Makromolekulare Chemie II and Bayreuther Zentrum fur Kolloide und Grenzflachen, Universitat Bayreuth, Germany.
Biomacromolecules. 2010 Feb 8;11(2):390-6. doi: 10.1021/bm901099p.
We report a general and facile approach for the fabrication of a new class of near monodisperse hybrid nanoparticles via RAFT polymerization and self-assembly in water. Furthermore, we combine a fluorescent inorganic silica core with a biocompatible polymer shell and a terminal unit susceptible to facile conjugations via click chemistry. A tailoring of the weight fractions of both components allows a tuning of the size of the formed aggregates. Fluorescent properties and the crosslinking into an organic-inorganic hybrid network are realized by copolymerizing a dye-functionalized monomer 1-pyrenebutyl acrylate and a trimethoxysilane-carrying one, (3-acryloxypropyl)trimethoxysilane. The potential of these stabilized and fluorescent nanoparticles as biocompatible carriers for intracellular delivery is demonstrated via in vitro experiments on lung cancer cells.
我们通过 RAFT 聚合和在水中自组装,报告了一种通用且简便的方法来制备新型近单分散杂化纳米粒子。此外,我们将荧光无机硅核与生物相容性聚合物壳和通过点击化学易于偶联的末端单元结合在一起。通过调整两种组分的重量分数,可以调节形成的聚集体的尺寸。通过共聚染料功能化单体 1-芘丁基丙烯酸酯和带有三甲氧基硅烷的单体(3-丙烯酰氧基丙基)三甲氧基硅烷,实现了荧光性质和交联成有机-无机杂化网络。通过在肺癌细胞上进行的体外实验,证明了这些稳定且荧光纳米粒子作为细胞内递药的生物相容载体的潜力。