31.07.2013 Views

Comportement des nanoparticules de silice en milieu biologique ...

Comportement des nanoparticules de silice en milieu biologique ...

Comportement des nanoparticules de silice en milieu biologique ...

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

tel-00836093, version 1 - 20 Jun 2013<br />

Bibliographie<br />

Barnes C.A., Elsaesser A., Arkusz J., Smok A., Palus J., Lesniak A., Salvati A., Hanrahan<br />

J.P., <strong>de</strong> Jong W.H., Dziubaltowska E., Stepnik M., Rydzynski K., McKerr G., Lynch I.,<br />

Dawson K.A., Howard C.V., 2008, Reproducible Comet assay of amorphous silica<br />

nanoparticles <strong>de</strong>tects no g<strong>en</strong>otoxicity, Nano Letters, 8, 3069-3074<br />

Bauhuber S., Hozsa C., Breunig M., Goepferich A., 2009, Delivery of Nucleic Acids via<br />

Disulfi<strong>de</strong>-Based Carrier Systems, Adv. Mater., 21, 1-21<br />

Bell E., Ivarsson B., Merrill C., 1979, Production of a tissue-like structure by contraction of<br />

collag<strong>en</strong> lattices by human fibroblasts of differ<strong>en</strong>t proliferative pot<strong>en</strong>tial in vitro, PNAS,<br />

76, 1274-1278<br />

Bogush G.H., Tracy M.A., Zukoski I.V., 1988, Preparation of monodisperse silica particles :<br />

control of size and mass fraction, J. Non-Cryst. Solids, 104, 95-106<br />

Boissiere M., Meadows P.J., Brayner R., Hélary C., Livage J., Coradin T., 2006, Turning<br />

biopolymer particles into hybrid capsules: the example of silica/alginate nanocomposites,<br />

J. Mater. Chem., 16, 1178-1182<br />

Borm P., Klaessig F.C., Landry T.D., Moudgil B., Pauluhn J., Thomas K., Trottier R., Wood<br />

S., 2006, Research strategies for safety evaluation of nanomaterials, Part V: Role of<br />

dissolution in biological fate and effects of nanoscale particles, Toxicol. Sci., 90, 23-32<br />

Burns A., Ow H., Wiesner U., 2006, Fluoresc<strong>en</strong>t core-shell silica nanoparticles: towards<br />

"Lab on a Particle" architectures for nanobiotechnology, Chem. Soc. Rev., 35, 1028-1042<br />

Cauda V., Argyo C., Bein T., 2010, Impact of differ<strong>en</strong>t PEGylation patterns on the long-term<br />

bio-stability of colloidal mesoporous silica nanoparticles, J. Mater. Chem., 20, 8693-8699<br />

Cauda V., Schlossbauer A., Bein T., 2010, Bio-<strong>de</strong>gradation study of colloidal mesoporous<br />

silica nanoparticles: Effect of surface functionalization with organo-silanes and<br />

poly(ethyl<strong>en</strong>e glycol), Microporous and Mesoporous Mater., 132, 60-71<br />

Chang J-S., Chang K.L.B., Hwang D-F., Kong Z-L., 2007, In vitro cytotoxicitiy of silica<br />

nanoparticles at high conc<strong>en</strong>trations strongly <strong>de</strong>p<strong>en</strong>ds on the metabolic activity type of the<br />

cell line, Environ Sci Technol, 41, 2064-2068<br />

Ch<strong>en</strong> M., van Mikecz A., 2005, Formation of nucleoplasmic protein aggregates impairs<br />

nuclear function in response to SiO2 nanoparticles, Experim<strong>en</strong>tal Cell Res., 305, 51-62<br />

Ch<strong>en</strong> J-F., Ding H-M., Wang J-X., Shao L., 2004, Preparation and characterization of<br />

porous hollow silica nanoparticles for drug <strong>de</strong>livery application, Biomaterials, 25, 723-<br />

727<br />

Ch<strong>en</strong>g S-H., Lee C-H., Ch<strong>en</strong> M-C., Souris J.S., Ts<strong>en</strong>g F-G., Yang C-S., Mou C-Y., Ch<strong>en</strong> C-<br />

T., Lo L-W., 2010, Tri-functionalization of mesoporous silica nanoparticles for<br />

compreh<strong>en</strong>sive cancer theranostics-the trio of imaging, targeting and therapy, J. Mater.<br />

Chem., 20, 6149-6157<br />

Chung T-H., Wu S-H., Yao M., Lu C-W., Lin Y-S., HungY., Mou C-Y., Ch<strong>en</strong> Y-C., Huang<br />

218

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!