Department of Biology and CESAM, University of Aveiro, 3810-193, Aveiro, Portugal.
BAM Federal Institute of Materials Research and Testing, Division Biophotonics, Richard-Willstätter-Str. 11, 12489, Berlin, Germany.
Sci Rep. 2022 Mar 8;12(1):3770. doi: 10.1038/s41598-022-07630-5.
Upconversion nanoparticles (UCNPs) have attracted considerable attention owing to their unique photophysical properties. Their utilization in biomedical applications depends on the understanding of their transformations under physiological conditions and their potential toxicity. In this study, NaYF:Yb,Er UCNPs, widely used for luminescence and photophysical studies, were modified with a set of four different coordinatively bound surface ligands, i.e., citrate, alendronate (AA), ethylendiamine tetra(methylene phosphonate) (EDTMP), and poly(maleic anhydride-alt-1-octadecene) (PMAO), as well as silica coatings with two different thicknesses. Subsequently, the aging-induced release of fluoride ions in water and cell culture media and their cytotoxic profile to human keratinocytes were assessed in parallel to the cytotoxic evaluation of the ligands, sodium fluoride and the lanthanide ions. The cytotoxicity studies of UCNPs with different surface modifications demonstrated the good biocompatibility of EDTMP-UCNPs and PMAO-UCNPs, which is in line with the low amount of fluoride ions released from these samples. An efficient prevention of UCNP dissolution and release of cytotoxic ions, as well as low cytotoxicity was also observed for UCNPs with a sufficiently thick silica shell. Overall, our results provide new insights into the understanding of the contribution of surface chemistry to the stability, dissolution behavior, and cytotoxicity of UCNPs. Altogether, the results obtained are highly important for future applications of UCNPs in the life sciences and bioimaging studies.
上转换纳米粒子(UCNPs)因其独特的光物理性质而引起了相当大的关注。它们在生物医学应用中的使用取决于对其在生理条件下的转化及其潜在毒性的理解。在这项研究中,NaYF:Yb,Er UCNPs 被修饰为一组具有四种不同配位结合表面配体的纳米粒子,即柠檬酸、阿仑膦酸钠(AA)、乙二胺四(亚甲基膦酸)(EDTMP)和聚(马来酸酐-alt-1-十八烯)(PMAO),以及两种不同厚度的二氧化硅涂层。随后,在水和细胞培养基中平行评估了老化诱导的氟离子释放及其对人角质形成细胞的细胞毒性,以及配体、氟化钠和镧系离子的细胞毒性评估。不同表面修饰的 UCNPs 的细胞毒性研究表明,EDTMP-UCNPs 和 PMAO-UCNPs 具有良好的生物相容性,这与从这些样品中释放的氟离子量低相一致。对于具有足够厚的二氧化硅壳的 UCNPs,还观察到了有效的防止 UCNP 溶解和释放细胞毒性离子以及低细胞毒性的效果。总的来说,我们的研究结果为理解表面化学对 UCNPs 的稳定性、溶解行为和细胞毒性的贡献提供了新的见解。总之,这些结果对于 UCNPs 在生命科学和生物成像研究中的未来应用非常重要。