PIPERAZINE, 2,2,5-TRIMETHYL-
CAS No.:
139139-56-3
M. Wt:
128.21500
M. Fa:
C7H16N2
InChI Key:
BHUBBXYEMNDWPZ-UHFFFAOYSA-N
Names and Identifiers of PIPERAZINE, 2,2,5-TRIMETHYL-
CAS Number |
139139-56-3 |
|---|---|
MDL Number |
MFCD11052516 |
IUPAC Name |
2,2,5-trimethylpiperazine |
InChI |
InChI=1S/C7H16N2/c1-6-4-9-7(2,3)5-8-6/h6,8-9H,4-5H2,1-3H3 |
InChIKey |
BHUBBXYEMNDWPZ-UHFFFAOYSA-N |
Canonical SMILES |
CC1CNC(C)(C)CN1 |
UNSPSC Code |
12352100 |
Physical and chemical properties of PIPERAZINE, 2,2,5-TRIMETHYL-
Exact Mass |
128.13100 |
|---|---|
LogP |
1.00390 |
Molecular Formula |
C7H16N2 |
Molecular Weight |
128.21500 |
PSA |
24.06000 |
Safety Information of PIPERAZINE, 2,2,5-TRIMETHYL-
Applications of PIPERAZINE, 2,2,5-TRIMETHYL-
2,2,5-Trimethylpiperazine finds applications in various fields:
- Pharmaceuticals: It serves as a building block for synthesizing pharmaceutical agents and may have direct therapeutic applications due to its biological activity.
- Chemical Industry: Used in the production of specialty chemicals and as a ligand in coordination chemistry.
- Polymer Science: It is utilized in the synthesis of polyurethanes and other polymeric materials due to its ability to enhance mechanical properties.
Interaction Studies of PIPERAZINE, 2,2,5-TRIMETHYL-
Studies examining the interactions of 2,2,5-trimethylpiperazine with biological targets have indicated its potential role in modulating neurotransmitter systems. Research has focused on:
- Receptor Binding Studies: Investigating how this compound interacts with serotonin and dopamine receptors could provide insights into its anxiolytic and antidepressant potential.
- Metabolic Pathways: Understanding how it is metabolized in biological systems can help elucidate its pharmacokinetic properties and therapeutic efficacy.
Biological Activity of PIPERAZINE, 2,2,5-TRIMETHYL-
Research into the biological activity of 2,2,5-trimethylpiperazine has shown potential neuropharmacological effects. Compounds with similar structures have been investigated for their activity as:
- Antidepressants: Some studies suggest that piperazine derivatives may exhibit mood-enhancing properties.
- Anxiolytics: There is interest in their ability to modulate anxiety-related behaviors through interaction with neurotransmitter systems such as serotonin and dopamine.
