He, B.; Zeng, Q.; Tian, Y.; Luo, Y.; Liao, M.; Huang, W.; Wu, B.; Luo, Z.; Huang, X.; Liu, W.;
et al. PGC1-Alpha/Sirt3 Signaling Pathway Mediates the Anti-Pulmonary Fibrosis Effect of Hirudin by Inhibiting Fibroblast Senescence. Biomedicines 2024, 12, 1436.
https://doi.org/10.3390/biomedicines12071436
AMA Style
He B, Zeng Q, Tian Y, Luo Y, Liao M, Huang W, Wu B, Luo Z, Huang X, Liu W,
et al. PGC1-Alpha/Sirt3 Signaling Pathway Mediates the Anti-Pulmonary Fibrosis Effect of Hirudin by Inhibiting Fibroblast Senescence. Biomedicines. 2024; 12(7):1436.
https://doi.org/10.3390/biomedicines12071436
Chicago/Turabian Style
He, Bin, Qian Zeng, Yumei Tian, Yuyang Luo, Minlin Liao, Wenjie Huang, Bin Wu, Ziqiang Luo, Xiaoting Huang, Wei Liu,
and et al. 2024. "PGC1-Alpha/Sirt3 Signaling Pathway Mediates the Anti-Pulmonary Fibrosis Effect of Hirudin by Inhibiting Fibroblast Senescence" Biomedicines 12, no. 7: 1436.
https://doi.org/10.3390/biomedicines12071436
APA Style
He, B., Zeng, Q., Tian, Y., Luo, Y., Liao, M., Huang, W., Wu, B., Luo, Z., Huang, X., Liu, W., & Tang, S.
(2024). PGC1-Alpha/Sirt3 Signaling Pathway Mediates the Anti-Pulmonary Fibrosis Effect of Hirudin by Inhibiting Fibroblast Senescence. Biomedicines, 12(7), 1436.
https://doi.org/10.3390/biomedicines12071436