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LuminX Tracking Kit/细胞示踪试剂盒

LuminX Tracking Kit/细胞示踪试剂盒

产品品牌 产品编号 规格 单价 货期 mucode 选择
LuminX Botech LTK1001-1 1 mL/盒 4146.00 3~4周
LuminX Botech LTK1002-1 1 mL/盒 4146.00 3~4周
LuminX Botech LTK1003-1 1 mL/盒 0.00 3~4周
LuminX Botech LTK104-1 1 mL/盒 4146.00 3~4周
LuminX Botech LTK1005-1 1 mL/盒 0.00 3~4周
LuminX Botech LTK1006-1 1 mL/盒 0.00 3~4周
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产品应用

Tracking the movement and location of living cells both in vitro and in vivo is of importance in various branches of life sciences. Particularly in stem cell research, robust and reliable tracking of transplanted cells is essential towards detailed understanding of their development, fate, and contribution to regenerating tissues. LuminX Tracking Kit(LTK) is designed to serve the purpose.

 

Current methods used to fluorescently tag cells have been limited by short-term signal duration, auto-fluorescence background and manipulations of fluorescent gene expression. LTK are biocompatible, non-toxic, no genetic modification requirement and have single-cell detection sensitivity. Furthermore, LTK can achieve background-free image, non-invasive long-term tracking in vivo and permit quantification of cell numbers at any anatomic location. LTK contains a high-density ensemble of negatively charged nitrogen-vacancy (NV) color centers (XTagTM) as built-in fluorophores, which are red fluorescent, perfectly photostable, and can be detected with high sensitivity in cells and tissues by fluorescence time gating. These distinctive characteristics make them as optimal candidates for permanent live cell bioimaging experiments and well suited for long-term cell tracking applications in vitro and in vivo.

 

 

Absorbance Maximum: 561nm
Emission Maximum: 700 nm
Suggested Filters:
Excitation: 532/561/594 nm
Emission: 550-800nm
 
产品特点:
  1. Easy to use add LTK in culture medium, incubate, and image cells
  2. Perfectly biocompatible no degradation, no cytotoxicity, and no genotoxicity
  3. Far-red emission excitation/emission spectra at 560/685 nm maxima, well separated from cell and tissue autofluorescence
  4. No photobleaching cells can be repeatedly examined by confocal fluorescence microscopy
  5. Long-term tracking typically more than 6 generations
  6. Long-lived fluorescence lifetime cell and tissue autofluorescence signals can be removed by time-gated fluorescence imaging
  7. Background-free detection cell and tissue autofluorescence signals can be removed by microwave and magnetic modulation of the NVfluorescence
  8. Ideal for tracking stem cells in vivo tracking homing of transplanted stem cells with single cell resolution in tissue by confocal fluorescence imaging

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