Atıf Formatları
Exploring the antifungal potential of Cannabis sativa-derived stilbenoids and cannabinoids against novel targets through in silico protein interaction profiling
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

K. K. KIRBOĞA Et Al. , "Exploring the antifungal potential of Cannabis sativa-derived stilbenoids and cannabinoids against novel targets through in silico protein interaction profiling," Frontiers in Chemistry , vol.12, 2024

KIRBOĞA, K. K. Et Al. 2024. Exploring the antifungal potential of Cannabis sativa-derived stilbenoids and cannabinoids against novel targets through in silico protein interaction profiling. Frontiers in Chemistry , vol.12 .

KIRBOĞA, K. K., Karim, A., KÜÇÜKSİLLE, E. U., Rudrapal, M., Khan, J., Achar, R. R., ... Silina, E.(2024). Exploring the antifungal potential of Cannabis sativa-derived stilbenoids and cannabinoids against novel targets through in silico protein interaction profiling. Frontiers in Chemistry , vol.12.

KIRBOĞA, KEVSER Et Al. "Exploring the antifungal potential of Cannabis sativa-derived stilbenoids and cannabinoids against novel targets through in silico protein interaction profiling," Frontiers in Chemistry , vol.12, 2024

KIRBOĞA, KEVSER K. Et Al. "Exploring the antifungal potential of Cannabis sativa-derived stilbenoids and cannabinoids against novel targets through in silico protein interaction profiling." Frontiers in Chemistry , vol.12, 2024

KIRBOĞA, K. K. Et Al. (2024) . "Exploring the antifungal potential of Cannabis sativa-derived stilbenoids and cannabinoids against novel targets through in silico protein interaction profiling." Frontiers in Chemistry , vol.12.

@article{article, author={KEVSER KÜBRA KIRBOĞA Et Al. }, title={Exploring the antifungal potential of Cannabis sativa-derived stilbenoids and cannabinoids against novel targets through in silico protein interaction profiling}, journal={Frontiers in Chemistry}, year=2024}