Department of Chemical and Biomolecular Engineering, National University of Singapore, 117576, Singapore.
Small. 2012 Nov 19;8(22):3523-30. doi: 10.1002/smll.201201216. Epub 2012 Aug 15.
Herein is reported the synthesis of gadolinium ion (Gd(III))-chelated hyperbranched conjugated polyelectrolyte (HCPE-Gd) and its application in fluorescence and magnetic resonance (MR) dual imaging in live animals. The synthesized HCPE-Gd forms nanospheres with an average diameter of ∼42 nm measured by laser light scattering and a quantum yield of 10% in aqueous solution. The absorption spectrum of HCPE-Gd has two maxima at 318 and 417 nm, and its photoluminescence maximum centers at 591 nm. Confocal laser scanning microscopy studies indicate that the HCPE-Gd is internalized in MCF-7 cancer cell cytoplasm with good photostability and low cytotoxicity. Further fluorescence and MR imaging studies on hepatoma H22 tumor-bearing mouse model reveal that HCPE-Gd can serve as an efficient optical/MR dual-modal imaging nanoprobe for in vivo cancer diagnosis.
本文报道了镧系金属离子(Gd(III))螯合超支化共轭聚合物电解质(HCPE-Gd)的合成及其在活体动物荧光和磁共振(MR)双重成像中的应用。合成的 HCPE-Gd 形成纳米球,平均直径约为 42nm,激光光散射测量,在水溶液中的量子产率为 10%。HCPE-Gd 的吸收光谱在 318nm 和 417nm 处有两个最大值,其光致发光最大中心在 591nm 处。共焦激光扫描显微镜研究表明,HCPE-Gd 被内化在 MCF-7 癌细胞细胞质中,具有良好的光稳定性和低细胞毒性。进一步对肝癌 H22 荷瘤小鼠模型的荧光和磁共振成像研究表明,HCPE-Gd 可以作为一种高效的光学/MR 双模式成像纳米探针,用于体内癌症诊断。