Inhibition of Angiogenesis Associated with Ovarian Cancer By Nanoparticles of Cerium Oxide (CIP)

نویسندگان

  • Sudipta Seal
  • Shailendra Giri
  • Ajay Karakoti
  • Viji Shridhar
چکیده

No. 377.24 URL, XP008095016 & FASEB Meeting on Experimental Biology: Translating the Genome, San Diego, CA USA, Apr. 11-15, 2003 ISSN: 0892-6638 *Abstract*. Cook, et al. "Neuronal Damage induced by polychlorinated biphenyls is partically reversed by cerium oxide nanoparticles" [online] vol. 2003, 2003, XP008095032 Retrieved from the internet: URL http://sfn.scholarone.com/itin2003/main.htm ]?new _page_ id~l26&abstract_id~l26&abstract_id~l4513&p_num~669.13& is_tech~O> [retrieved on May 8, 2008] *abstract*. Tusnekawa, S., et al. "Lattice relaxation of monosize Ce02-x nanocrystalline particles" Applied Surface Science Elsevier Netherlands, vol. 152, No. 1-2, Nov. 1999, pp. 53-56. Hooper, Claire, Y., et al. "New treatment in age-related macular degeneration" Clinical & Experimental Opthalmology, Oct. 2003, pp. 376-391. Qi, et al. "Redispersible Hybrid Nanopowders; Cerium Oxide Nanoparticle complexes with Phosphonated-PEG Oligomers," ACS Nano, 2008, vol. 2(5), pp. 879-888. Otsuka, et al. "PEGylated nanoparticles for biological and pharmaceutical applications," Advanced Drug Delivery Reviews, 2003, vol. 55, pp. 403-419. Olivier, et al. "Synthesis ofpegylated immunonanoparticles." Pharmaceutical Research, Aug. 2002, vol. 19, No. 8, pp. 1137-1143. Shui, Y.B., et al. "Morphological observation on cell death an dphagocytosis induced by ultraviolent irradiation in a cultured human lens epithelial cell line," Dec. 2000, vol. 71, pp. 609-618. Xijuan, et al. "Size-dependent optical properties of nanocrystalline Ce02:Er obtained by combustion synthesis," Sep. 24, 2001, Phys. Chem. Chem Phys., vol. 3, pp. 5266-5269. Guo, "Green and red upconversion luminescence in Ce02:Er3+ powders produced by 785 nm laser," Jounral of Solid State Chemistry 180,p. 127-131,2007. Perez, J. M., et al. "Synthesis of Biocompatible Dextran-Coated Nanoceria with pH-Dependent Antioxidant Properties," Small, vol. 4 No. 5, 2008, pp. 552-556. Pirmohamed, et al. "Nanoceria exhibit redox state-dependent catalase mimetic activity," Chem. Comm, 2010, 46, pp. 2736-2738. Nazem, et al. "Nanotechnology for Alzheimer's disease detection and treatment." Insciences J., 2011, vol. 1(4), pp. 169-193. Karakoti, et al. "Direct Synthesis of Nanoceria in Aqueous Polyhydroxyl Solutions." J. Phys. Chem. C, vol. 111, No. 46, 2007, pp. 17232-17240. Tarnuzzer, et al. "Vacancy Engineered Ceria Nano structures for Protection from Radiation-Induced Cellular Damage," Nano Lett, vol. 4, No. 12, pp. 2573-2577, 2005. Heckert, et al. "The role of cerium redox state in the SOD mimetic activity ofnanoceria," Biomaterials, 29, 2008, pp. 2705-2709. Schubert, et al. "Cerium and yttrium oxide nanoparticles are neuroprotective," Feb. 2006, Biochemical and Biophysical Research Communications, 342, p. 86-91. Zhang, et al. Cerium oxide nanoparticles: size selective formation and structure analysis, Jan. 2002, Applied Physics Letters, vol. 81, No. 1, p. 127-129. Patil, et al. "Surface-derived nanoceria with human carbonic anhydrase II inhibitors and flourphores: a potential drug delivery device." J. Phys. Chem. C., 2007, vol. 111, No. 24, pp. 8437-8442.

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تاریخ انتشار 2016