Ethyl Orange Sodium Salt
Original price was: $1,195.00.$595.00Current price is: $595.00.
Catalog Number: B2027068 (100 mg)
Ethyl Orange sodium salt is an organic azo dye and reliable pH indicator with a visual transition interval from pH 3.0 to 4.8. Characterized by a molecular weight of 355.39 g/mol and excellent water solubility, this high-quality indicator grade compound ensures precision and reliability, serving as a versatile tool for effectively monitoring changes in acidity and alkalinity. Custom bulk amounts of this product are available upon request.
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Product Description
Ethyl Orange Sodium Salt
Catalog number: B2027068
Lot number: Batch Dependent
Expiration Date: Batch dependent
Amount: 100 mg
Molecular Weight or Concentration: 355.39
Supplied as: Solid
Storage: RT
Keywords: 4-(4-Diethylaminophenylazo)benzenesulfonic acid sodium salt, Benzenesulfonic acid 4-[[4-(diethylamino)phenyl]azo]- sodium salt, 4-(Diethylamino)azobenzene-4′-sulfonic acid sodium salt, Ethyl Orange
References:
1. Yektaeian, N., Mehrabani, D., Sepaskhah, M., Zare, S., Jamhiri, I., & Hatam, G. (2019). Lipophilic tracer Dil and fluorescence labeling of acridine orange used for Leishmania major tracing in the fibroblast cells. Heliyon, 5(12), e03073.
2. Traganos, F., Darzynkiewicz, Z., Sharpless, T., & Melamed, M. R. (1977). Simultaneous staining of ribonucleic and deoxyribonucleic acids in unfixed cells using acridine orange in a flow cytofluorometric system. Journal of Histochemistry & Cytochemistry, 25(1), 46-56.
3. Lauer, B. A., Reller, L. B., & Mirrett, S. (1981). Comparison of acridine orange and Gram stains for detection of microorganisms in cerebrospinal fluid and other clinical specimens. Journal of Clinical Microbiology, 14(2), 201-205.
4. Darzynkiewicz, Z., Bruno, S., Del Bino, G., Gorczyca, W., Hotz, M. A., Lassota, P., & Traganos, F. (1992). Features of apoptotic cells measured by flow cytometry. Cytometry, 13(8), 795-808.
5. Gumienny, T. L., Lambie, E., Hartwieg, E., Horvitz, H. R., & Hengartner, M. O. (1999). Genetic control of programmed cell death in the Caenorhabditis elegans germline. Development, 126(5), 1011-1022.
6. Forsum, U., & Hallén, A. (1979). Acridine orange staining of urethral and cervical smears for the diagnosis of gonorrhea. Acta Dermato-Venereologica, 59(3), 281-286.
7. McCarthy, L. R., & Senne, J. E. (1980). Evaluation of acridine orange stain for detection of microorganisms in blood cultures. Journal of Clinical Microbiology, 11(3), 281-285.
8. Mirrett, S., Lauer, B. A., Miller, G. A., & Reller, L. B. (1982). Comparison of acridine orange, Gram, and Giemsa stains for vivid detection of microorganisms in clinical materials. Journal of Clinical Microbiology, 15(4), 562-566.
9. Allison, A. C., & Young, M. R. (1964). Uptake of dyes and drugs by living cells in culture. Life Sciences, 3(12), 1407-1414.
10. Robbins, E., Marcus, P. I., & Gonatas, N. K. (1964). Dynamics of acridine orange-cell interaction. Journal of Cell Biology, 21(1), 49-62.
Acridine orange biological stain
Products Related to Ethyl Orange Sodium Salt can be found at Dyes
Additional Information
| Weight | 0.15 oz |
|---|---|
| Dimensions | 2 × 0.5 × 0.5 in |
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