Meng, J.; Zheng, G.; Luo, Y.; Ge, L.; Liu, Z.; Huang, W.; Jin, M.; Kong, Y.; Xu, S.; Jin, Z.;
et al. Single-Cell Transcriptomics Unveils the Mechanistic Role of FOSL1 in Cutaneous Wound Healing. Biomedicines 2025, 13, 1330.
https://doi.org/10.3390/biomedicines13061330
AMA Style
Meng J, Zheng G, Luo Y, Ge L, Liu Z, Huang W, Jin M, Kong Y, Xu S, Jin Z,
et al. Single-Cell Transcriptomics Unveils the Mechanistic Role of FOSL1 in Cutaneous Wound Healing. Biomedicines. 2025; 13(6):1330.
https://doi.org/10.3390/biomedicines13061330
Chicago/Turabian Style
Meng, Jingbi, Ge Zheng, Yinli Luo, Ling Ge, Zhiqing Liu, Wenhua Huang, Meitong Jin, Yanli Kong, Shanhua Xu, Zhehu Jin,
and et al. 2025. "Single-Cell Transcriptomics Unveils the Mechanistic Role of FOSL1 in Cutaneous Wound Healing" Biomedicines 13, no. 6: 1330.
https://doi.org/10.3390/biomedicines13061330
APA Style
Meng, J., Zheng, G., Luo, Y., Ge, L., Liu, Z., Huang, W., Jin, M., Kong, Y., Xu, S., Jin, Z., & Pi, L.
(2025). Single-Cell Transcriptomics Unveils the Mechanistic Role of FOSL1 in Cutaneous Wound Healing. Biomedicines, 13(6), 1330.
https://doi.org/10.3390/biomedicines13061330