K. Küçükoğlu Et Al. , "Cytotoxicities of novel hydrazone compounds with pyrrolidinemoiety: inhibition of mitochondrial respiration may be a possible mechanism of action for the cytotoxicity of new hydrazones," Medicinal Chemistry Research , vol.27, pp.2116-2124, 2018
Küçükoğlu, K. Et Al. 2018. Cytotoxicities of novel hydrazone compounds with pyrrolidinemoiety: inhibition of mitochondrial respiration may be a possible mechanism of action for the cytotoxicity of new hydrazones. Medicinal Chemistry Research , vol.27 , 2116-2124.
Küçükoğlu, K., Gül, H. İ., Gül, M., Çetin Atalay, R., & Geny, B., (2018). Cytotoxicities of novel hydrazone compounds with pyrrolidinemoiety: inhibition of mitochondrial respiration may be a possible mechanism of action for the cytotoxicity of new hydrazones. Medicinal Chemistry Research , vol.27, 2116-2124.
Küçükoğlu, Kaan Et Al. "Cytotoxicities of novel hydrazone compounds with pyrrolidinemoiety: inhibition of mitochondrial respiration may be a possible mechanism of action for the cytotoxicity of new hydrazones," Medicinal Chemistry Research , vol.27, 2116-2124, 2018
Küçükoğlu, Kaan Et Al. "Cytotoxicities of novel hydrazone compounds with pyrrolidinemoiety: inhibition of mitochondrial respiration may be a possible mechanism of action for the cytotoxicity of new hydrazones." Medicinal Chemistry Research , vol.27, pp.2116-2124, 2018
Küçükoğlu, K. Et Al. (2018) . "Cytotoxicities of novel hydrazone compounds with pyrrolidinemoiety: inhibition of mitochondrial respiration may be a possible mechanism of action for the cytotoxicity of new hydrazones." Medicinal Chemistry Research , vol.27, pp.2116-2124.
@article{article, author={Kaan Küçükoğlu Et Al. }, title={Cytotoxicities of novel hydrazone compounds with pyrrolidinemoiety: inhibition of mitochondrial respiration may be a possible mechanism of action for the cytotoxicity of new hydrazones}, journal={Medicinal Chemistry Research}, year=2018, pages={2116-2124} }