Biomedical Engineering Reference
In-Depth Information
[33] J.F. Hainfeld, F.A. Dilmanian, Z. Zhong, D.N. Slatkin, J.A. Kalef-Ezra, H.M. Smilowitz, Gold nanopar-
ticles enhance the radiation therapy of a murine squamous cell carcinoma, Phys. Med. Biol. 55 (11) (2010)
3045-3059 (Epub 2010 May 12).
[34] G. Storm, D.J.A. Crommelin, Liposomes: Quo vadis?, Pharm. Sci. Technol. Today 1 (1998) 19-31.
[35] X.Q. Pan, H. Wang, R.J. Lee, Antitumor activity of folate receptor-targeted liposomal doxorubicin in a KB
oral carcinoma murine xenograft model, Pharm. Res. 20 (3) (2003) 417-422.
[36] K. Park, J.H. Yang, Y. Choi, C. Lee, S.Y. Kim, Y. Byun, Chemoprevention of 4-NQO-induced oral carci-
nogenesis by co-administration of all-trans retinoic acid loaded microspheres and celecoxib, J. Control.
Release 104 (1) (2005) 167-179.
[37] M.W. Epperly, D. Franicola, X. Zhang, S. Nie, J.S. Greenberger, Effect of EGFR antagonists gefitinib
(Iressa) and C225 (Cetuximab) on MnSOD-plasmid liposome transgene radiosensitization of a murine
squamous cell carcinoma cell line, In Vivo 20 (6B) (2006) 791-796.
[38] M.W. Epperly, S.Y. Lai, A.J. Kanai, N. Mason, B. Lopresi, T. Dixon, et al., Effectiveness of combined
modality radiotherapy of orthotopic human squamous cell carcinomas in Nu/Nu mice using cetuximab, tira-
pazamine and MnSOD-plasmid liposome gene therapy, In Vivo 24 (1) (2010) 1-8.
[39] M. Young, N. Overlid, K. Konopka, N. Düzgünes, Gene therapy for oral cancer: efficient delivery of a “sui-
cide gene” to murine oral cancer cells in physiological milieu, J. Calif. Dent. Assoc. 33 (12) (2005) 967-971.
[40] M.W. Epperly, R. Wegner, A.J. Kanai, V. Kagan, E.E. Greenberger, S. Nie, et al., Effects of MnSOD-
plasmid liposome gene therapy on antioxidant levels in irradiated murine oral cavity orthotopic tumors,
Radiat. Res. 167 (3) (2007) 289-297.
[41] J.H. Xu, C.B. Pan, H.Z. Huang, B. Zhang, J.G. Wang, L.T. Zhang, Silencing of survivin gene enhances
chemosensitivity of human tongue cancer cell line Tca8113 to cisplatin [Article in Chinese], Zhonghua Kou
Qiang Yi Xue Za Zhi 42 (5) (2007) 280-283.
[42] S.K. Sahoo, V. Labhasetwar, Nanotech approaches to drug delivery and imaging, Drug Discovery Today 8
(2003) 1112-1120.
[43] Q.A. Pankhurst, J. Connolly, S.K. Jones, J. Dobson, Applications of magnetic nanoparticles in biomedicine,
J. Phys. D Appl. Phys. 36 (2003) R167-R181.
[44] R. Asmatulu, M.A. Zalich, R.O. Claus, J.S. Riffle, Synthesis, characterization and targeting of biodegradable
magnetic nanocomposite particles by external magnetic fields, J. Magn. Magn. Mater. 292 (2005) 108-119.
[45] C. Alexiou, R. Jurgons, R.J. Schmid, C. Bergemann, J. Henke, W. Erhardt, et al., Magnetic drug targeting—
biodistribution of the magnetic carrier and the chemotherapeutic agent mitoxantrone after locoregional can-
cer treatment, J. Drug Target. 11 (3) (2003) 139-149.
[46] C. Alexiou, R.J. Schmid, R. Jurgons, M. Kremer, G. Wanner, C. Bergemann, et al., Targeting cancer cells:
magnetic nanoparticles as drug carriers, Eur. Biophys. J. 35 (5) (2006) 446-450 (Epub 2006 January 31).
[47] K.J. Landmark, S. Dimaggio, J. Ward, C. Kelly, S. Vogt, S. Hong, et al., Synthesis, characterization, and in
vitro testing of superparamagnetic iron oxide nanoparticles targeted using folic acid-conjugated dendrimers,
ACS Nano. 2 (4) (2008) 773-783.
[48] C. Alexiou, R. Jurgons, R. Schmid, W. Erhardt, F. Parak, C. Bergemann, et al., Magnetic drug targeting—
a new approach in locoregional tumor therapy with chemotherapeutic agents. Experimental animal studies
[Article in German], HNO 53 (7) (2005) 618-622.
[49] X.Q. Ding, D. Chen, A.X. Wang, S. Li, Y. Chen, J. Wang, Antitumor effects of hydroxycamptothecin-
loaded poly[ethylene glycol]-poly[gamma-benzyl-L-glutamate] micelles against oral squamous cell carci-
noma, Oncol. Res. 16 (7) (2007) 313-323.
[50] E.M. Cohen, H. Ding, C.W. Kessinger, C. Khemtong, J. Gao, B.D. Sumer, Polymeric micelle nanoparticles
for photodynamic treatment of head and neck cancer cells, Otolaryngol. Head Neck Surg. 143 (1) (2010)
109-115.
[51] G. Sonavane, K. Tomoda, K. Makino, Biodistribution of colloidal gold nanoparticles after intravenous
administration: effect of particle size, Colloids Surf. B Biointerfaces 66 (2) (2008) 274-280.
Search WWH ::




Custom Search