Research Center of Nano Science and Technology, and School of Material Science and Engineering, Shanghai University, Shanghai 200444, P. R. China.
Nanoscale. 2015 Sep 7;7(33):13877-87. doi: 10.1039/c5nr04006j.
We have constructed a multifunctional nanoprobe with sensing and imaging properties by using hollow mesoporous silica coated upconversion nanoparticles (UCNPs) and Hg(2+) responsive ruthenium (Ru) complex. The Ru complex was loaded into the hollow mesoporous silica and the UCNPs acted as an energy donor, transferring luminescence energy to the Ru complex. Furthermore, polyethylenimine (PEI) was assembled on the surface of mesoporous silica to achieve better hydrophilic and bio-compatibility. Upon addition of Hg(2+), a blue shift of the absorption peak of the Ru complex is observed and the energy transfer process between the UCNPs and the Ru complex was blocked, resulting in an increase of the green emission intensity of the UCNPs. The un-changed 801 nm emission of the nanoprobe was used as an internal standard reference and the detection limit of Hg(2+) was determined to be 0.16 μM for this nanoprobe in aqueous solution. In addition, based on the low cytotoxicity as studied by CCK-8 assay, the nanoprobe was successfully applied for cell imaging and small animal imaging. Furthermore, when doped with Gd(3+) ions, the nanoprobe was successfully applied to in vivo magnetic resonance imaging (MRI) of Kunming mice, which demonstrates its potential as a MRI positive-contrast agent. Therefore, the method and results may provide more exciting opportunities to afford nanoprobes with multimodal bioimaging and multifunctional applications.
我们构建了一种具有传感和成像性能的多功能纳米探针,该探针使用中空介孔硅包覆的上转换纳米粒子(UCNPs)和对 Hg(2+) 有响应的钌(Ru)配合物。Ru 配合物被载入中空介孔硅中,UCNPs 作为能量供体,将发光能量转移到 Ru 配合物上。此外,聚乙二胺(PEI)被组装到介孔硅的表面,以获得更好的亲水性和生物相容性。加入 Hg(2+)后,观察到 Ru 配合物的吸收峰发生蓝移,并且 UCNPs 和 Ru 配合物之间的能量转移过程被阻断,导致 UCNPs 的绿色发射强度增加。未改变的纳米探针的 801nm 发射用作内部标准参考,并且确定该纳米探针在水溶液中的 Hg(2+)检测限为 0.16 μM。此外,基于 CCK-8 测定研究的低细胞毒性,成功地将纳米探针应用于细胞成像和小动物成像。此外,当掺杂 Gd(3+)离子时,纳米探针成功地应用于昆明小鼠的体内磁共振成像(MRI),这表明其作为 MRI 正对比剂的潜力。因此,该方法和结果可能为多功能生物成像和多功能应用的纳米探针提供更多令人兴奋的机会。