Nifontova Galina, Zvaigzne Maria, Baryshnikova Maria, Korostylev Evgeny, Ramos-Gomes Fernanda, Alves Frauke, Nabiev Igor, Sukhanova Alyona
Laboratory of Nano-Bioengineering, National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Kashirskoye Shosse 31, Moscow, Russian Federation, 115409.
N.N. Blokhin National Medical Research Center of Oncology, Kashirskoye Shosse 24, Moscow, Russian Federation, 115478.
Nanoscale Res Lett. 2018 Jan 25;13(1):30. doi: 10.1186/s11671-018-2447-z.
Fabrication of polyelectrolyte microcapsules and their use as carriers of drugs, fluorescent labels, and metal nanoparticles is a promising approach to designing theranostic agents. Semiconductor quantum dots (QDs) are characterized by extremely high brightness and photostability that make them attractive fluorescent labels for visualization of intracellular penetration and delivery of such microcapsules. Here, we describe an approach to design, fabricate, and characterize physico-chemical and functional properties of polyelectrolyte microcapsules encoded with water-solubilized and stabilized with three-functional polyethylene glycol derivatives core/shell QDs. Developed microcapsules were characterized by dynamic light scattering, electrophoretic mobility, scanning electronic microscopy, and fluorescence and confocal microscopy approaches, providing exact data on their size distribution, surface charge, morphological, and optical characteristics. The fluorescence lifetimes of the QD-encoded microcapsules were also measured, and their dependence on time after preparation of the microcapsules was evaluated. The optimal content of QDs used for encoding procedure providing the optimal fluorescence properties of the encoded microcapsules was determined. Finally, the intracellular microcapsule uptake by murine macrophages was demonstrated, thus confirming the possibility of efficient use of developed system for live cell imaging and visualization of microcapsule transportation and delivery within the living cells.
聚电解质微胶囊的制备及其作为药物、荧光标记物和金属纳米颗粒载体的应用是设计治疗诊断剂的一种很有前景的方法。半导体量子点(QDs)具有极高的亮度和光稳定性,这使其成为用于可视化此类微胶囊细胞内渗透和递送的有吸引力的荧光标记物。在此,我们描述了一种设计、制备和表征用三功能聚乙二醇衍生物核/壳量子点进行水溶和稳定化编码的聚电解质微胶囊的物理化学和功能特性的方法。所开发的微胶囊通过动态光散射、电泳迁移率、扫描电子显微镜以及荧光和共聚焦显微镜方法进行表征,提供了有关其尺寸分布、表面电荷、形态和光学特性的确切数据。还测量了量子点编码微胶囊的荧光寿命,并评估了其对微胶囊制备后时间的依赖性。确定了用于编码过程的量子点的最佳含量,以提供编码微胶囊的最佳荧光特性。最后,证明了小鼠巨噬细胞对细胞内微胶囊的摄取,从而证实了有效利用所开发系统进行活细胞成像以及可视化微胶囊在活细胞内运输和递送的可能性。