Department of Chemical Sciences, University of Padova, Via Marzolo 1, 31033, Padova, Italy.
Nanoscale. 2018 Jan 18;10(3):976-984. doi: 10.1039/c7nr07844g.
Magneto-plasmonic nanostructures functionalized with cell targeting units are of great interest for nanobiotechnology applications. Photothermal treatment of cells targeted with antibody functionalized nanostructures and followed by magnetic isolation, allows killing selected cells and hence is one of the applications of great interest. The magneto-plasmonic nanostructures reported herein were synthesized using naked gold and magnetite nanoparticles obtained through a green approach based on laser ablation of bulk materials in water. These particles do not need purifications steps for biocompatibility and are functionalized with a SERRS (surface enhanced resonance Raman scattering) active molecule for detection and with an antibody for targeting prostate tumor cells. Quantitative results for the cell targeting and selection efficiency show an overall accuracy of 94% at picomolar concentrations. The photothermal treatment efficiently kills targeted and magneto-selected cells producing a viability below 5% after 3 min of irradiation, compared with almost 100% viability of incubated and irradiated, but non targeted cells.
功能化有细胞靶向单元的磁等离子体纳米结构在纳米生物技术应用中非常重要。用抗体功能化纳米结构靶向的细胞的光热处理,然后进行磁性分离,允许杀死选定的细胞,因此是非常有应用前景的方法之一。本文报道的磁等离子体纳米结构是通过基于块状材料在水中的激光烧蚀的绿色方法合成的裸金和磁铁矿纳米粒子。这些粒子不需要进行生物相容性的纯化步骤,并且用表面增强共振拉曼散射(SERRS)活性分子进行功能化,用于检测,并用抗体进行前列腺肿瘤细胞的靶向。细胞靶向和选择效率的定量结果表明,在皮摩尔浓度下的总体准确性为 94%。光热处理有效地杀死了靶向和磁选的细胞,在 3 分钟的照射后,其存活率低于 5%,而孵育和照射但非靶向的细胞的存活率几乎为 100%。