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Ultrasmall and photostable nanotheranostic agents based on carbon quantum dots passivated with polyamine-containing organosilane molecules

机译:超和photostable nanotheranostic代理基于碳量子点钝化polyamine-containing有机硅烷分子

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摘要

In this work, we demonstrate that ultrasmall, photostable and multifunctional carbon quantum dots (or carbon dots, CDs) passivated with polyamine-containing organosilane molecules can realize simultaneous cell imaging and anticancer drug delivery. The presence of abundant surface amine groups makes these CDs be able to covalently link with the anticancer drug, doxorubicin (DOX), with an extremely high drug loading capacity (62.8%), while the surface hydroxyl groups ensure the good water-dispersibility of the CDs-DOX. Besides the use as a drug carrier, the fluorescent CDs also enable the dynamic tracing of the drug release process. When the CDs-DOX complexes were internalized by the human breast cancer cells (MCF-7), DOX could gradually detach from the surface of CDs and enter into the cell nucleus, while the CDs themselves still resided in the cytoplasm. In addition, the in vivo experiments showed that the CDs-DOX complexes exhibited a better tumor inhibition performance than free DOX molecules, which may be ascribed to the prolonged drug accumulation in tumor tissues. Furthermore, the as-synthesized CDs also exhibited negligible cytotoxicity/systemic side effects, and could successfully illuminate mammalian, bacterial and fungal cells, making them good candidates as not only drug delivery vehicles but also universal cell imaging reagents. The present work may have implications for the fabrication of functional carbon-based nanomaterials and foster the development of carbon dots as novel nanotheranostics for various biomedical applications.
机译:在这项工作中,我们证明超小,photostable和多功能碳量子点(或碳点、cd)钝化polyamine-containing有机硅烷分子可以实现同步细胞成像和抗癌药物输送。使得这些cd能够胺组共价连接的抗癌药物,阿霉素(阿霉素),具有极高的药物承载能力(62.8%),而表面羟基确保良好water-dispersibility CDs-DOX。作为药物载体、荧光cd使药物释放的动态跟踪的过程。由人类乳腺癌细胞内化(MCF-7)、阿霉素可以逐渐脱离cd和表面进入细胞核,虽然CDs本身仍然居住细胞质。表明CDs-DOX复合物表现出一个比免费更好的肿瘤抑制性能阿霉素分子,这可能归因于长时间药物在肿瘤组织中积累。as-synthesized cd也表现出可以忽略不计细胞毒性/系统性副作用,可以成功地阐释哺乳动物,细菌和真菌细胞,使它们好的候选人只有药物运载工具也是普遍存在的细胞成像试剂。影响功能的制造碳基纳米材料和培养碳点作为小说的发展nanotheranostics为各种生物医学应用程序。

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