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Enhanced antibacterial and anticancer properties of Se-NPs decorated TiO2 nanotube film

机译:Se-NPs修饰的TiO2纳米管薄膜的增强抗菌和抗癌性能

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摘要

Selenium nanoparticle modified surfaces attract increasing attention in the field of tissue engineering. Selenium exhibits strong anticancer, antibacterial and anti-inflammatory properties and it maintains relatively low off-target cytotoxicity. In our paper, we present the fabrication, characterization and cytocompatibility of titanium oxide (TiO2) nanotube surface decorated with various surface densities of chemically synthesized selenium nanoparticles. To evaluate antibacterial and anti-cancer properties of such nanostructured surface, gram negative bacteria E. coli, cancerous osteoblast like MG-63 cells and non-cancerous fibroblast NIH/3T3 were cultured on designed surfaces. Our results suggested that selenium nanoparticles improved antibacterial properties of titanium dioxide nanotubes and confirmed the anticancer activity towards MG-63 cells, with increasing surface density of nanoparticles. Further, the selenium decorated TiO2 nanotubes suggested deteriorating effect on the cell adhesion and viability of non-cancerous NIH/3T3 cells. Thus, we demonstrated that selenium nanoparticles decorated TiO2 nanotubes synthesized using sodium selenite and glutathione can be used to control bacterial infections and prevent the growth of cancerous cells. However, the higher surface density of nanoparticles adsorbed on the surface was found to be cytotoxic for non-cancerous NIH/3T3 cells and thus it might complicate the integration of biomaterial into the host tissue. Therefore, an optimal surface density of selenium nanoparticles must be found to effectively kill bacteria and cancer cells, while remaining favorable for normal cells.
机译:硒纳米粒子修饰的表面在组织工程领域引起了越来越多的关注。硒具有很强的抗癌,抗菌和抗炎特性,并保持较低的脱靶细胞毒性。在本文中,我们介绍了用化学合成的硒纳米粒子的各种表面密度修饰的氧化钛(TiO2)纳米管表面的制备,表征和细胞相容性。为了评估此类纳米结构表面的抗菌和抗癌特性,将革兰氏阴性细菌大肠杆菌,癌性成骨细胞(如MG-63细胞)和非癌性成纤维细胞NIH / 3T3培养在设计的表面上。我们的结果表明,硒纳米颗粒改善了二氧化钛纳米管的抗菌性能,并证实了随着纳米颗粒表面密度的增加,它对MG-63细胞具有抗癌活性。此外,硒修饰的TiO2纳米管暗示了对非癌NIH / 3T3细胞的细胞黏附和生存能力的恶化作用。因此,我们证明硒纳米颗粒修饰的亚硒酸钠和谷胱甘肽合成的TiO2纳米管可用于控制细菌感染和预防癌细胞的生长。然而,发现吸附在表面上的纳米颗粒的较高表面密度对非癌性NIH / 3T3细胞具有细胞毒性,因此可能使生物材料整合到宿主组织中变得复杂。因此,必须找到最佳的硒纳米粒子表面密度,以有效杀死细菌和癌细胞,同时又对正常细胞有利。

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