用于生物医学应用的荧光单分散爆轰纳米金刚石。

Fluorescent single-digit detonation nanodiamond for biomedical applications.

机构信息

Adámas Nanotechnologies, Inc., 8100 Brownleigh Dr, Suite 120, Raleigh, NC 27617, United States of America.

出版信息

Methods Appl Fluoresc. 2018 May 9;6(3):035010. doi: 10.1088/2050-6120/aac0c8.

Abstract

Detonation nanodiamonds (DNDs) have emerged as promising candidates for a variety of biomedical applications, thanks to different physicochemical and biological properties, such as small size and reactive surfaces. In this study, we propose carbon dot decorated single digit (4-5 nm diameter) primary particles of detonation nanodiamond as promising fluorescent probes. Due to their intrinsic fluorescence originating from tiny (1-2 atomic layer thickness) carbonaceous structures on their surfaces, they exhibit brightness suitable for in vitro imaging. Moreover, this material offers a unique, cost effective alternative to sub-10 nm nanodiamonds containing fluorescent nitrogen-vacancy color centers, which have not yet been produced at large scale. In this paper, carbon dot decorated nanodiamonds are characterized by several analytical techniques. In addition, the efficient cellular uptake and fluorescence of these particles are observed in vitro on MDA-MD-231 breast cancer cells by means of confocal imaging. Finally, the in vivo biocompatibility of carbon dot decorated nanodiamonds is demonstrated in zebrafish during the development. Our results indicate the potential of single-digit detonation nanodiamonds as biocompatible fluorescent probes. This unique material will find application in correlative light and electron microscopy, where small sized NDs can be attached to antibodies to act as a suitable dual marker for intracellular correlative microscopy of biomolecules.

摘要

爆轰纳米金刚石(DND)由于具有小尺寸和反应性表面等不同的物理化学和生物学特性,已成为各种生物医学应用的有前途的候选物。在这项研究中,我们提出了由爆轰纳米金刚石的单分散(4-5nm 直径)初级颗粒组成的碳点修饰的纳米金刚石作为有前途的荧光探针。由于其表面存在微小的(1-2 原子层厚度)碳质结构,它们具有适合体外成像的亮度。此外,与尚未大规模生产的含有荧光氮空位色心的亚 10nm 纳米金刚石相比,这种材料提供了一种独特且具有成本效益的替代方案。在本文中,通过几种分析技术对碳点修饰的纳米金刚石进行了表征。此外,通过共聚焦成像观察到这些颗粒在 MDA-MD-231 乳腺癌细胞中的体外高效细胞摄取和荧光。最后,在斑马鱼发育过程中证明了碳点修饰的纳米金刚石的体内生物相容性。我们的结果表明,单分散爆轰纳米金刚石作为生物相容荧光探针的潜力。这种独特的材料将在相关的光镜和电镜中找到应用,其中可以将小尺寸的 NDs 附着到抗体上,作为生物分子的细胞内相关显微镜的合适双重标记物。

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