Magnetic Fluid Hyperthermia of Rodent Tumors Using Manganese Perovskite Nanoparticles

L. Bubnovskaya, A. Belous, S. Solopan, A. Kovelskaya, L. Bovkun, A. Podoltsev, Igor Kondtratenko, S. Osinsky
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引用次数: 25

Abstract

Purpose. To test the antitumor activity of magnetic fluid (MF) on the basis of substituted lanthanum-strontium manganite nanoparticles combined with alternating magnetic field (AMF) in experiments with transplanted tumors. Materials and Methods. MF with a size of nanoparticles of 30–40 nm in aqueous agarose solution was investigated. The ability of MF to heat tumor under AMF (300 kHz, 7.7 kA/m) was tested in vivo with rodent tumors (Guerin carcinoma, Walker-256 carcinosarcoma, and Lewis lung carcinoma (3LL)). Results. Single administration of MF into the tumor at a dose of 150 mg/kg (rats) or 200 mg/kg (mice) followed by AMF within 20–30 min (treatment was repeated 3-4-fold) has resulted in the complete regression of tumor in the 35% of rats and 57% of mice. Administration of MF alone or action of AMF alone has not resulted in tumor growth inhibition. The chemomodifying effect of nanohyperthermia was determined, in particular for cisplatinum: thermal enhancement ratio was 2.0. It was also observed that nanohyperthermia has resulted in the absence of 3LL metastases in 43% of mice. Conclusions. MF on the basis of lanthanum-strontium manganite may be considered as an effective inductor of tumor local hyperthermia.
利用钙钛矿纳米颗粒对啮齿动物肿瘤进行磁流体热疗
目的。目的:研究取代镧锶锰纳米颗粒结合交变磁场(AMF)在移植肿瘤实验中的抗肿瘤活性。材料与方法。研究了琼脂糖水溶液中纳米颗粒尺寸为30 ~ 40 nm的MF。在300 kHz, 7.7 kA/m的AMF条件下,对小鼠肿瘤(Guerin癌,Walker-256癌肉瘤和Lewis肺癌(3LL))进行了MF加热肿瘤的能力实验。结果。单次给药剂量为150 mg/kg(大鼠)或200 mg/kg(小鼠)的MF,然后在20-30分钟内给药AMF(重复治疗3-4次),35%的大鼠和57%的小鼠的肿瘤完全消退。单独使用MF或单独使用AMF均未导致肿瘤生长抑制。纳米热疗的化学修饰效果被确定,特别是顺铂:热增强比为2.0。还观察到,纳米热疗导致43%的小鼠没有3LL转移。结论。基于镧锶锰矿的MF可能被认为是肿瘤局部热疗的有效诱导剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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