Vergaro, V.; Pisano, I.; Grisorio, R.; Baldassarre, F.; Mallamaci, R.; Santoro, A.; Suranna, G.P.; Papadia, P.; Fanizzi, F.P.; Ciccarella, G.
CaCO3 as an Environmentally Friendly Renewable Material for Drug Delivery Systems: Uptake of HSA-CaCO3 Nanocrystals Conjugates in Cancer Cell Lines. Materials 2019, 12, 1481.
https://doi.org/10.3390/ma12091481
AMA Style
Vergaro V, Pisano I, Grisorio R, Baldassarre F, Mallamaci R, Santoro A, Suranna GP, Papadia P, Fanizzi FP, Ciccarella G.
CaCO3 as an Environmentally Friendly Renewable Material for Drug Delivery Systems: Uptake of HSA-CaCO3 Nanocrystals Conjugates in Cancer Cell Lines. Materials. 2019; 12(9):1481.
https://doi.org/10.3390/ma12091481
Chicago/Turabian Style
Vergaro, Viviana, Isabella Pisano, Roberto Grisorio, Francesca Baldassarre, Rosanna Mallamaci, Antonella Santoro, Gian Paolo Suranna, Paride Papadia, Francesco Paolo Fanizzi, and Giuseppe Ciccarella.
2019. "CaCO3 as an Environmentally Friendly Renewable Material for Drug Delivery Systems: Uptake of HSA-CaCO3 Nanocrystals Conjugates in Cancer Cell Lines" Materials 12, no. 9: 1481.
https://doi.org/10.3390/ma12091481
APA Style
Vergaro, V., Pisano, I., Grisorio, R., Baldassarre, F., Mallamaci, R., Santoro, A., Suranna, G. P., Papadia, P., Fanizzi, F. P., & Ciccarella, G.
(2019). CaCO3 as an Environmentally Friendly Renewable Material for Drug Delivery Systems: Uptake of HSA-CaCO3 Nanocrystals Conjugates in Cancer Cell Lines. Materials, 12(9), 1481.
https://doi.org/10.3390/ma12091481