Gómez-Ruiz, S.; GarcÃa-Peñas, A.; Prashar, S.; RodrÃguez-Diéguez, A.; Fischer-Fodor, E.
Anticancer Applications of Nanostructured Silica-Based Materials Functionalized with Titanocene Derivatives: Induction of Cell Death Mechanism through TNFR1 Modulation. Materials 2018, 11, 224.
https://doi.org/10.3390/ma11020224
AMA Style
Gómez-Ruiz S, GarcÃa-Peñas A, Prashar S, RodrÃguez-Diéguez A, Fischer-Fodor E.
Anticancer Applications of Nanostructured Silica-Based Materials Functionalized with Titanocene Derivatives: Induction of Cell Death Mechanism through TNFR1 Modulation. Materials. 2018; 11(2):224.
https://doi.org/10.3390/ma11020224
Chicago/Turabian Style
Gómez-Ruiz, Santiago, Alberto GarcÃa-Peñas, Sanjiv Prashar, Antonio RodrÃguez-Diéguez, and Eva Fischer-Fodor.
2018. "Anticancer Applications of Nanostructured Silica-Based Materials Functionalized with Titanocene Derivatives: Induction of Cell Death Mechanism through TNFR1 Modulation" Materials 11, no. 2: 224.
https://doi.org/10.3390/ma11020224
APA Style
Gómez-Ruiz, S., GarcÃa-Peñas, A., Prashar, S., RodrÃguez-Diéguez, A., & Fischer-Fodor, E.
(2018). Anticancer Applications of Nanostructured Silica-Based Materials Functionalized with Titanocene Derivatives: Induction of Cell Death Mechanism through TNFR1 Modulation. Materials, 11(2), 224.
https://doi.org/10.3390/ma11020224