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Localized heating of tumor cells utilizing superparamagnetic nanoparticles
Conference paper

Localized heating of tumor cells utilizing superparamagnetic nanoparticles

Hao-Yu Tseng, Chen-Yi Lee, Ying-Hsia Shih, Xi-Zhang Lin and Gwo-Bin Lee
2007 7th IEEE International Conference on Nanotechnology - IEEE-NANO 2007, Proceedings, pp.969-974
2007

Abstract

Alternating magnetic field Cancer therapy Hyperthermia Magnetic nanoparticle
This paper presents an investigation of hyperthermia cancer therapy utilizing high-frequency magnetic field to induce a localized temperature increase on tumors by using superparamagnetic nanoparticles. In-vitro and in-vivo experiments showed the feasibility of hyperthermia cancer therapy. The relationship between temperature rise and cell survival rate was also investigated. While CT-26 colon cancer cells were heated above 45°C, the survival rate of cancer cells would be greatly reduced. A temperature increase as high as 59.5°C can be successfully generated in rat livers. In-vivo tests also indicated that hyperthermia cancer therapy using this approach could significantly suppress the growth rate of tumors by utilizing concentrated magnetic nanoparticles and temperature-sensitive hydrogel, which was used to secure the nanoparticles in the target tumor tissue. Furthermore, a feedback temperature control system was successfully developed to keep the nanoparticles at a constant temperature to prevent overheating in the tumors such that a safer and more precise cancer therapy is feasible. The developed technique may be promising for the hyperthermia cancer therapy. © 2007 IEEE.

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