4.7 Article

Bioorthogonal Copper Free Click Chemistry for Labeling and Tracking of Chondrocytes In Vivo

期刊

BIOCONJUGATE CHEMISTRY
卷 27, 期 4, 页码 927-936

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.bioconjchem.6b00010

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资金

  1. Development of High Medical Technology Project of KHIDI [HI14C2755]
  2. Global Research Laboratory Project of KNRF [NRF-2013K1A1A2A02050115]
  3. KIST Intramural project of Theranosis, Korea

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Establishment of an appropriate cell labeling and tracking method is essential for the development of cell-based therapeutic strategies. Here, we are introducing a new method for cell labeling and tracking by combining metabolic gylcoengineering and bioorthogonal copper-free Click chemistry. First, chondrocytes were treated with tetraacetylated N-azidoacetyl-D-mannosamine (Ac(4)ManNAz) to generate unnatural azide groups (-N-3) on the surface of the cells. Subsequently, the unnatural azide groups on the cell surface were specifically conjugated with near-infrared fluorescent (NIRF) dye-tagged dibenzyl cyclooctyne (DBCO-650) through bioorthogonal copper-free Click chemistry. Importantly, DBCO-650-labeled chondrocytes presented strong NIRF signals with relatively low cytotoxicity and the amounts of azide groups and DBCO-650 could be easily controlled by feeding different amounts of Ac4ManNAz and DBCO-650 to the cell culture system. For the in vivo cell tracking, DBCO-650-labeled chondrocytes (1 x 10(6) cells) seeded on the 3D scaffold were subcutaneously implanted into mice and the transplanted DBCO-650-labeled chondrocytes could be effectively tracked in the prolonged time period of 4 weeks using NIRF imaging technology. Furthermore, this new cell labeling and tracking technology had minimal effect on cartilage formation in vivo.

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