Biomedical Engineering Reference
In-Depth Information
Morra, M. (2000). On the molecular basis of fouling resistance. J Biomater Sci Polym Ed
11:547-569.
Murdock, R. C., Braydich-Stolle, L., Schrand, A. M. et al. (2008). Characterization of nano-
material dispersion in solution prior to in vitro exposure using dynamic light scattering
technique. Toxicol Sci 101:239-253.
Nakanishi, K., Sakiyama, T., and Imamura, K. (2001). On the adsorption of proteins on solid
surfaces, a common but very complicated phenomenon. J Biosci Bioeng 91:233-244.
Nel, A. E., Mädler, L., Velegol, D. et al. (2009). Understanding biophysicochemical interac-
tions at the nano—Bio interface. Nat Biotechnol 8:543-557.
Nichols, G., Byard, S., Bloxham, M. J. et al. (2002). A review of the terms agglomerate and
aggregate with a recommendation for nomenclature used in powder and particle charac-
terization. J Pharm Sci 91:2103-2109.
OECD. (2012). Guidance on sample preparation and dosimetry for the safety testing of manu-
factured nanomaterials. In Series on the Safety of Manufactured Nanomaterials Nr. 36 :
OECD Environment, Health and Safety Publications:1-93.
Pan, H., Qin, M., Meng, W. et al. (2012). How do proteins unfold upon adsorption on nanopar-
ticle surfaces? Langmuir 28:12779-12787.
Paur, H.-R., Cassee, F. R., Teeguarden, J. G. et al. (2011). In-vitro cell exposure studies for the
assessment of nanoparticle toxicity in the lung—A dialog between aerosol science and
biology. J Aerosol Sci 42:668-692.
Peters, R., Kramer, E., Oomen, A. G. et al. (2012). Presence of nano-sized silica dur-
ing in vitro digestion of foods containing silica as a food additive. ACS Nano
6:2441-2451.
Petri-Fink, A., Steitz, B., Finka, A. et al. (2008). Effect of cell media on polymer coated super-
paramagnetic iron oxide nanoparticles (SPIONs): Colloidal stability, cytotoxicity, and
cellular uptake studies. Eur J Pharm Biopharm 68:129-137.
Phelps, D. (2001). Surfactant regulation of host defense function in the lung: A question of
balance. Pediatr Pathol Mol Med 20:269-292.
Pieper, R., Gatlin, C. L., Makusky, A. J. et al. (2003). The human serum proteome: Display
of nearly 3700 chromatographically separated protein spots on two-dimensional elec-
trophoresis gels and identification of 325 distinct proteins. Proteomics 3:1345-1364.
Pitek, A. S., O'Connell, D., Mahon, E. et al. (2012). Transferrin coated nanoparticles: Study of
the bionano interface in human plasma. PLoS ONE 7, e40685:1-14.
Powers, K. W. (2005). Research strategies for safety evaluation of nanomaterials. Part VI.
Characterization of nanoscale particles for toxicological evaluation. Toxicol Sci
90:296-303.
Powers, K. W., Palazuelos, M., Moudgil, B. M. et al. (2007). Characterization of the size,
shape, and state of dispersion of nanoparticles for toxicological studies. Nanotoxicology
1:42-51.
Rabe, M., Verdes, D., and Seeger, S. (2011). Understanding protein adsorption phenomena at
solid surfaces. Adv Colloid Interface Sci 162:87-106.
Ramirez-Garcia, S., Chen, L., Morris, M. A. et al. (2011). A new methodology for study-
ing nanoparticle interactions in biological systems: Dispersing titania in biocompatible
media using chemical stabilisers. Nanoscale 3:4617-4624.
Roach, P., Farrar, D., and Perry, C. C. (2006). Surface tailoring for controlled protein adsorp-
tion: effect of topography at the nanometer scale and chemistry. J Am Chem Soc
128:3939-3945.
Ruge, C. A., Kirch, J., Cañadas, O. et al. (2011). Uptake of nanoparticles by alveolar macro-
phages is triggered by surfactant protein A. Nanomedicine 7:690-693.
Ruge, C. A., Schaefer, U. F., Herrmann, J. et al. (2012). The interplay of lung surfactant pro-
teins and lipids assimilates the macrophage clearance of nanoparticles. PLoS ONE 7,
e40775:1-10.
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