Department of Chemistry, University of Miami, 1301 Memorial Drive, Coral Gables, Florida 33146-0431, USA.
Langmuir. 2010 Jul 6;26(13):11503-11. doi: 10.1021/la1010488.
We synthesized macromolecular ligands for CdSe-ZnS core-shell quantum dots incorporating multiple thiol groups, poly(ethylene glycol) chains, and either carboxylic acids or primary amines along a common poly(methacrylate) backbone. The thiol groups encourage the adsorption of these macromolecular constructs on the ZnS shell of the nanoparticles, and the poly(ethylene glycol) chains impose hydrophilic character on the resulting assemblies. Indeed, the coated quantum dots are readily soluble in water and are stable under these conditions for months over a broad pH range (4.0-12.0) and even in the presence of large salt concentrations. In addition, these nanoparticles have relatively small hydrodynamic diameters (17-30 nm) and good quantum yields (0.3-0.4). Furthermore, the pendant carboxylic acids or primary amines of the macromolecular ligands can be exploited to modify the quantum dots after the adsorption of the polymers on their surface. For example, boron dipyrromethene dyes can be connected to the hydrophilic quantum dots on the basis of amide bond formation to encourage the transfer of energy from the luminescent CdSe core to the organic dyes. Our hydrophilic nanoparticles can also cross the membrane of Chinese hamster ovarian cells and accumulate in the cytosol with limited nuclear localization. Moreover, the internalized quantum dots are not cytotoxic and have essentially no influence on cell viability. Thus, our strategy for the preparation of biocompatible quantum dots can evolve into the development of valuable luminescent probes with nanoscaled dimensions and optimal photophysical properties for a diversity of biomedical applications.
我们合成了将多个硫醇基团、聚乙二醇链和羧酸或伯胺结合在共同的聚(甲基丙烯酸酯)主链上的用于 CdSe-ZnS 核壳量子点的大分子配体。硫醇基团促进这些大分子结构吸附在纳米粒子的 ZnS 壳上,而聚乙二醇链使所得组装体具有亲水性。事实上,涂层量子点在水中很容易溶解,并且在很宽的 pH 范围(4.0-12.0)和甚至在存在大盐浓度的情况下,在数月内都保持稳定。此外,这些纳米粒子具有相对较小的流体力学直径(17-30nm)和良好的量子产率(0.3-0.4)。此外,大分子配体上的侧接羧酸或伯胺可在聚合物吸附在其表面后用于修饰量子点。例如,硼二吡咯甲川染料可以基于酰胺键形成连接到亲水性量子点上,以鼓励从发光 CdSe 核到有机染料的能量转移。我们的亲水性纳米粒子还可以穿过中国仓鼠卵巢细胞的膜,并在细胞质中积累,核定位有限。此外,内化的量子点没有细胞毒性,对细胞活力几乎没有影响。因此,我们制备生物相容性量子点的策略可以发展成为具有纳米尺寸和最佳光物理性质的有价值的发光探针,用于多种生物医学应用。