Interesting facts
Interesting Facts about 2-(2-aminoethyldisulfanyl)ethanamine; dihydrochloride
This intriguing compound, also known as a dihydrochloride salt, possesses unique properties and potential applications in various fields. Below are some interesting insights:
- Structural Significance: The presence of disulfanyl groups in its structure indicates that this compound can play a role in redox reactions, which are pivotal in various biochemical processes.
- Biochemical Applications: Due to its amino groups, it has potential applications in medicinal chemistry, particularly as a precursor for the synthesis of biologically active compounds.
- Heavy Metal Chelation: Compounds with disulfide bonds are known for their ability to chelate heavy metals. This feature could make this compound useful in environmental chemistry for detoxifying heavy metal contaminants.
- Peptide Synthesis: This compound could serve as a building block for synthesizing peptides, especially those incorporating disulfide bridges, which are essential for stabilizing protein structures.
- Pharmaceutical Research: Being part of the class of amino-containing compounds, it has garnered interest in pharmaceutical research for potential uses in drug formulation or development due to its biologically relevant functional groups.
The versatility of 2-(2-aminoethyldisulfanyl)ethanamine; dihydrochloride highlights the interplay between its unique chemical structure and its applicability in real-world scenarios. As such, its study continues to be an essential area of research in both chemistry and related fields.
Synonyms
Cystamine dihydrochloride
56-17-7
2,2'-Disulfanediyldiethanamine dihydrochloride
Cystamin dihydrochloride
Cystamine HCl
Ethanamine, 2,2'-dithiobis-, dihydrochloride
USAF CB-34
MFCD00012905
2-Aminoethyl disulfide dihydrochloride
Decarboxycystine dihydrochloride
Cystamine 2HCL
2,2'-Dithiodi(ethylammonium) dichloride
Bis(2-aminoethyl) disulfide dihydrochloride
EINECS 200-260-7
NSC 39322
2-[(2-aminoethyl)disulfanyl]ethan-1-amine dihydrochloride
UNII-I90T518457
2,2'-Dithio-bis-(ethylamine) dihydrochloride
Cystamine (dihydrochloride pound(c)
2,2'-Dithiobis(ethylamine) dihydrochloride
DTXSID6058766
I90T518457
ETHYLAMINE, 2,2'-DITHIOBIS-, DIHYDROCHLORIDE
CYSTAMINE DIHYDROCHLORIDE [MI]
NSC-39322
2,2'-DITHIOBISETHANAMINE DIHYDROCHLORIDE
BIS(.BETA.-AMINOETHYL)DISULFIDE DIHYDROCHLORIDE
BIS(.BETA.-AMINOETHYL)DISULPHIDE DIHYDROCHLORIDE
.BETA.,.BETA.'-DIAMINODIETHYL DISULFIDE DIHYDROCHLORIDE
.BETA.,.BETA.'-DIAMINODIETHYL DISULPHIDE DIHYDROCHLORIDE
NSC39322
C4H12N2S2.2HCl
{2-[(2-aminoethyl)disulfanyl]ethyl}amine dihydrochloride
cystamine-di-hcl
2,2'-Diaminodiethyl disulfide dihydrochloride
cystamine dihydrocloride
cystamine dihyrochloride
Hydrochloride, Cystamine
Dihydrochloride, Cystamine
cystamine bis-hydrochloride
C4H14Cl2N2S2
SCHEMBL320311
SPECTRUM1503821
2-(2-aminoethyldisulfanyl)ethanamine;dihydrochloride
Cystamine dihydrochloride, 96%
CHEMBL1594935
DTXCID7042013
Cystamine dihydrochloride, BioXtra
HMS1922I14
2Aminoethyl disulfide dihydrochloride
Tox21_500297
BDBM50455376
CCG-39369
HB0870
s3695
AKOS005111080
2,2'Dithiodi(ethylammonium) dichloride
FC36410
GS-3569
HY-W020050
LP00297
SB80169
NCGC00093747-01
NCGC00093747-02
NCGC00093747-03
NCGC00260982-01
2,2'Dithiobis(ethylamine) dihydrochloride
Bis(2aminoethyl) disulfide dihydrochloride
BP-30235
SY012856
DB-052857
Ethanamine, 2,2'dithiobis, dihydrochloride
Ethylamine, 2,2'dithiobis, dihydrochloride
C0875
CS-0032055
EU-0100297
C 7255
EN300-314809
Cystamine dihydrochloride, purum, >=98.0% (AT)
Ethanamine, 2,2'dithiobis, hydrochloride (1:2)
SR-01000075778
BIS(BETA-AMINOETHYL)DISULFIDE DIHYDROCHLORIDE
Ethanamine, 2,2'-dithiobis-, hydrochloride (1:2)
SR-01000075778-1
BIS(BETA-AMINOETHYL)DISULPHIDE DIHYDROCHLORIDE
Q27280591
BETA,BETA'-DIAMINODIETHYL DISULFIDE DIHYDROCHLORIDE
BETA,BETA'-DIAMINODIETHYL DISULPHIDE DIHYDROCHLORIDE
Solubility of 2-(2-aminoethyldisulfanyl)ethanamine; dihydrochloride
The compound 2-(2-aminoethyldisulfanyl)ethanamine; dihydrochloride, with the formula C4H12N2S2 3 2HCl, displays unique solubility characteristics.
Generally, this compound is expected to exhibit good solubility in polar solvents, particularly in:
On the other hand, it may demonstrate limited solubility in non-polar solvents due to its polar functional groups. Factors influencing solubility include:
In practical applications, ensuring the compound is in an appropriate solvent system is crucial for maximizing solubility, which can directly impact its reactivity and biological efficacy. This compound stands as a testament to the interplay between molecular structure and solubility behavior.