Blyakhman Felix A, Makarova Emilia B, Fadeyev Fedor A, Lugovets Daiana V, Safronov Alexander P, Shabadrov Pavel A, Shklyar Tatyana F, Melnikov Grigory Yu, Orue Iñaki, Kurlyandskaya Galina V
Ural State Medical University, 620028 Ekaterinburg, Russia.
Institute of Natural Sciences and Mathematics, Ural Federal University, 620002 Ekaterinburg, Russia.
Nanomaterials (Basel). 2019 Feb 8;9(2):232. doi: 10.3390/nano9020232.
Iron oxide γ-Fe₂O₃ magnetic nanoparticles (MNPs) were fabricated by laser target evaporation technique (LTE) and their structure and magnetic properties were studied. Polyacrylamide (PAAm) gels with different cross-linking density of the polymer network and polyacrylamide-based ferrogel with embedded LTE MNPs (0.34 wt.%) were synthesized. Their adhesive and proliferative potential with respect to human dermal fibroblasts were studied. At the same value of Young modulus, the adhesive and proliferative activities of the human dermal fibroblasts on the surface of ferrogel were unexpectedly much higher in comparison with the surface of PAAm gel. Properties of PAAm-100 + γ-Fe₂O₃ MNPs composites were discussed with focus on creation of a new generation of drug delivery systems combined in multifunctional devices, including magnetic field assisted delivery, positioning, and biosensing. Although exact applications are still under development, the obtained results show a high potential of LTE MNPs to be applied for cellular technologies and tissue engineering. PAAm-100 ferrogel with very low concentration of γ-Fe₂O₃ MNPs results in significant improvement of the cells' compatibility to the gel-based scaffold.
通过激光靶蒸发技术(LTE)制备了氧化铁γ-Fe₂O₃磁性纳米颗粒(MNPs),并对其结构和磁性进行了研究。合成了具有不同聚合物网络交联密度的聚丙烯酰胺(PAAm)凝胶以及嵌入LTE MNPs(0.34 wt.%)的聚丙烯酰胺基铁凝胶。研究了它们对人皮肤成纤维细胞的黏附及增殖潜力。在相同杨氏模量值下,与PAAm凝胶表面相比,人皮肤成纤维细胞在铁凝胶表面的黏附及增殖活性意外地高得多。讨论了PAAm-100 + γ-Fe₂O₃ MNPs复合材料的性能,重点是在多功能设备中创建新一代药物递送系统,包括磁场辅助递送、定位和生物传感。尽管确切的应用仍在开发中,但所获得的结果表明LTE MNPs在细胞技术和组织工程中的应用具有很高的潜力。γ-Fe₂O₃ MNPs浓度极低的PAAm-100铁凝胶可显著改善细胞与凝胶基支架的相容性。