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DRAQ7 Fluorescent Probe

Original price was: $4,395.00.Current price is: $2,195.00.

Catalog Number: B2019150 (100 µL)
DRAQ7 is a fluorescent probe used in biological research. It is a cell-permeable dye that binds to DNA, allowing for the visualization of dead cells. DRAQ7 emits fluorescence upon binding, making it useful for distinguishing live and dead cells in various experimental settings. Researchers incubate cells with DRAQ7 and analyze them using fluorescence microscopy or flow cytometry. This product has been used as a molecular tool for various biochemical applications. It has also been used in a wide array of other chemical and immunological applications. Custom bulk amounts of this product are available upon request.

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Product Description

DRAQ7 Fluorescent Probe
Catalog number: B2019150
Lot number: Batch Dependent
Expiration Date: Batch dependent
Amount: 100 µL
Molecular Weight or Concentration: N/A
Supplied as: Solution
Applications: a molecular tool for various biochemical applications
Storage: 2-8°C
Keywords: DRAQ7 Fluorescent Probe
Grade: Biotechnology grade. All products are highly pure. All solutions are made with Type I ultrapure water (resistivity >18 MΩ-cm) and are filtered through 0.22 um.

References:
1: Wlodkowic D, Akagi J, Dobrucki J, Errington R, Smith PJ, Takeda K, Darzynkiewicz Z. Kinetic viability assays using DRAQ7 probe Curr Protoc Cytom. 2013 Jul;Chapter 9:9.41.1-9.41.8.
2: Pieper IL, Radley G, Chan CH, Friedmann Y, Foster G, Thornton CA. Quantification methods for human and large animal leukocytes using DNA dyes by flow cytometry Cytometry A. 2016 Jun;89(6):565-74.
3: Akagi J, Kordon M, Zhao H, Matuszek A, Dobrucki J, Errington R, Smith PJ, Takeda K, Darzynkiewicz Z, Wlodkowic D. Real-time cell viability assays using a new anthracycline derivative DRAQ7® Cytometry A. 2013 Feb;83(2):227-34.
4: Rooprai HK, Lawrence P, Keshavarz S, Yashod P, Gullan RW, Selway RP, Davies D. DRAQ7 as an Alternative to MTT Assay for Measuring Viability of Glioma Cells Treated With Polyphenols Anticancer Res. 2020 Oct;40(10):5427-5436.
5: Wlodkowic D, Skommer J, Akagi J, Fujimura Y, Takeda K. Multiparameter analysis of apoptosis using lab-on-a-chip flow cytometry Curr Protoc Cytom. 2013 Oct 9;66:9.42.1-9.42.15.
6: Kim S, Choung S, Sun RX, Ung N, Hashemi N, Fong EJ, Lau R, Spiller E, Gasho J, Foo J, Mumenthaler SM. Comparison of Cell and Organoid-Level Analysis of Patient-Derived 3D Organoids to Evaluate Tumor Cell Growth Dynamics and Drug Response SLAS Discov. 2020 Aug;25(7):744-754.
7: Orbán C, Pérez-García E, Bajnok A, McBean G, Toldi G, Blanco-Fernandez A. Real time kinetic flow cytometry measurements of cellular parameter changes evoked by nanosecond pulsed electric field Cytometry A. 2016 May;89(5):472-9.
8: Haupt S, Malik Z, Ehrenberg B. Comparative kinetics of damage to the plasma and mitochondrial membranes by intra-cellularly synthesized and externally-provided photosensitizers using multi-color FACS Photochem Photobiol Sci. 2014 Jan;13(1):38-47.
9: Nadeev AD, Kudryavtsev IV, Serebriakova MK, Avdonin PV, Zinchenko VP, Goncharov NV. [DUAL PROAPOPTOTIC AND PRONECROTIC EFFECT OF HYDROGEN PEROXIDE ON HUMAN UMBILICAL VEIN ENDOTHELIAL CELLS] Tsitologiia. 2015;57(12):909-16.
https://pubmed.ncbi.nlm.nih.gov/23184595

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Additional Information

Weight 48 oz
Dimensions 8 × 8 × 8 in

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