AFDye 568 Picolyl Azide

貨號
規(guī)格
價格
品牌
貨期
1292-1
1 mg
3580.0
ClickChemistryTools
現(xiàn)詢
1292-5
5 mg
10900.0
ClickChemistryTools
現(xiàn)詢
1292-25
25 mg
35900.0
ClickChemistryTools
現(xiàn)詢

Abs/Em Maxima: 578/602 nm

Extinction Coefficient: 88,000

Flow Cytometry Laser Line: 532 nm or 568 nm

Microscopy Laser Line: 532 nm or 568 nm

Spectrally Similar Dyes: Alexa Fluor? 568, CF? 568

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AZDye? 568 Picolyl Azide is an advanced fluorescent probe that incorporates a copper-chelating motif to raise the effective concentration of Cu(I) at the reaction site to boost the efficiency of the CuAAC reaction, resulting in a faster and more biocompatible CuAAC labeling. Up to 40-fold increase of signal intensity, compared to conventional azides, was reported (see Selected References).

In addition, the use picolyl azides instead of conventional azides allows for at least a tenfold reduction in the concentration of the copper catalyst without sacrificing the efficiency of labeling, significantly improving biocompatibility of CuAAC labeling protocol.

In summary, the introduction of a copper-chelating motif into azide probe leads to a substantial increase in the sensitivity and reduced cell toxicity of CuAAC detection alkyne-tagged biomolecules. This will be of special value for the detection of low abundance targets or living system imaging.

AZDye 568? (Alexa Fluor? 568 equivalent) is a bright, and highly photostable, orange-fluorescent probe optimally excited by the 568 nm laser line on the Ar-Kr mixed-gas laser. This probe is water-soluble and its fluorescence is pH independent over a wide pH range. The brightness and photostability of this dye are best suited to direct imaging of low-abundance targets. AZDye? 568 dye structurally is identical to Alexa Fluor? 568 Dye.

分子量
897.25
分子式
N/A
CAS
N/A
溶(解)度
Water, DMSO, DMF
純度
>95% (HPLC)
外觀
Red solid
儲存環(huán)境
-20°C. Desiccate
運輸條件
Ambient temperature

1. Jiang, H., et al. (2014). Monitoring Dynamic Glycosylation in Vivo Using Supersensitive Click Chemistry. Bioconjugate Chem.,, 25, 698-706. [PubMed]

2. Uttamapinant, C., et al. (2012). Fast, Cell-Compatible Click Chemistry with Copper-Chelating Azides for Biomolecular Labeling. Angew. Chem. Int. Ed,., 51, 5852-56. [PubMed]

3. Gaebler, A.,et al. (2016). A highly sensitive protocol for microscopy of alkyne lipids and fluorescently tagged or immunostained proteins. J. Lipid. Res., 57, 1934-47. [PubMed]


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