Solopan S, Belous A, Yelenich A, Bubnovskaya L, Kovelskaya A, Podoltsev A, Kondratenko I, Osinsky S
V.I. Vernadsky Insitute of General and Inorganic Chemistry, NAS of Ukraine, Palladin Ave. 32/34, 03680 Kiev, Ukraine.
Exp Oncol. 2011 Sep;33(3):130-5.
To synthesize magnetic particles of lanthanum-strontium manganite, prepare the magnetic fluid (MF), evaluate the generation of heat by particles and determine their common toxiсity.
Nanoparticles based on the solid solutions of lanthanum-strontium manganite (La(1-x)Sr(x)MnO(3)) have been synthesized by a sol-gel method. Conventional methods of experimental oncology were used.
Nanoparticles of ferromagnetic materials on the basis of solid solutions of lanthanum strontium manganite by sol-gel method were synthesized. It was shown the possibility to regulate the aggregate form of particles that are formed during the synthesis. Magnetic fluid based on the synthesized nanoparticles and water solutions of agarose have been produced. It was shown the possibility to heat this magnetic fluid up to 42-45 °С in externally applied alternating magnetic field (AMF) operated at 100-400 kHz. It was determined that under long-term influence of AMF nanofluid is heated up to temperature which is not over that of magnetic phase transition. It was detected that magnetic powder as well as fluid have not displayed acute toxicity or side effects (intraperitoneal or intratumoral administration) in animals either intact or with transplanted tumors.
Possibility of synthesized magnetic fluid to generate heat in externally applied AMF as well as lack of side effects allow to consider its as a potential mean for tumor hyperthermia (HT).
合成镧锶锰氧化物磁性颗粒,制备磁流体(MF),评估颗粒的产热情况并确定其一般毒性。
采用溶胶 - 凝胶法合成基于镧锶锰氧化物(La(1 - x)Sr(x)MnO(3))固溶体的纳米颗粒。使用常规肿瘤学实验方法。
通过溶胶 - 凝胶法合成了基于镧锶锰氧化物固溶体的铁磁材料纳米颗粒。结果表明在合成过程中能够调节所形成颗粒的聚集形式。制备了基于合成纳米颗粒和琼脂糖水溶液的磁流体。结果表明在外部施加的频率为100 - 400 kHz的交变磁场(AMF)中,能够将该磁流体加热到42 - 45℃。已确定在AMF的长期作用下,纳米流体被加热到不超过磁相变温度。已检测到磁粉以及磁流体在完整动物或移植肿瘤动物中(腹腔内或瘤内给药)均未显示出急性毒性或副作用。
合成的磁流体在外部施加的AMF中具有产热能力且无副作用,这使得可以将其视为肿瘤热疗(HT)的一种潜在手段。