Methyl 3-amino-2-(4-chlorophenyl)propanoate hydrochloride
Names and Identifiers of 1001180-63-7
CAS Number |
1001180-63-7 |
|---|---|
IUPAC Name |
methyl 3-amino-2-(4-chlorophenyl)propanoate;hydrochloride |
InChI |
InChI=1S/C10H12ClNO2.ClH/c1-14-10(13)9(6-12)7-2-4-8(11)5-3-7;/h2-5,9H,6,12H2,1H3;1H |
InChIKey |
FQEVXFYIXIHKET-UHFFFAOYSA-N |
Canonical SMILES |
COC(=O)C(CN)C1=CC=C(C=C1)Cl.Cl |
Physical and chemical properties of 1001180-63-7
Exact Mass |
249.03200 |
|---|---|
LogP |
3.05760 |
Molecular Formula |
C10H13Cl2NO2 |
Molecular Weight |
250.12200 |
PSA |
52.32000 |
Applications of 1001180-63-7
This compound has diverse applications across various fields:
- Pharmaceutical Research: It serves as a building block for synthesizing complex organic molecules and exploring new therapeutic agents.
- Neurological Studies: Its effects on neurotransmitter systems make it a candidate for research into treatments for neurological disorders.
- Material Science: Methyl 3-amino-2-(4-chlorophenyl)propanoate hydrochloride is also investigated for its potential in developing new materials.
Interaction Studies of 1001180-63-7
Studies investigating the interactions of methyl 3-amino-2-(4-chlorophenyl)propanoate hydrochloride reveal its capacity to modulate various cellular pathways. It may interact with specific receptors and enzymes involved in neurotransmission, influencing both excitatory and inhibitory signals within the nervous system. These interactions are crucial for understanding its potential therapeutic applications and side effects.
Biological Activity of 1001180-63-7
Research indicates that methyl 3-amino-2-(4-chlorophenyl)propanoate hydrochloride exhibits significant biological activity, particularly in the modulation of neurotransmitter systems. It is believed to influence neurotransmitter release and uptake, which may have implications for neurological disorders. Studies suggest potential therapeutic effects in conditions such as depression and anxiety, although further research is necessary to fully elucidate its mechanisms of action.