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LumiTracker® Mito Red CMXRos
貨號 | 數量 | 價格 | 交貨時間 | 購買此產品 |
---|---|---|---|---|
2251-50ug | 50 ug | – | 現貨 | |
2251-500ug | 500 ug | $140 | 現貨 |
LumiTracker Mito Red CMXRos is a cationic, red-fluorescent dye for staining active mitochondria in live cells. CMXRos is a hydrophobic compound that passively diffuses across the plasma membrane and selectively accumulates in active mitochondria based on their membrane potential. LumiTracker Mito Red CMXRos is compatible with aldehyde fixation. This dye is useful to indicate cell health as well as for mitochondria localization.
Ros in the name of this product stands for rosamine and has nothing to do with the detection of reactive oxygen species (ROS).
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(5,6)-FAM diacetate NHS ester
Amine-reactive fluorescein (FAM) derivative, a mixture of 5- and 6-isomers. The reagent becomes brightly green fluorescent once it is hydrolyzed while diffusing into cells. A fluorescent tracer.DiO,親脂性示蹤劑 (DiO, lipophilic tracer)
用於膜標記和細胞示蹤的綠色螢光親脂染料。菁染料5胺 (Cyanine5 amine)
菁染料5胺官能化染料,用於與活化酯和環氧化物偶聯。
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General properties
Appearance: | dark green crystals |
Molecular weight: | 531.53 |
CAS number: | 167095-09-2 |
Molecular formula: | C32H32Cl2N2O |
Solubility: | DCM, DMF, methanol |
Quality control: | NMR 1H and HPLC-MS (95+%) |
Storage conditions: | 24 months after receival at -20°C in the dark. Transportation: at room temperature for up to 3 weeks. Desiccate. |
MSDS: | 下載 |
產品規格 |
Spectral properties
Excitation/absorption maximum, nm: | 581 |
ε, L⋅mol−1⋅cm−1: | 101000 |
Emission maximum, nm: | 600 |
Fluorescence quantum yield: | 0.91 |
產品引用
- Thi Duy Ngoc, N.; Yurchenko, E. A.; Thi Hoai Trinh, P.; Menchinskaya, E. S.; Thi Dieu, T. V.; Savagina, A. D.; Minin, A.; Thinh, P. D.; Khanh, H. H. N.; Thi Thanh Van, T.; Yurchenko, A. N. Secondary Metabolites of Vietnamese Marine Fungus Penicillium Chermesinum 2104NT-1.3 and Their Cardioprotective Activity. Regional Studies in Marine Science, 2024, 104003. doi: 10.1016/j.rsma.2024.104003
- Aitova, A.; Scherbina, S.; Berezhnoy, A.; Slotvitsky, M.; Tsvelaya, V.; Sergeeva, T.; Turchaninova, E.; Rybkina, E.; Bakumenko, S.; Sidorov, I.; Popov, M.A.; Dontsov, V.; Agafonov, E.G.; Efimov, A.E.; Agapov, I.; Zybin, D.; Shumakov, D.; Agladze, K. Novel Molecular Vehicle-Based Approach for Cardiac Cell Transplantation Leads to Rapid Electromechanical Graft–Host Coupling. International Journal of Molecular Sciences, 2023, 24(12), 10406. doi: 10.3390/ijms241210406
This Product is offered and sold for research purposes only. It has not been tested for safety and efficacy in food, drug, medical device, cosmetic, commercial or any other use. Supply does not express or imply authorization to use for any other purpose, including, without limitation, in vitro diagnostic purposes, in the manufacture of food or pharmaceutical products, in medical devices or in cosmetic products.
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