Carboxy-H2DFFDA
Carboxy-H2DFFDA
Invitrogen™

Carboxy-H2DFFDA

H2DFFDA is a chemically reduced, acetylated form of fluorescein used as an indicator for reactive oxygen species (ROS) in cells.Read more
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Catalog NumberQuantity
C132935 mg
Catalog number C13293
Price (KRW)
408,000
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Ends: 31-Dec-2025
479,000
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Quantity:
5 mg
Price (KRW)
408,000
Online offer
Ends: 31-Dec-2025
479,000
Save 71,000 (15%)
Each
Add to cart
H2DFFDA is a chemically reduced, acetylated form of fluorescein used as an indicator for reactive oxygen species (ROS) in cells. This nonfluorescent molecule is readily converted to a green-fluorescent form when the acetate groups are removed by intracellular esterases and oxidation (by the activity of ROS) occurs within the cell. This fluorinated analog exhibits improved photostability compared to the chlorinated fluorescein derivatives (DCF, DCFDA).

ROS Indicator Specifications:
• Ex/Em: ∼492–495/517–527 nm
• Product is air sensitive and should be stored under dry argon or nitrogen
• Product may be dissolved in DMSO, DMF, or ethanol for use
• Indicator is cell permeant (cell loading protocols are available in the literature)
• Fluorescence can be monitored using a flow cytometer, fluorometer, microplate reader, or fluorescence microscope, using excitation sources and filters appropriate for fluorescein


Find More ROS Indicators
We offer an assortment of Molecular Probes™ products for the generation of reactive oxygen species (ROS), including singlet oxygen, superoxide, hydroxyl radical and various peroxide and hydroperoxides, as well as for their fluorometric detection in solution. Review Generating and Detecting Reactive Oxygen Species—Section 18.2 in the Molecular Probes™ Handbook for more information on these products.

For Research Use. Not for human or animal therapeutic or diagnostic use.
For Research Use Only. Not for use in diagnostic procedures.
Specifications
Quantity5 mg
Product TypeROS Indicator
Unit SizeEach

Citations & References (21)

Citations & References
Abstract
SuperTAG methylation-specific digital karyotyping reveals uremia-induced epigenetic dysregulation of atherosclerosis-related genes.
Authors:Zawada AM, Rogacev KS, Hummel B, Grün OS, Friedrich A, Rotter B, Winter P, Geisel J, Fliser D, Heine GH,
Journal:Circ Cardiovasc Genet
PubMed ID:23074332
'Accelerated atherosclerosis is a hallmark of chronic kidney disease (CKD). Although the role of epigenetic dysregulation in atherosclerosis is increasingly appreciated, only a few studies focused on epigenetics in CKD-associated cardiovascular disease, virtually all of which assessed epigenetic dysregulation globally. We hypothesized that gene-specific epigenetic dysregulation in CKD exists, affecting ... More
Distinct immunologic effects of different intravenous iron preparations on monocytes.
Authors:Fell LH, Zawada AM, Rogacev KS, Seiler S, Fliser D, Heine GH,
Journal:
PubMed ID:24523357
'Iron deficiency contributes to anaemia in patients with chronic kidney disease. I.v. iron is therefore widely used for anaemia treatment, although it may induce oxidative stress and activate monocytes. Different i.v. iron preparations are available, but interestingly their substance-specific immunologic effects are poorly studied. We analysed the effect of iron ... More
Cell transformation by FLT3 ITD in acute myeloid leukemia involves oxidative inactivation of the tumor suppressor protein-tyrosine phosphatase DEP-1/ PTPRJ.
Authors:Godfrey R, Arora D, Bauer R, Stopp S, Müller JP, Heinrich T, Böhmer SA, Dagnell M, Schnetzke U, Scholl S, Östman A, Böhmer FD,
Journal:Blood
PubMed ID:22438257
'Signal transduction of FMS-like tyrosine kinase 3 (FLT3) is regulated by protein-tyrosine phosphatases (PTPs). We recently identified the PTP DEP-1/CD148/PTPRJ as a novel negative regulator of FLT3. This study addressed the role of DEP-1 for regulation of the acute myeloid leukemia (AML)-related mutant FLT3 internal tandem duplication (ITD) protein. Our ... More
Cystine dimethylester loading promotes oxidative stress and a reduction in ATP independent of lysosomal cystine accumulation in a human proximal tubular epithelial cell line.
Authors:Sumayao R, McEvoy B, Martin-Martin N, McMorrow T, Newsholme P,
Journal:
PubMed ID:23813804
'Using the cystine dimethylester (CDME) loading technique to achieve elevated lysosomal cystine levels, ATP depletion has previously been postulated to be responsible for the renal dysfunction in cystinosis, a genetic disorder characterized by an excessive accumulation of cystine in the lysosomes. However, this is unlikely to be the sole factor ... More
Platelets and platelet-like particles mediate intercellular RNA transfer.
Authors:Risitano A, Beaulieu LM, Vitseva O, Freedman JE,
Journal:Blood
PubMed ID:22596260
The role of platelets in hemostasis and thrombosis is clearly established; however, the mechanisms by which platelets mediate inflammatory and immune pathways are less well understood. Platelets interact and modulate the function of blood and vascular cells by releasing bioactive molecules. Although the platelet is anucleate, it contains transcripts that ... More