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MOPS sodium salt
[CAS# 71119-22-7]

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Identification
Classification Chemical reagent >> Organic reagent >> Sulfonate / sulfinate
Name MOPS sodium salt
Synonyms 3-(4-Morpholino)propanesulfonic acid sodium salt; 3-(N-Morpholino)propanesulfonic acid sodium salt
Molecular Structure CAS # 71119-22-7, MOPS sodium salt, 3-(4-Morpholino)propanesulfonic acid sodium salt, 3-(N-Morpholino)propanesulfonic acid sodium salt
Molecular Formula C7H14NNaO4S
Molecular Weight 231.24
CAS Registry Number 71119-22-7
EC Number 615-252-2
SMILES C1COCCN1CCCS(=O)(=O)[O-].[Na+]
Properties
Solubility 1 M (water 20 ºC)
Melting point 277-282 ºC
Safety Data
Hazard Symbols symbol   GHS07 Warning    Details
Hazard Statements H315-H319-H335    Details
Precautionary Statements P261-P264-P264+P265-P271-P280-P302+P352-P304+P340-P305+P351+P338-P319-P321-P332+P317-P337+P317-P362+P364-P403+P233-P405-P501    Details
Hazard Classification
up    Details
HazardClassCategory CodeHazard Statement
Eye irritationEye Irrit.2H319
Skin irritationSkin Irrit.2H315
Specific target organ toxicity - single exposureSTOT SE3H335
SDS Available
up Discovory and Applicatios
MOPS sodium salt, chemically known as 3-(N-morpholino)propanesulfonic acid sodium salt, was first developed in the 1960s. It is a zwitterionic buffer and belongs to the Good buffer class, named after Norman Good, who pioneered the development of buffers for use in biological research. Good buffers are known for their minimal interference with biochemical processes and solution stability, making them ideal for use in biological and biochemical applications.

MOPS sodium salt is characterized by its ability to maintain a stable pH level in the range of 7.0 to 7.4, which makes it particularly suitable for experiments that require a neutral pH environment. It has a pKa of 7.20 at 25°C, which is well suited for many enzymatic reactions and cell culture conditions. MOPS sodium salt has the molecular formula C7H14NO4SNa and is highly soluble in water.

MOPS sodium salt is widely used in cell culture media, protein purification, and electrophoresis. Its ability to maintain a stable pH is essential for the growth and maintenance of cultured cells, ensuring an environment that is conducive to cell activity.

It is often used in biochemical assays where enzyme activity is pH-dependent. MOPS sodium salt provides a consistent environment that prevents pH fluctuations that would otherwise lead to inconsistent or unreliable results.

In electrophoresis, MOPS sodium salt is used as a buffering agent in the running buffer. Its stability helps separate proteins and nucleic acids by maintaining the pH of the gel environment, allowing for more precise separations and analyses.

In addition to laboratory uses, MOPS sodium salt can be used in industrial processes where pH control is critical. This includes the production of pharmaceuticals and biotech products, where precise pH control is essential for product stability and efficacy.

MOPS sodium salt offers several advantages over other buffers. It does not absorb light at wavelengths commonly used in spectrophotometry, meaning it does not interfere with optical measurements. Additionally, it is chemically stable and resistant to enzymatic degradation, ensuring it remains effective over extended periods of time.

References

2019. Rational development of transformation in Clostridium thermocellum ATCC 27405 via complete methylome analysis and evasion of native restriction-modification systems. Journal of Industrial Microbiology and Biotechnology, 46(9-10).
DOI: 10.1007/s10295-019-02218-x

2000. Androgenic sensitivity of polyamine-oxidizing enzyme activities in female rat tissues. Amino Acids, 19(1).
DOI: 10.1007/s007260070078

1999. Developmental aspects of polyamine-oxidizing enzyme activities in the mouse kidney. Effects of testosterone. Amino Acids, 17(3).
DOI: 10.1007/bf01366925
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