Biomedical Engineering Reference
In-Depth Information
320. Wang, M.; Mi, C.; Wang, W.; Liu, C.; Wu, Y.; Xu, Z.; Mao, C.; Xu, S. Immunolabeling and
NIR-Excited Fluorescent Imaging of HELA Cells by using NaYF4:Yb, Er Upconversion
Nanoparticles. ACS Nano. 2009, 3, 1580-1586.
321. Wilson, R. The use of Gold Nanoparticles in Diagnostics and Detection. Chem. Soc. Rev.
2008, 37, 2028-2045.
322. Bilberg, K.; Døving, K. B.; Beedholm, K.; Baatrup, E. Silver Nanoparticles Disruptolfaction
in Crucian carp (Carassius carassius) and Eurasian perch (Perca fluviatilis). Aquat. Toxicol.
2011, 104, 145-152.
323. Castranova, V. Overview of Current Toxicological Knowledge of Engineered Nanoparticles.
J. Occup. Environ. Med. 2011, 53, S14-S17.
324. Cedervall, T.; Lynch, I.; Lindman, S.; Nilsson, H.; Thulin, E.; Linse, S.; Dawson, K. A. Under-
standing Biophysicochemical Interactions at the Nano-bio Interface. Proc. Natl. Acad. Soc.
USA 2007, 104, 2050-2055.
325. Das, S.; Jagan, L.; Isiah, R.; Rajech, B.; Backianathan, S.; Subhashini, J. Nanotechnology
in Oncology: Characterization and In Vitro Release Kinetics of Cisplatin-Loaded Albumin
Nanoparticles: Implications in Anticancer Drug Delivery. Indian J. Pharmacol. 2011, 43,
409-413.
326. Eun, H. C.; Chung, J. H.; Jung, S. Y.; Cho, K. H.; Kim, K. H. A Comparative Study of the
Cytotoxicity of Skin Irritants on Cultured Human Oral and Skin Keratinocytes. Br. J. Derma-
tol. 1994, 130, 24-28.
327. Hagens, W. I.; Oomen, A. G.; de Jong, W. H.; Cassee, F. R.; Sips, A. What do we (need to)
Know About the Kinetic Properties of Nanoparticles in the Body?. Regul. Toxicol. Pharmacol.
2007, 49, 217-229.
328. Isakovic, A.; Markovic, Z.; Nikolic, N.; Todorovic-Markovic, B.; Vranjes-Djuric, S.; Harhaji, L.;
Raicevic, N.; Romcevic, N.; Vasiljevic-Radovic, D.; Dramicanin, M.; Trajkovic, V. Inacti-
vation of Nanocrystalline C60 Cytotoxicity by Gamma-Irradiation. Biomaterials 2006, 27,
5049-5058.
329. Koyama, S.; Kim, Y. A.; Hayashi, T.; Takeuchi, K.; Fujii, C.; Kuroiwa, N., et al. In Vivo
Immunological Toxicity in Mice of Carbon Nanotubes with Impurities. Carbon 2009, 47,
1365-1372.
330. Mahmoudi, M.; Simchi, A.; Imani, M.; Shokrgozar, M. A.; Milani, A. S.; Hafeli, U.; Stroeve,
P. A New Approach for the In Vitro Identification of the Cytotoxicity of Superparamagnetic
Iron Oxide Nanoparticles. Colloids Surf. B : Biointerfaces 2010, 75, 300-309.
331. Marambio-Jones, C.; Hoek, E. M. V. A Review of the Antibacterial Effects of Silver Nanoma-
terials and Potential Implications for Human Health and the Environment. J. Nanopart. Res.
2010, 12, 1531-1551.
332. Pelley, J. L.; Daar, A. S.; Saner, M. A. State of Academic Knowledge on Toxicity and Biologi-
cal Fate of Quantum Dots. Toxicol. Sci. 2009, 112, 276-296.
333. Schrand, A. M.; Rahman, M. F.; Hussain, S. M.; Schlager, J. J.; Smith, D. A.; Syed, A. F.
Metal-based Nanoparticles and their Toxicity Assessment. Wiley Interdiscip. Rev. Nanomed.
Nanobiotechnol. 2010, 2, 544-568.
334. Xu, H.; Qu, F.; Xu, H.; Lai, W.; Wang, Y. A.; Aguilar, Z. P.; Wei, H. Role of Reactive Oxygen
Species in the Antibacterial Mechanism of Silver Nanoparticles on Ecoli O157:H7. Biometals
2012, 25, 45-53.
335. Zhao, X.; Liu, R. Recent Progress and Perspectives on the Toxicity of Carbon Nanotubes at
Organism, Organ, Cell, and Biomacromolecule Levels. Environ. Int. 2012, 40, 244-255.
336. Connor, E. E.; Mwamuka, J.; Gole, A.; Murphy, C. J.; Wyatt, M. D. Gold Nanoparticles are
Taken up by Human Cells but do not Cause Acute Cytotoxicity. Small 2005, 1, 325.
Search WWH ::




Custom Search