Nehilla Barrett J, Allen Philip G, Desai Tejal A
Department of Biomedical Engineering, Boston University, 44 Cummington Street, Boston, Massachusetts 02215, USA.
ACS Nano. 2008 Mar;2(3):538-44. doi: 10.1021/nn700281b.
Nanoprecipitation was utilized to synthesize biodegradable and surfactant-free nanoparticles loaded with quantum dots. This protocol also yielded nanoparticles coloaded with both quantum dots and hydrophobic drug (Coenzyme Q10) molecules. Importantly, even though surfactants were not utilized during the nanoprecipitation procedure, these loaded nanoparticles did not aggregate. Dialysis efficiently removed unencapsulated quantum dots from nanoparticle suspensions without altering the physical properties of the quantum-dot-loaded nanoparticles. The resultant purified, quantum-dot-loaded nanoparticles were biocompatible in differentiated PC12 cell cultures, which facilitated their use as nanoparticles in microscopy. In fact, confocal imaging studies showed that purified, quantum-dot-loaded nanoparticles were associated with PC12 cells after one day in vitro. These novel and multifunctional coloaded nanoparticles may prove advantageous in future simultaneous drug delivery and imaging applications.
采用纳米沉淀法合成了负载量子点的可生物降解且不含表面活性剂的纳米颗粒。该方案还制备出了同时负载量子点和疏水性药物(辅酶Q10)分子的纳米颗粒。重要的是,尽管在纳米沉淀过程中未使用表面活性剂,但这些负载型纳米颗粒并未聚集。透析可有效去除纳米颗粒悬浮液中未包封的量子点,且不会改变负载量子点的纳米颗粒的物理性质。所得纯化的负载量子点的纳米颗粒在分化的PC12细胞培养物中具有生物相容性,这便于它们在显微镜检查中用作纳米颗粒。事实上,共聚焦成像研究表明,纯化的负载量子点的纳米颗粒在体外培养一天后与PC12细胞相关联。这些新型多功能共负载纳米颗粒在未来的同步药物递送和成像应用中可能具有优势。