作者
Maria Moros, Bruno Hernaez, Elina Garet, Jorge T Dias, Berta Saez, Valeria Grazu, Africa Gonzalez-Fernandez, Covadonga Alonso, Jesus M de la Fuente
发表日期
2012/2/28
期刊
ACS nano
卷号
6
期号
2
页码范围
1565-1577
出版商
American Chemical Society
简介
Magnetic nanoparticles (NPs) hold great promise for biomedical applications. The core composition and small size of these particles produce superparamagnetic behavior, thus facilitating their use in magnetic resonance imaging and magnetically induced therapeutic hyperthermia. However, the development and control of safe in vivo applications for NPs call for the study of cell–NP interactions and cell viability. Furthermore, as for most biotechnological applications, it is desirable to prevent unspecific cell internalization of these particles. It is also crucial to understand how the surface composition of the NPs affects their internalization capacity. Here, through accurate control over unspecific protein adsorption, size distribution, grafting density, and an extensive physicochemical characterization, we correlated the cytotoxicity and cellular uptake mechanism of 6 nm magnetic NPs coated with several types and various …
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