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HERO ID
6410336
Reference Type
Journal Article
Title
In vivo NIR fluorescence imaging, biodistribution, and toxicology of photoluminescent carbon dots produced from carbon nanotubes and graphite
Author(s)
Tao, H; Yang, K; Ma, Z; Wan, J; Zhang, Y; Kang, Z; Liu, Z
Year
2012
Is Peer Reviewed?
1
Journal
Small
ISSN:
1613-6810
EISSN:
1613-6829
Volume
8
Issue
2
Page Numbers
281-290
Language
English
PMID
22095931
DOI
10.1002/smll.201101706
URL
http://doi.wiley.com/10.1002/smll.201101706
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Abstract
Oxidization of carbon nanotubes by a mixed acid has been utilized as a standard method to functionalize carbon nanomaterials for years. Here, the products obtained from carbon nanotubes and graphite after a mixed-acid treatment are carefully studied. Nearly identical carbon dot (Cdot) products with diameters of 3-4 nm are produced using this approach from a variety of carbon starting materials, including single-walled carbon nanotubes, multiwalled carbon nanotubes, and graphite. These Cdots exhibit strong yellow fluorescence under UV irradiation and shifted emission peaks as the excitation wavelength is changed. In vivo fluorescence imaging with Cdots is then demonstrated in mouse experiments, by using varied excitation wavelengths including some in the near-infrared (NIR) region. Furthermore, in vivo biodistribution and toxicology of those Cdots in mice over different periods of time are studied; no noticeable signs of toxicity for Cdots to the treated animals are discovered. This work provides a facile method to synthesize Cdots as safe non-heavy-metal-containing fluorescent nanoprobes, promising for applications in biomedical imaging.
Keywords
; Animals; Diagnostic Imaging; Female; Fluorescence; Graphite; HEK293 Cells; Humans; Iodine Radioisotopes/pharmacokinetics; Mice; Mice; Inbred BALB C; Mice; Nude; Microscopy; Atomic Force; Nanotechnology; Nanotubes; Carbon; Quantum Dots/chemistry; Quantum Dots/metabolism; Quantum Dots/toxicity; Spectroscopy; Near-Infrared; Tissue Distribution; Index Medicus/
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