Spermine丨CAS 71-44-3

Spermine丨CAS 71-44-3
Product Introduction:
Catalog No.: SS130998
CAS No.: 71-44-3
Purity: 97% min.
Product Name: Spermine
Molecular Formula: C10H26N4
Molecular Weight: 202.34
Synonym(s): N,N-Bis(3-aminopropyl)-1,4-butanediamine
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Technical Parameters
Description

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Specifications

 

Appearance White to light yellow solid or colorless to light yellow liquid
Purity 97% min.
Water Content 1% max.
Identification HNMR correspond to the structure

 

 

 

Applications

 

Spermine (CAS 71-44-3) is a naturally occurring polyamine present in nearly all living cells, where it plays a critical role in stabilizing nucleic acids and regulating cellular processes. Its primary applications include use in biochemical research, molecular biology, and pharmaceuticals. In laboratories, spermine is employed to study DNA and RNA stabilization, gene expression, and protein synthesis, as well as to investigate its role in cell growth and differentiation. Industrially, it is utilized in the formulation of certain drug delivery systems and as a component in biotechnology processes. In medicine, spermine and its derivatives are being explored for their potential in anticancer therapies, neuroprotection, and regenerative medicine.

 

Benefits

 

The benefits of spermine stem from its biological activity and multifunctional properties. Its ability to bind strongly to negatively charged biomolecules such as DNA and RNA enhances structural stability and protects nucleic acids from enzymatic degradation. This feature is crucial in improving the efficiency of gene delivery systems and nucleic acid-based therapeutics. Moreover, spermine plays a natural role in modulating ion channels, maintaining cellular homeostasis, and supporting antioxidant defenses. Its versatility as both a research tool and a therapeutic candidate makes it highly valuable in advancing molecular biology and biomedical science.

 

Conclusion

 

In conclusion, spermine is an essential polyamine with wide-reaching significance in biology, medicine, and biotechnology. Its nucleic acid stabilization, antioxidant properties, and cellular regulatory functions provide both fundamental insights and practical applications. By bridging natural cellular processes with therapeutic innovation, spermine continues to serve as a vital compound in research and potential medical advancements.

 

 

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