Department for Nanostructured Materials, Jožef Stefan Institute, Jamova 39, Ljubljana, Slovenia.
Nanoscale. 2018 Jan 18;10(3):1308-1321. doi: 10.1039/c7nr07810b.
We have produced an innovative, theranostic material based on FePt/SiO/Au hybrid nanoparticles (NPs) for both, photo-thermal therapy and magnetic resonance imaging (MRI). Furthermore, a new synthesis approach, i.e., Au double seeding, for the preparation of Au nanoshells around the FePt/SiO cores, is proposed. The photo-thermal and the MRI response were first demonstrated on an aqueous suspension of hybrid FePt/SiO/Au NPs. The cytotoxicity together with the internalization mechanism and the intracellular fate of the hybrid NPs were evaluated in vitro on a normal (NPU) and a half-differentiated cancerous cell line (RT4). The control samples as well as the normal cell line incubated with the NPs showed no significant temperature increase during the in vitro photo-thermal treatment (ΔT < 0.8 °C) and thus the cell viability remained high (∼90%). In contrast, due to the high NP uptake by the cancerous RT4 cell line, significant heating of the sample was observed (ΔT = 4 °C) and, consequently, after laser irradiation the cell viability dropped significantly to ∼60%. These results further confirm that the hybrid FePt/SiO/Au NPs developed in the scope of this work were not only efficient but also highly selective photo-thermal agents. Furthermore, the improvement in the contrast and the easier distinction between the healthy and the cancerous tissues were clearly demonstrated with in vitro MRI experiments, proving that hybrid NPs have an excellent potential to be used as contrast agents.
我们已经开发出一种基于 FePt/SiO2/Au 杂化纳米颗粒(NPs)的创新治疗学材料,可用于光热治疗和磁共振成像(MRI)。此外,还提出了一种新的合成方法,即 Au 双种子法,用于在 FePt/SiO2 核周围制备 Au 纳米壳。首次在 FePt/SiO2/Au NPs 的水悬浮液中证明了光热和 MRI 响应。在体外,在正常(NPU)和半分化癌细胞系(RT4)上评估了杂化 NPs 的细胞毒性以及内化机制和细胞内命运。对照样品以及用 NPs 孵育的正常细胞系在体外光热治疗过程中(ΔT < 0.8 °C)未显示出明显的升温,因此细胞活力仍然很高(约 90%)。相比之下,由于癌细胞系 RT4 对 NP 的高摄取,观察到样品的显著加热(ΔT = 4 °C),因此在激光照射后细胞活力显著下降至约 60%。这些结果进一步证实,本工作范围内开发的杂化 FePt/SiO2/Au NPs 不仅高效,而且具有高度选择性的光热剂。此外,体外 MRI 实验清楚地证明了对比度的提高和健康组织与癌症组织之间的更容易区分,证明了杂化 NPs 具有作为造影剂的优异潜力。