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首页> 外文期刊>Biomacromolecules >Enhanced Biocompatibility and Biostability of CdTe Quantum Dots by Facile Surface-Initiated Dendritic Polymerization
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Enhanced Biocompatibility and Biostability of CdTe Quantum Dots by Facile Surface-Initiated Dendritic Polymerization

机译:易于表面引发的树枝状聚合反应增强CdTe量子点的生物相容性和生物稳定性

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The synthesis of stable, low toxic, multifunctional, and water-soluble quantum dots (QDs) is of crucial importance for nanobiotechnology. An in situ anionic ring-opening polymerization strategy was successfully employed to grow multihydroxyl hyperbranched polyglycerol (HPG) from surfaces of aqueous synthesized QDs directly, affording multifunctional CdTe@HPG nanohybrids. The grafted HPG content can be adjusted from about 25 to 80 wt % by manipulating the feed ratio of glycidol monomer to QDs. The resultant CdTe@HPGs still show strong fluorescence and well water-solubility, and can conjugate functional biomolecules (e.g., amino acids) with their multiple reactive hydroxyls. Cytotoxicity measurements reveal that the CdTe@HPGs are much less toxic than the pristine QDs in human lung cancer cells SPCAI and more grafted HPG leads to less toxicity, due to the envelope of biocompatible HPG on QDs. It was found that the pristine QDs were unstable and their fluorescence decreased greatly or was even completed quenched after 24 h in SPCAI cells, whereas the QD@HPGs still exhibited strong fluorescence. This report opens the door for using in situ controlled/living polymerization to tailor QDs with biocompatible dendritic polymers readily and casts a light for obtaining robust nontoxic functionalized QDs and applying them in vitro and in vivo.
机译:稳定,低毒,多功能和水溶性量子点(QD)的合成对于纳米生物技术至关重要。成功地采用原位阴离子开环聚合策略从水性合成QDs的表面直接生长多羟基超支化聚甘油(HPG),从而提供多功能的CdTe @ HPG纳米杂化物。通过控制缩水甘油单体与QD的进料比,可以将接枝的HPG含量调节为约25至80重量%。所得的CdTe @ HPG仍然显示出强荧光和良好的水溶性,并且可以使功能性生物分子(例如氨基酸)与它们的多个反应性羟基结合。细胞毒性测量显示,在人肺癌细胞SPCAI中,CdTe @ HPG的毒性远低于原始QD,而由于QD上具有生物相容性HPG,因此嫁接的HPG导致的毒性更低。发现原始的QDs不稳定,其荧光在SPCAI细胞中24小时后大大降低,甚至完全淬灭,而QD @ HPGs仍然显示强荧光。该报告为使用原位控制/活性聚合轻松定制具有生物相容性树突状聚合物的量子点打开了大门,并为获得强大的无毒功能化量子点并在体外和体内应用提供了希望。

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