Nile Blue Chloride
Original price was: $1,195.00.$595.00Current price is: $595.00.
Catalog Number: B2027086 (100 mg)
Nile Blue Chloride is a synthetic, fluorescent oxazine dye utilized as a reference standard for various applications. It exhibits pH-dependent color transitions and solvent-dependent optical properties, rendering it highly effective for staining and differentiating cellular components such as lipids and nuclei. The product is provided as a water-soluble, highly stable powder optimized for microscopy and molecular biology research. Custom bulk amounts of this product are available upon request.
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Product Description
Nile Blue Chloride
Catalog number: B2027086
Lot number: Batch Dependent
Expiration Date: Batch dependent
Amount: 100 mg
Molecular Weight or Concentration: 353.85
Supplied as: Solid
Storage: RT
Keywords: Nile Blue A, Basic Blue 12, Nile Blue, Cresol Fast Violet, Cresyl Fast Violet, Nile Blue AX, C.I. 51180, C.I. Basic Blue 12
References:
1. Baggiani, A., Pielesz, A., Kaur, R., & Gupta, V. K. (2009). Carcinogenicity of Sudan dyes. Journal of Hazardous Materials, 162(2), 1015-1021.
2. Chen, H., Feng, J., Kweon, O., Xu, H., & Cerniglia, C. E. (2020). Determination and degradation of Sudan III in food products. Food Chemistry, 310, 125812.
3. Nie, X., Wang, L., & Zhang, Y. (2021). Identification of illegal azo colorants in food samples. Journal of Agricultural and Food Chemistry, 69(14), 4210-4218.
4. Pham, T. H., Ghazanfari, M., Sarhadi, S., & Tajik, H. (2021). Analytical methods for the determination of Sudan dyes in spices and oils. Food Control, 124, 107890.
5. Alothman, Z. A., Ozalp, O., & Soylak, M. (2022). Supramolecular solvent microextraction of organic dyes. Microchemical Journal, 175, 107120.
6. Kashanaki, F., Ebrahimzadeh, H., & Moradi, M. (2018). Optimization of extraction parameters for lipophilic compounds using response surface methodology. Journal of Separation Science, 41(12), 2601-2609.
7. Ramezani, M., Dashamiri, S., & Faraji, M. (2021). Ultrasonic-assisted liquid-phase microextraction of synthetic colorants. Ultrasonics Sonochemistry, 73, 105495.
8. Muzzall, J. M., & Cook, W. L. (1970). Degradation of azo dyes by Staphylococcus aureus. Applied Microbiology, 20(3), 412-416.
9. Lohumi, S., Lee, H., & Cho, B. K. (2015). Optical properties of palm oil adulterated with Sudan dyes. Food Research International, 72, 110-117.
10. Rebane, R., Leito, I., Yurchenko, S., & Herodes, K. (2010). Review of analytical methods for identification of Sudan dyes in food and cosmetics. Journal of Chromatography A, 1217(17), 2747-2757.
Sudan III
Products Related to Nile Blue Chloride can be found at Dyes
Additional Information
| Weight | 0.15 oz |
|---|---|
| Dimensions | 2 × 0.5 × 0.5 in |
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