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首页> 外文期刊>Chemical engineering journal >Facile preparation of fluorescent nanodiamond-based polymer composites through a metal-free photo-initiated RAFT process and their cellular imaging
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Facile preparation of fluorescent nanodiamond-based polymer composites through a metal-free photo-initiated RAFT process and their cellular imaging

机译:通过无金属光引发的筏法及其蜂窝成像制备荧光纳米胺基聚合物复合材料

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Nanodiamond (ND)-based fluorescent probes have been extensively researched in cell imaging applications. Several outstanding properties of fluorescent NDs (FNDs), such as their excellent biocompatibility, intensive fluorescence and chemical stability in organisms, have made them the most promising carbon materials in biomedicine. However, the production of FNDs with nitrogen-vacancy defect centers was rather complicated and costly, which limited their wide application in the biomedical field. Moreover, the particle size of these types of FNDs was much larger than that of NDs produced by the detonation method; thus, it is difficult for them to penetrate the cell membrane. In this present work, a facile and ultrafast photo-initiated reversible addition-fragmentation chain transfer (RAFT) polymerization was introduced for the fabrication of FND-based polymer composites. The photo-initiated RAFT polymerization is time saving, environmentally friendly and highly efficient. To prepare these FNDs, fluorescein was converted into diacryloyl fluorescein (AcFl), which was used not only as the photocatalyst but also a fluorescent comonomer. The functional monomer 2-methacryloyloxyethyl phosphorylcholine (MPC) was introduced to improve the water dispersibility of the FNDs. The successful fabrication of FNDs-polyMPC composites was proven by a series of characterization methods. These FNDs-polyMPC composites show high water dispersibility, strong fluorescence and low toxicity. The cell uptake behavior suggested that FNDs-polyMPC composites can be facilely internalized by cells. Taken together, FNDs-polyMPC composites can be fabricated by a photo-initiated RAFT polymerization. These FNDs-polyMPC composites possess excellent physicochemical and biological properties and are promising candidates for cell imaging applications.
机译:在细胞成像应用中广泛研究了纳米二胺(ND)的荧光探针。荧光NDS(FNDS)的几种突出性质,例如它们具有优异的生物相容性,密集荧光和生物中的化学稳定性,使其成为生物医学中最有前途的碳材料。然而,具有氮气空位缺陷中心的FNDS的生产相当复杂且昂贵,这限制了它们在生物医学领域的广泛应用。此外,这些类型的Fnds的粒度远大于通过爆炸方法产生的ND的粒度;因此,它们难以穿透细胞膜。在本工作中,引入了一种容易和超快的光发起的可逆添加 - 片转移(筏)聚合用于制备Fnd基聚合物复合材料。光发起的筏聚合是节省时间,环保且高效。为了制备这些Fnds,荧光素被转化为DiaCryloyl荧光素(ACFL),其不仅是光催化剂,而且使用荧光共聚单体。引入功能性单体2-甲基丙烯酰氧基乙基磷素(MPC)以改善FNDS的水分散性。通过一系列表征方法证明了FNDS-PolymPC复合材料的成功制造。这些Fnds-polympc复合材料显示出高水分散性,强荧光和低毒性。细胞吸收行为表明​​FNDS-PolymPC复合材料可以通过细胞施化。连合起来,可以通过光引发的筏聚合来制造FNDS-PolymPC复合材料。这些Fnds-polympc复合材料具有优异的物理化学和生物学特性,并且是用于细胞成像应用的候选者。

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