K. Rouzi Et Al. , "Novel isoniazid-hydrazone derivatives induce cell growth inhibition, cell cycle arrest and apoptosis via mitochondria-dependent caspase activation and PI3K/AKT inhibition," Bioorganic Chemistry , vol.150, 2024
Rouzi, K. Et Al. 2024. Novel isoniazid-hydrazone derivatives induce cell growth inhibition, cell cycle arrest and apoptosis via mitochondria-dependent caspase activation and PI3K/AKT inhibition. Bioorganic Chemistry , vol.150 .
Rouzi, K., ALTAY, A., Bouatia, M., Yeniçeri, E., Islam, M. S., Oulmidi, A., ... El Karbane, M.(2024). Novel isoniazid-hydrazone derivatives induce cell growth inhibition, cell cycle arrest and apoptosis via mitochondria-dependent caspase activation and PI3K/AKT inhibition. Bioorganic Chemistry , vol.150.
Rouzi, Khouloud Et Al. "Novel isoniazid-hydrazone derivatives induce cell growth inhibition, cell cycle arrest and apoptosis via mitochondria-dependent caspase activation and PI3K/AKT inhibition," Bioorganic Chemistry , vol.150, 2024
Rouzi, Khouloud Et Al. "Novel isoniazid-hydrazone derivatives induce cell growth inhibition, cell cycle arrest and apoptosis via mitochondria-dependent caspase activation and PI3K/AKT inhibition." Bioorganic Chemistry , vol.150, 2024
Rouzi, K. Et Al. (2024) . "Novel isoniazid-hydrazone derivatives induce cell growth inhibition, cell cycle arrest and apoptosis via mitochondria-dependent caspase activation and PI3K/AKT inhibition." Bioorganic Chemistry , vol.150.
@article{article, author={Khouloud Rouzi Et Al. }, title={Novel isoniazid-hydrazone derivatives induce cell growth inhibition, cell cycle arrest and apoptosis via mitochondria-dependent caspase activation and PI3K/AKT inhibition}, journal={Bioorganic Chemistry}, year=2024}