Lucifer Yellow CH dipotassium
CAS No. 71206-95-6
Lucifer Yellow CH dipotassium( —— )
Catalog No. M37186 CAS No. 71206-95-6
Lucifer Yellow CH dipotassium is a water-soluble fluorescent tracer that labels endocytosis vesicles in cells.Lucifer Yellow CH dipotassium excites and emits at a maximum wavelength of 430 nm and 540 nm, respectively.
Purity : >98% (HPLC)
COA
Datasheet
HNMR
HPLC
MSDS
Handing Instructions
| Size | Price / USD | Stock | Quantity |
| 2MG | 64 | Get Quote |
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| 5MG | 93 | Get Quote |
|
| 10MG | 149 | Get Quote |
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| 25MG | 293 | Get Quote |
|
| 50MG | 551 | Get Quote |
|
| 500MG | Get Quote | Get Quote |
|
| 1G | Get Quote | Get Quote |
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Biological Information
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Product NameLucifer Yellow CH dipotassium
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NoteResearch use only, not for human use.
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Brief DescriptionLucifer Yellow CH dipotassium is a water-soluble fluorescent tracer that labels endocytosis vesicles in cells.Lucifer Yellow CH dipotassium excites and emits at a maximum wavelength of 430 nm and 540 nm, respectively.
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DescriptionLucifer Yellow CH dipotassium is a high-intensity fluorescent probe containing free hydrazyl groups. Lucifer Yellow CH can react with fatty aldehydes at room temperature. Lucifer Yellow CH serves as a biological tracer to monitor neuronal branching, regeneration, gap junction detection and characterization, and selective ablation of cells after aldehyde fixation. Lucifer yellow CH displays the maximum excitation/emission of 430 nm/540 nm, respectively.
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In Vitro——
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In Vivo——
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Synonyms——
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PathwayOthers
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TargetOther Targets
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RecptorOthers
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Research Area——
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Indication——
Chemical Information
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CAS Number71206-95-6
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Formula Weight521.57
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Molecular FormulaC13H9K2N5O9S2
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Purity>98% (HPLC)
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SolubilityIn Vitro:?DMSO : 83.33 mg/mL (159.77 mM; Ultrasonic ) H2O : 5 mg/mL (9.59 mM; Ultrasonic (<60°C)
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SMILESO=C(NN1C(C2=CC(S(=O)([O-])=O)=CC3=C(C(S(=O)([O-])=O)=CC(C1=O)=C23)N)=O)NN.[K+].[K+]
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Chemical Name——
Shipping & Storage Information
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Storage(-20℃)
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ShippingWith Ice Pack
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Stability≥ 2 years
Reference
1. Klein M, et al. Transport of lucifer yellow CH into plant vacuoles--evidence for direct energization of a sulphonatedsubstance and implications for the design of new molecular probes. FEBS Lett. 1997 Dec 22;420(1):86-92.?
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