| Literature DB >> 28356945 |
Hongsheng Xu1, Hailiang Zong1, Chong Ma1, Xing Ming1, Ming Shang1, Kai Li1, Xiaoguang He1, Lei Cao1.
Abstract
The temperature variation rule of nano-magnetic fluid in the specific magnetic field and the effect on the treatment of malignant glioma were examined. The temperature variation of nano-magnetic fluid in the specific magnetic field was investigated by heating in vitro, and cell morphology was observed through optical microscopy and electron microscopy. MTT detection also was used to detect the effect of Fe3O4 nanometer magnetic fluid hyperthermia (MFH) on the proliferation of human U251 glioma cell line. The Fe3O4 nano MFH experiment was used to detect the inhibition rate of the tumor volume in nude mice with tumors. The results of the experiment showed that the heating ability of magnetic fluid was positively correlated with its concentration at the same intensity of the magnetic field. The results also indicated the prominent inhibitory effect of nanometer MFH on the proliferation of glioma cells, which was a dose-dependent relationship with nanometer magnetic fluid concentration. The hyperthermia experiment of nude mice with tumors displayed a significant inhibiting effect of Fe3O4 nanometer magnetic fluid in glioma volume. These results explain that iron (II, III) oxide (Fe3O4) nanometer MFH can inhibit the proliferation of U251 glioma cells, and has an obvious inhibitory effect on glioma volume, which plays a certain role in the treatment of brain glioma.Entities:
Keywords: Fe3O4 nanometer magnetic fluid; hyperthermia; malignant glioma
Year: 2016 PMID: 28356945 PMCID: PMC5351186 DOI: 10.3892/ol.2016.5513
Source DB: PubMed Journal: Oncol Lett ISSN: 1792-1074 Impact factor: 2.967
Figure 1.Magnetic nanoparticles in transmission electron microscopy.
Figure 2.Changes of temperatures with different concentrations in specific alternating magnetic field.
MTT results of different concentrations of Fe3O4 nanometer magnetic fluid hyperthermia in U251 cells (mean ± standard deviation).
| Groups | Control group | 2 g/l | 4 g/l | 6 g/l | 8 g/l |
|---|---|---|---|---|---|
| OD value | 0.95±0.01 | 0.75±0.02 | 0.51±0.03 | 0.37±0.01 | 0.12±0.02 |
| Inhibition rate (%) | 21.5 | 46.3 | 61.1 | 87.4 |
P<0.05 in treatment groups compared with the control group.
Inhibiting effect of Fe3O4 nanometer magnetic fluid hyperthermia in different concentrations on tumor volume (mean ± standard deviation).
| Groups | Blank control group | Magnetic fluid control group | 2 g/l | 4 g/l | 6 g/l | 8 g/l |
|---|---|---|---|---|---|---|
| Tumor volume (cm3) | 19.58±3.53 | 17.24±2.82 | 12.17±3.21 | 9.88±2.14 | 5.69±2.03 | 2.43±1.17 |
| Inhibition rate (%) | 11.9 | 37.7 | 49.5 | 69.6 | 12.4 |
P<0.05 in hyperthermia group with single factor analysis of variance, compared with control group.