Membrane-Associated Progesterone Receptor (MAPR) Results in a Reduction in Worm Burden" Vaccines 11, no. 9: 1437.
https://doi.org/10.3390/vaccines11091437
APA Style
Aleem, M. T., Wen, Z., Yu, Z., Chen, C., Lu, M., Xu, L., Song, X., Li, X., & Yan, R.
(2023). Inhibition of Trichinella spiralis Membrane-Associated Progesterone Receptor (MAPR) Results in a Reduction in Worm Burden. Vaccines, 11(9), 1437.
https://doi.org/10.3390/vaccines11091437