León, C.; GarcÃa-GarcÃa, F.; Llames, S.; GarcÃa-Pérez, E.; Carretero, M.; Arriba, M.d.C.; Dopazo, J.; del RÃo, M.; Escámez, M.J.; MartÃnez-SantamarÃa, L.
Transcriptomic Analysis of a Diabetic Skin-Humanized Mouse Model Dissects Molecular Pathways Underlying the Delayed Wound Healing Response. Genes 2021, 12, 47.
https://doi.org/10.3390/genes12010047
AMA Style
León C, GarcÃa-GarcÃa F, Llames S, GarcÃa-Pérez E, Carretero M, Arriba MdC, Dopazo J, del RÃo M, Escámez MJ, MartÃnez-SantamarÃa L.
Transcriptomic Analysis of a Diabetic Skin-Humanized Mouse Model Dissects Molecular Pathways Underlying the Delayed Wound Healing Response. Genes. 2021; 12(1):47.
https://doi.org/10.3390/genes12010047
Chicago/Turabian Style
León, Carlos, Francisco GarcÃa-GarcÃa, Sara Llames, Eva GarcÃa-Pérez, Marta Carretero, MarÃa del Carmen Arriba, JoaquÃn Dopazo, Marcela del RÃo, MarÃa José Escámez, and LucÃa MartÃnez-SantamarÃa.
2021. "Transcriptomic Analysis of a Diabetic Skin-Humanized Mouse Model Dissects Molecular Pathways Underlying the Delayed Wound Healing Response" Genes 12, no. 1: 47.
https://doi.org/10.3390/genes12010047
APA Style
León, C., GarcÃa-GarcÃa, F., Llames, S., GarcÃa-Pérez, E., Carretero, M., Arriba, M. d. C., Dopazo, J., del RÃo, M., Escámez, M. J., & MartÃnez-SantamarÃa, L.
(2021). Transcriptomic Analysis of a Diabetic Skin-Humanized Mouse Model Dissects Molecular Pathways Underlying the Delayed Wound Healing Response. Genes, 12(1), 47.
https://doi.org/10.3390/genes12010047