Max6X Gel Loading Dye (6X)
Catalog Number: DM05
Unit Size: 1ML
Also Known As: Nucleic Acid Stain / Fluorescent Dye / Safe Dye / Direct Staining
Description
Max6X Gel Loading Dye (6X) is a non-mutagenic fluorescent reagent that produces an instant visualization of DNA bands upon Blue Light or UV illumination of agarose gels. Supplied in 6X DNA Loading Buffer, Max6X Gel Loading Dye (6X) is used to prepare DNA markers and samples for loading on agarose or polyacrylamide gels. Max6X Gel Loading Dye (6X) is the most sensitive stain available for detecting the double-stranded DNA (dsDNA). It contains three tracking dyes (Bromophenol Blue, Xylene Cyanol FF, and Orange G) for visually tracking the DNA migration during the electrophoresis process. It is ideal for the environment requiring a safe, non-hazardous alternative to Ethidium Bromide. The recommended DNA mass of sample is more than 50 ng. (This will not cause obvious shift)
Max6X Gel Loading Dye (6X) Keeps Your Lab Safe
- Safe
The absence of mutagenicity. - Low Environmental Impact
Compliance with the Clean Water Act standards. No water pollution concern. - Sensitivity
High degree of sensitivity as Ethidium Bromide. - Convenience
Ready to Use; Same application procedures as the 6X Loading Dye. - Speed
No de-staining requirement, low background value, an image displayed after coupling with the nucleic acid. - Compatibility
Use the Blue Light or UV to detect the signal; Broad compatibility range. - Economic
Non-hazardous product; No expenses required for the waste management.
Keeps your lab away from EtBr while giving the same sensitivity.
AMES test, passed.
OECD 203, Fish Acute Toxicity test, passed.
Mammalian Chromosomal Aberration test, passed.
AMES Test Assay Report No: 991112-01
Fish, Acute Toxicity Test Report No.: UB/2014/40329A-01
In Vitro Mammalian Chromosomal Aberration Test Report No. : UB/2014/40329
Storage :
Stable for up to 12 months at 4°C.
Stable for up to 24 months at -20°C.
Max6X Gel Loading Dye (6X) is light sensitive and should be stored protected from light.