2014
DOI: 10.1002/adma.201306192
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Integrating Oxaliplatin with Highly Luminescent Carbon Dots: An Unprecedented Theranostic Agent for Personalized Medicine

Abstract: A theranostic nanomedicine (CD-Oxa) is synthesized by means of the condensation reaction between the amino groups on the surface of fluorescent carbon dots (CDs) and the carboxyl group of the oxaliplatin derivative Oxa(IV)-COOH. CD-Oxa, which integrates the optical properties of CDs and the anticancer function of oxaliplatin, could be used for simultaneous drug delivery and fluorescent tracking.

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Cited by 519 publications
(312 citation statements)
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“…Of the carbon-family members, sp 2 carbon-based materials such as fullerene [4,5], carbon nanotubes [1,[6][7][8][9][10][11], carbon dots [12][13][14], and graphene [15][16][17][18], have been explored for promising applications in biomedicine, including drug delivery, gene transfection, photothermal therapy, photodynamic therapy, biosensing, and even tissue engineering [19][20][21]. For instance, the hollow space in fullerene/carbon nanotubes and large surface-to-volume ratio of graphene can be used for the encapsulation and intracellular delivery of therapeutic agents.…”
Section: Introductionmentioning
confidence: 99%
“…Of the carbon-family members, sp 2 carbon-based materials such as fullerene [4,5], carbon nanotubes [1,[6][7][8][9][10][11], carbon dots [12][13][14], and graphene [15][16][17][18], have been explored for promising applications in biomedicine, including drug delivery, gene transfection, photothermal therapy, photodynamic therapy, biosensing, and even tissue engineering [19][20][21]. For instance, the hollow space in fullerene/carbon nanotubes and large surface-to-volume ratio of graphene can be used for the encapsulation and intracellular delivery of therapeutic agents.…”
Section: Introductionmentioning
confidence: 99%
“…Luminescent carbon dots (CDs) have recently emerged as light‐emitting nanomaterials with a high PLQY, high photostability, excellent biocompatibility, and low toxicity, which can be easily produced by both top‐down and bottom‐up chemical synthesis methods with low cost;5 all this endow them distinct benefits for bioimaging6 and lighting applications 7. Compared with rare‐earth phosphors, CDs have much shorter luminescence lifetimes of just a few nanoseconds, which make them potential candidate as color converter for high modulation bandwidth in VLC.…”
mentioning
confidence: 99%
“…Wyniki uzyskane in vitro wskazują na doskonałą biokompatybilność takich kompleksów, aktywność przeciwnowotworową oraz możliwość ich śledzenia w komórkach. Z kolei wyniki badań in vivo potwierdzają możliwość śledzenia dystrybucji leku poprzez monitorowanie fluorescencji kompleksów CD-Oxa podanych systemowo myszom [53].…”
Section: Zastosowanie Kropek Kwantowych W Biologii I Medycynieunclassified