B. AKKAYA Et Al. , "Magnetic chitosan oligomer-sulfonate-stearic acid triple combination as cisplatin carrier for site-specific targeted on MCF-7 cancer cells: Preparation, characterization and in vitro experiments," Chemical Biology and Drug Design , vol.102, no.4, pp.692-706, 2023
AKKAYA, B. Et Al. 2023. Magnetic chitosan oligomer-sulfonate-stearic acid triple combination as cisplatin carrier for site-specific targeted on MCF-7 cancer cells: Preparation, characterization and in vitro experiments. Chemical Biology and Drug Design , vol.102, no.4 , 692-706.
AKKAYA, B., AKKAYA, R., & Nazlim, A., (2023). Magnetic chitosan oligomer-sulfonate-stearic acid triple combination as cisplatin carrier for site-specific targeted on MCF-7 cancer cells: Preparation, characterization and in vitro experiments. Chemical Biology and Drug Design , vol.102, no.4, 692-706.
AKKAYA, BİRNUR, RECEP AKKAYA, And Arife Nazlim. "Magnetic chitosan oligomer-sulfonate-stearic acid triple combination as cisplatin carrier for site-specific targeted on MCF-7 cancer cells: Preparation, characterization and in vitro experiments," Chemical Biology and Drug Design , vol.102, no.4, 692-706, 2023
AKKAYA, BİRNUR Et Al. "Magnetic chitosan oligomer-sulfonate-stearic acid triple combination as cisplatin carrier for site-specific targeted on MCF-7 cancer cells: Preparation, characterization and in vitro experiments." Chemical Biology and Drug Design , vol.102, no.4, pp.692-706, 2023
AKKAYA, B. AKKAYA, R. And Nazlim, A. (2023) . "Magnetic chitosan oligomer-sulfonate-stearic acid triple combination as cisplatin carrier for site-specific targeted on MCF-7 cancer cells: Preparation, characterization and in vitro experiments." Chemical Biology and Drug Design , vol.102, no.4, pp.692-706.
@article{article, author={BİRNUR AKKAYA Et Al. }, title={Magnetic chitosan oligomer-sulfonate-stearic acid triple combination as cisplatin carrier for site-specific targeted on MCF-7 cancer cells: Preparation, characterization and in vitro experiments}, journal={Chemical Biology and Drug Design}, year=2023, pages={692-706} }