Cattier, B.; Guignard, R.; Martel, I.; Martel, C.; Simard-Bisson, C.; Larouche, D.; Guiraud, B.; Bessou-Touya, S.; Germain, L.
Bulge-Derived Epithelial Cells Isolated from Human Hair Follicles Using Enzymatic Digestion or Explants Result in Comparable Tissue-Engineered Skin. Int. J. Mol. Sci. 2025, 26, 1852.
https://doi.org/10.3390/ijms26051852
AMA Style
Cattier B, Guignard R, Martel I, Martel C, Simard-Bisson C, Larouche D, Guiraud B, Bessou-Touya S, Germain L.
Bulge-Derived Epithelial Cells Isolated from Human Hair Follicles Using Enzymatic Digestion or Explants Result in Comparable Tissue-Engineered Skin. International Journal of Molecular Sciences. 2025; 26(5):1852.
https://doi.org/10.3390/ijms26051852
Chicago/Turabian Style
Cattier, Bettina, Rina Guignard, Israël Martel, Christian Martel, Carolyne Simard-Bisson, Danielle Larouche, Béatrice Guiraud, Sandrine Bessou-Touya, and Lucie Germain.
2025. "Bulge-Derived Epithelial Cells Isolated from Human Hair Follicles Using Enzymatic Digestion or Explants Result in Comparable Tissue-Engineered Skin" International Journal of Molecular Sciences 26, no. 5: 1852.
https://doi.org/10.3390/ijms26051852
APA Style
Cattier, B., Guignard, R., Martel, I., Martel, C., Simard-Bisson, C., Larouche, D., Guiraud, B., Bessou-Touya, S., & Germain, L.
(2025). Bulge-Derived Epithelial Cells Isolated from Human Hair Follicles Using Enzymatic Digestion or Explants Result in Comparable Tissue-Engineered Skin. International Journal of Molecular Sciences, 26(5), 1852.
https://doi.org/10.3390/ijms26051852