产品详情
简单介绍:
Cyanine3 NHS ester minimal dye
1B041 2B041 3B041
详情介绍:
Cyanine3 NHS ester minimal dye
Cat. # | Quantity | Price | Lead time | Buy this product |
---|---|---|---|---|
1B041 | 5 nmol | 85.00$ | in stock | |
2B041 | 10 nmol | 140.00$ | in stock | |
3B041 | 25 nmol | 210.00$ | in stock |
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Cyanine3 NHS ester dye for protein labeling, and analog of Cy3® minimal dye.
This reagent is specially quantified - each package contains specified amount of NHS ester with quantity variation within 10%.
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Cyanine3 maleimide
Cyanine3 maleimide is a thiol mono reactive dye.Sulfo-Cyanine5 NHS ester
Water-soluble Cyanine 5 succinimide ester.FAM Phosphoramidite, 6-Isomer
Single isomer 6-FAM phosphoramidite for the synthesis of modified oligonucleotides.General properties
Appearance: | red solid |
Quality control: | NMR 1H, HPLC-MS, functional testing |
Storage conditions: | Storage: 12 months after receival at -20°C in the dark. Transportation: at room temperature for up to 3 weeks. Avoid prolonged exposure to light. Desiccate. |
MSDS: | Download |
Spectral properties
Excitation maximum, nm: | 555 |
Emission maximum, nm: | 570 |
CF260: | 0.04 |
CF280: | 0.09 |
Product citations
- Shields, K.J.; Wu, C. Differential Adipose Tissue Proteomics. Methods in Molecular Biology. doi: 10.1007/7651_2017_80
- Zhao, P.; George, J.V.; Li, B.; Amini, N.; Paluh, J.; Wang, J. Clickable Multifunctional Dumbbell Particles for In Situ Multiplex Single-Cell Cytokine Detection. ACS Applied Materials & Interfaces, 2017, 9(38), 32482–32488. doi: 10.1021/acsami.7b08338
- Haimi, P.; Vinskiene, J.; Stepulaitiene, I.; Baniulis, D.; Stanien?, G.; ?ik?nianien?, J.B.; Rugienius, R. Patterns of low temperature-Induced accumulation of dehydrins in Rosaceae crops — Evidence for post-translational modification in apple. Journal of Plant Physiology, 2017, 218, 175–181. doi: 10.1016/j.jplph.2017.08.008
- Merjaneh, M.; Langlois, A.; Larochelle, S.; Cloutier, C.B.; Ricard-Blum, S.; Moulin, V.J. Pro-angiogenic capacities of microvesicles produced by skin wound myofibroblasts. Angiogenesis, 2017, 20(3), 385–398. doi: 10.1007/s10456-017-9554-9
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