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Polycation-functionalized gold nanodots with tunable near-infrared fluorescence for simultaneous gene delivery and cell imaging

机译:聚阳离子官能化的金纳米点具有可调的近红外荧光,可同时进行基因传递和细胞成像

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摘要

Near-infrared (NIR) fluorescent metal nanodots may have significant advantages in biological detection and bioimaging. Herein, we introduce tunable near-infrared fluorescent gold nanodots (AuNDs) protected by branched polyethylenimine (PEI) modified by surface segmental attachment of sulfhydryl groups (PEI-SH), abbreviated as PEI-SH-AuNDs, for simultaneous gene delivery and cell imaging. The modified PEI endows the resultant PEI-SH-AuNDs with the following excellent advantages. Sulfhydryl groups of PEI-SH anchor to the surface of AuNDs, and such polycations with amine groups give PEI-SH-AuNDs remarkable stability. The cationic polymer PEI-SH with positive charges enables PEI-SH-AuNDs to perform gene delivery, and the gene transfection efficiency can reach 22.8%. Moreover, the fluorescence of PEI-SH-AuNDs is tunable from visible red light (wavelength 609 nm) to NIR light (wavelength 811 nm) via an increase in the size of AuNDs. PEI-SH-AuNDs yielded gene transfection efficiency similar to that of commercial PEI, but showed much lower cytotoxicity and much greater red-shift fluorescence. With excellent photoluminescent properties, such multifunctional fluorescent PEI-SH-AuNDs hold promise in applications to bioimaging and as ideal fluorescent probes for tracking gene transfection behavior.
机译:近红外(NIR)荧光金属纳米点在生物检测和生物成像方面可能具有显着优势。在这里,我们介绍由巯基(PEI-SH)的表面片段连接修饰的支化聚乙烯亚胺(PEI)保护的可调近红外荧光金纳米点(AuNDs),缩写为PEI-SH-AuNDs,用于同时基因传递和细胞成像。改性的PEI赋予所得的PEI-SH-AuNDs以下优异的优点。 PEI-SH的巯基固定在AuNDs的表面上,而这种带有胺基的聚阳离子使PEI-SH-AuNDs具有出色的稳定性。带有正电荷的阳离子聚合物PEI-SH使PEI-SH-AuNDs能够进行基因传递,基因转染效率可达到22.8%。此外,PEI-SH-AuNDs的荧光可通过增加AuNDs的尺寸从可见红光(波长609 nm)变为NIR光(波长811 nm)。 PEI-SH-AuNDs产生的基因转染效率与商业PEI相似,但显示出更低的细胞毒性和更大的红移荧光。此类多功能荧光PEI-SH-AuND具有出色的光致发光特性,在生物成像中具有广阔的应用前景,可作为追踪基因转染行为的理想荧光探针。

著录项

  • 来源
    《纳米研究(英文版)》 |2018年第5期|2392-2404|共13页
  • 作者单位

    State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, China;

    State Key Laboratory of Heavy Oil Processing, College of Science, China University of Petroleum, Beijing 102249, China;

    School of Stomatology, Jilin University, Changchun 130041, China;

    State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, China;

    State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, China;

    School of Stomatology, Jilin University, Changchun 130041, China;

    School of Stomatology, Jilin University, Changchun 130041, China;

    Institute of New Energy Technology, Ningbo Institute of Industrial Technology, Chinese Academy of Sciences, Ningbo 315201, China;

    State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, China;

    State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-19 03:47:26
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