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About This Item
Empirical Formula (Hill Notation):
C25H16O9
CAS Number:
Molecular Weight:
460.39
NACRES:
NA.47
PubChem Substance ID:
UNSPSC Code:
12171500
MDL number:
Beilstein/REAXYS Number:
67043
Product Name
6-Carboxyfluorescein diacetate, ≥95% (HPLC)
assay
≥95% (HPLC)
form
powder
color
white to yellow
solubility
chloroform/ethanol (1:1): 9.80-10.20 mg/mL, clear, colorless to light yellow
application(s)
diagnostic assay manufacturing
hematology
histology
storage temp.
−20°C
SMILES string
CC(=O)Oc1ccc2c(Oc3cc(OC(C)=O)ccc3C24OC(=O)c5ccc(cc45)C(O)=O)c1
InChI
1S/C25H16O9/c1-12(26)31-15-4-7-18-21(10-15)33-22-11-16(32-13(2)27)5-8-19(22)25(18)20-9-14(23(28)29)3-6-17(20)24(30)34-25/h3-11H,1-2H3,(H,28,29)
InChI key
QMOGCCYGOPYYNT-UHFFFAOYSA-N
Application
6-Carboxyfluorescein diacetate has been used to differentiate viable cells from apoptotic cells. Live cells that are not apoptotic accumulate 6-carboxyfluorescein but do not accumulate annexin.
Fluorescent wavelengths λex 492nm; λemm 517nm in 0.1M Tris, pH 8.0.
Fluorescent wavelengths λex 492nm; λemm 517nm in 0.1M Tris, pH 8.0.
Storage Class
11 - Combustible Solids
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
Eyeshields, Gloves, type N95 (US)
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Sung-Uk Lee et al.
PloS one, 14(3), e0214253-e0214253 (2019-03-27)
N-acetylglucosamine (GlcNAc) branching of Asn (N)-linked glycans inhibits pro-inflammatory T cell responses and models of autoimmune diseases such as Multiple Sclerosis (MS). Metabolism controls N-glycan branching in T cells by regulating de novo hexosamine pathway biosynthesis of UDP-GlcNAc, the donor
Yeli Gong et al.
PloS one, 7(10), e47435-e47435 (2012-10-19)
The MOG35-55 peptide-induced experimental autoimmune encephalomyelitis (EAE) model in C57BL/6 mice is a useful animal model to explore therapeutic approaches to T cell-mediated autoimmune diseases because the dominant T-cell epitope(s) have been defined. It is rational that antigen-specific immunosuppression can
Yuan Liu et al.
Journal of biomedical optics, 12(1), 014014-014014 (2007-03-09)
Intravital imaging of hepatobiliary excretion is vital for elucidating liver metabolism. In this work, we describe a novel method to observe the intravital dynamics of the uptake, processing, and excretion of an organic anion, 6-carboxyfluorescein diacetate (6-CFDA) in the hepatobiliary