Bubnovskaya L, Belous A, Solopan A, Podoltsev A, Kondratenko I, Kovelskaya A, Sergienko T, Osinsky S
RE Kavetsky Institute of Experimental Pathology, Oncology and Radiobiology, NAS of Ukraine, Kyiv 03022, Ukraine.
Exp Oncol. 2012 Dec;34(4):336-9.
OBJECTIVES: To evaluate the ability of manganese perovskite nanoparticles (lanthanum-strontium manganite) to heat the tumor tissue in vivo under action of external alternating magnetic field. MATERIALS AND METHODS: The magnetic fluid on the basis of nanoparticles of perovskite manganite was tested in the heating experiments using of alternating magnetic field of frequency 300 kHz and amplitude 7.7 kA/m. Guerin carcinoma was transplanted into the muscle of rat. Magnetic fluid was injected intramuscularly or intratumorally. Temperature was measured by copper-constantan thermocouple. RESULTS: Temperature of magnetic fluid was increased by 56 °C for 10 min of alternating magnetic field action. Administration of magnetic fluid into the muscle followed by alternating magnetic field resulted in the elevation of muscle temperature by 8 °C after 30 min post injection. Temperature of the tumor injected with magnetic fluid and treated by alternating magnetic field was increased by 13.6 °C on the 30 min of combined influence. CONCLUSION: In vivo study with rat tissue has demonstrated that magnetic fluid of manganite perovskite injected in the tumor increases the tumor temperature under an alternating magnetic field. Obtained results emphasize that magnetic fluid of manganite perovskite can be considered as effective inducer of tumor hyperthermia.
目的:评估锰钙钛矿纳米颗粒(镧锶锰氧化物)在外部交变磁场作用下加热体内肿瘤组织的能力。 材料与方法:基于钙钛矿锰氧化物纳米颗粒的磁流体在频率为300kHz、幅度为7.7kA/m的交变磁场加热实验中进行测试。将格林氏癌移植到大鼠肌肉中。磁流体通过肌肉注射或瘤内注射。温度用铜-康铜热电偶测量。 结果:在交变磁场作用10分钟后,磁流体温度升高了56℃。在肌肉中注射磁流体后施加交变磁场,注射后30分钟肌肉温度升高了8℃。在联合作用30分钟时,注射磁流体并经交变磁场处理的肿瘤温度升高了13.6℃。 结论:对大鼠组织的体内研究表明,注射到肿瘤中的钙钛矿锰磁流体在交变磁场下可提高肿瘤温度。所得结果强调,钙钛矿锰磁流体可被视为有效的肿瘤热疗诱导剂。
J Biomed Mater Res A. 2009-12-15
Int J Nanomedicine. 2016-4-27