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首页> 外文期刊>International Journal of Nanomedicine >Biocompatibility of Fe3O4@Au composite magnetic nanoparticles in vitro and in vivo
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Biocompatibility of Fe3O4@Au composite magnetic nanoparticles in vitro and in vivo

机译:Fe3O4 @ Au复合磁性纳米粒子的体内外生物相容性

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Purpose: This research was conducted to assess the biocompatibility of the core-shell Fe3O4@Au composite magnetic nanoparticles (MNPs), which have potential application in tumor hyperthermia. Methods: Fe3O4@Au composite MNPs with core-shell structure were synthesized by reduction of Au3+ in the presence of Fe3O4-MNPs prepared by improved co-precipitation. Cytotoxicity assay, hemolysis test, micronucleus (MN) assay, and detection of acute toxicity in mice and beagle dogs were then carried out.Results: The result of cytotoxicity assay showed that the toxicity grade of this material on mouse fibroblast cell line (L-929) was classified as grade 1, which belongs to no cytotoxicity. Hemolysis rates showed 0.278%, 0.232%, and 0.197%, far less than 5%, after treatment with different concentrations of Fe3O4@Au composite MNPs. In the MN assay, there was no significant difference in MN formation rates between the experimental groups and negative control (P > 0.05), but there was a significant difference between the experimental groups and the positive control (P < 0.05). The median lethal dose of the Fe3O4@Au composite MNPs after intraperitoneal administration in mice was 8.39 g/kg, and the 95% confidence interval was 6.58-10.72 g/kg, suggesting that these nanoparticles have a wide safety margin. Acute toxicity testing in beagle dogs also showed no significant difference in body weight between the treatment groups at 1, 2, 3, and 4 weeks after liver injection and no behavioral changes. Furthermore, blood parameters, autopsy, and histopathological studies in the experimental group showed no significant difference compared with the control group.Conclusion: The results indicate that Fe3O4@Au composite MNPs appear to be highly biocompatible and safe nanoparticles that are suitable for further application in tumor hyperthermia.
机译:目的:本研究旨在评估核壳Fe3O4 @ Au复合磁性纳米粒子(MNPs)的生物相容性,该纳米粒子在肿瘤热疗中具有潜在的应用前景。方法:在改进共沉淀法制备的Fe3O4-MNPs存在下,通过还原Au3 +合成具有核-壳结构的Fe3O4 @ Au复合MNPs。然后进行了细胞毒性测定,溶血试验,微核(MN)测定以及对小鼠和比格犬的急性毒性的检测。结果:细胞毒性测定的结果表明,该物质对小鼠成纤维细胞系(L- 929)归为1级,不属于细胞毒性。用不同浓度的Fe3O4 @ Au复合MNPs处理后,溶血率分别为0.278%,0.232%和0.197%,远低于5%。在MN测定中,实验组和阴性对照之间的MN形成率没有显着差异(P> 0.05),但是实验组和阳性对照之间的MN形成率有显着差异(P <0.05)。腹膜内给药后小鼠中Fe3O4 @ Au复合MNP的中位致死剂量为8.39 g / kg,95%置信区间为6.58-10.72 g / kg,表明这些纳米粒子具有很宽的安全裕度。在比格犬中进行的急性毒性试验还显示,在肝注射后1、2、3和4周,各治疗组之间的体重无显着差异,行为无变化。此外,实验组的血液参数,尸检和组织病理学研究与对照组相比无显着差异。结论:结果表明,Fe3O4 @ Au复合MNP似乎具有高度的生物相容性和安全性,适合进一步应用。肿瘤热疗。

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