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1,4-butanediamine 68076-36-8

N-Boc-1,4-diaminobutane is used in preparation of pharmacologically active compounds, preparation of spermidine analogues and in introduction of a C4-spacer. It serve as intermediates of medicine.

4-Aminobutylcarbamic Acid tert-Butyl Ester is used in the synthesis of iron chelators expressing antitumor activity. Also used in the synthesis of iron oxide nanoparticles which are used in cellular and small animal imaging.

Chemical Name4-Aminobutylcarbamic Acid tert-Butyl Ester
SynonymsN-(4-Aminobutyl)carbamic Acid 1,1-Dimethylethyl Ester
CAS Number68076-36-8
Molecular FormulaC₉H₂₀N₂O₂
AppearanceClear Colorless Oil
Molecular Weight188.27
Storage4°C, Hygroscopic
SolubilityChloroform, DMSO, Methanol
CategoryBuilding Blocks; Pharmaceutical/API Drug Impurities/Metabolites;
Applications4-Aminobutylcarbamic Acid tert-Butyl Ester is used in the synthesis of iron chelators expressing antitumor activity. Also used in the synthesis of iron oxide nanoparticles which are used in cellular and small animal imaging.

Product Description

 

N-Boc-1,4-diaminobutane is used in preparation of pharmacologically active compounds, preparation of spermidine analogues and in introduction of a C4-spacer. It serve as intermediates of medicine

1,4-butanediamine, also known as putrescine, is a organic compound with the chemical formula C4H12N2. It belongs to the class of compounds known as diamines, which are organic compounds containing two amino groups (-NH2) attached to a hydrocarbon chain.

Putrescine is a colorless, foul-smelling liquid that is soluble in water. It is naturally produced as a result of the breakdown of amino acids in living and decaying organisms. It is found in various biological sources, including decaying animal tissues, urine, and certain plants.

Putrescine has several applications in different industries. It is commonly used as a chemical intermediate in the production of polymers, resins, and plastics. It can be used to synthesize polyamides, such as nylon-4, which have various industrial applications. Putrescine is also utilized in the preparation of pharmaceuticals, agricultural chemicals, and corrosion inhibitors.

In biological systems, putrescine plays a role as a precursor in the biosynthesis of other important compounds, such as polyamines. Polyamines are essential for cell growth, proliferation, and differentiation. Putrescine can be further converted into other polyamines like spermidine and spermine through enzymatic reactions.

However, it is important to note that putrescine has a strong, unpleasant odor reminiscent of rotting flesh, which has led to its name derived from the Latin word “putrescere,” meaning “to rot.”

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