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Iron-Cobalt Ferrite Nanoparticles—Biocompatibility and Distribution After Intravenous Administration to Rat

机译:铁钴铁氧体纳米颗粒—大鼠静脉内给药后的生物相容性和分布

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摘要

The biocompatibility of iron-cobalt ferrite magnetic nanoparticles (MNP) in vitro and in vivo and their distribution under an external magnetic field after intravenous administration to tumor-bearing rats were studied. In vitro rat mesenchymal stem cells and human larynx carcinoma HEp-2 cells accumulated the magnetic material intracellularly. The proliferation of HEp-2 cells was inhibited moderately by the MNP containing ca. 1.5% Co (either uncoated or polysiloxane-coated) and effectively—by the MNP containing ca. 25% Co. In vivo the most MNP-accumulating organs were the spleen, the kidneys, and the liver. No accumulation of the MNP was observed in the brain. It was found that the differences in the MNP distribution caused by topical application of a magnet were more pronounced at 24 h post injection than at 0.5–3.0 h—while the expected plasma life of the MNP doesn't exceed 10 min. E.g., application of the magnet caused a 2.4-fold MNP-attributed increase in iron concentration in M-1 sarcoma model at 24 h post injection. Similarities were found in lymph tissue tropism between our particles that readily agglutinate in plasma-containing media and nonagglutinating, long-circulating MNP reported by other authors.
机译:研究了钴钴铁氧体磁性纳米粒子(MNP)在体内和体外的生物相容性以及在荷瘤大鼠静脉内给药后在外磁场下的分布。体外大鼠间充质干细胞和人喉癌HEp-2细胞在细胞内积累了磁性物质。 HEp-2细胞的增殖被含MNP的ca适度抑制。 1.5%的钴(未涂层或聚硅氧烷涂层)有效地被含MNP的金属制成。 25%Co.体内MNP积累最多的器官是脾脏,肾脏和肝脏。在脑中未观察到MNP的积累。结果发现,局部使用磁铁引起的MNP分布差异在注射后24小时比0.5–3.0 h更为明显,而MNP的预期血浆寿命不超过10分钟。例如,在注射后24小时内,磁铁的使用导致M-1肉瘤模型中铁浓度的MNP升高2.4倍。在我们的粒子之间的淋巴组织嗜性中发现相似之处,这些粒子在含血浆的培养基中容易凝集,而其他作者也报道了非凝集的长循环MNP。

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