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Chemical Components and Synonyms
EPT Fumarate:
IUPAC Name: N-Ethyl-N-propyl-1H-indole-3-ethanamine fumarate
Common Synonyms: Ethylpropyltryptamine fumarate
CAS Number
EPT Fumarate: This compound may not have a widely recognized CAS number due to its niche status in research.
Molecular Formula and Structure
EPT Fumarate:
Molecular Formula: C15H22N2 · C4H4O4 (including the fumarate)
Structural Diagram:
C10H6(N(CH2CH2CH3)(CH2CH3))CH2CH2 · C4H4O4
Purity and Grade
Purity: ≥ 98%
Grade: Research Grade
Physical and Chemical Properties
- Form: Powder (Fumarate Salt)
- Solubility: Soluble in water and organic solvents
- Molecular Weight: Approximately 340.40 g/mol (including the fumarate)
Safety and Handling Information
- Hazard Symbols: ⚠️
- Precautionary Statements:
- Avoid inhalation, ingestion, and contact with skin and eyes outside of research protocols.
- Use personal protective equipment (PPE) such as gloves and safety goggles during handling in a research setting.
- First-Aid Measures:
- If inhaled, move to fresh air and seek medical attention if necessary.
- In case of skin contact, rinse with plenty of water and soap.
- If ingested in a non-research context, seek immediate medical help.
Usage and Applications
EPT Fumarate is primarily used in research to investigate its potential psychoactive effects and interactions with serotonin receptors. Studies may focus on understanding its pharmacodynamics and pharmacokinetics.
Storage Conditions
Store in a cool, dry place away from direct sunlight. Keep the container tightly closed and store at room temperature.
Regulatory Information
This product complies with international chemical safety standards. Researchers must ensure compliance with local regulations concerning the use of EPT in their studies.
Shipping Information
Clients are responsible for verifying the legal status of EPT in their country before purchasing. Our packaging meets industry standards to ensure safe delivery, and we offer various shipping options for your convenience.
Technical Support and Contact Information
For any questions or technical support, please visit our Contact Us page.
FAQ
1. What is the form of EPT in this product?
EPT is provided in the fumarate salt form, as a powder, for research purposes.
2. What are the typical applications of EPT Fumarate?
It is used in research to study potential psychoactive effects and serotonin receptor interactions.
3. How should I store EPT Fumarate?
Store it in a cool, dry place away from direct sunlight, at room temperature.
4. Are there any shipping restrictions for EPT Fumarate?
Yes, clients must verify the legal status of EPT in their country before purchasing.
5. Who do I contact if I have questions about EPT Fumarate?
For any inquiries, please visit our Contact Us page for assistance.
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EPT Fumarate
Introduction
EPT Fumarate, also known as N-Ethyl-N-propyltryptamine fumarate, is a synthetic compound belonging to the tryptamine class. Tryptamines are well–known for their structural similarity to the neurotransmitter serotonin and their potential psychoactive properties. EPT Fumarate has attracted interest in the scientific community for its potential applications in neuropharmacology and psychopharmacology research. This article provides a comprehensive overview of EPT Fumarate, including its chemical properties, pharmacology, and research applications.
Chemical Properties
- IUPAC Name: N-ethyl-N-propyl-1H-indole-3-ethanamine fumarate
- Molecular Formula: C15H22N2 (base form), C4H4O4 (fumaric acid)
- Molecular Weight: 230.35 g/mol (base form), 116.07 g/mol (fumaric acid)
- Chemical Structure: The structure features a tryptamine core with an ethyl group and a propyl group attached to the nitrogen atom, combined with fumaric acid to form the fumarate salt.
Pharmacology
EPT is a synthetic tryptamine that interacts with the serotonin receptors in the brain. Tryptamines like EPT are known to influence mood, perception, and cognition through their action on these receptors.
- Mechanism of Action: EPT is hypothesized to act as an agonist at serotonin receptors, particularly the 5-HT2A receptor, which is known to play a key role in mediating psychedelic experiences.
- Potential Effects: Preliminary research suggests that EPT may induce altered states of consciousness, perceptual changes, and mood alterations. However, comprehensive pharmacokinetic and pharmacodynamic studies are required to fully understand its effects and mechanisms.
Advantages of Fumarate Salt Form
- Enhanced Stability: The fumarate salt form of EPT provides enhanced stability compared to the free base, making it more suitable for various formulations and long-term storage.
- Improved Bioavailability: Fumarate salts generally exhibit better bioavailability, ensuring that a greater proportion of the administered dose is absorbed and utilized by the body.
- Ease of Handling: The fumarate form is often easier to handle and incorporate into various delivery systems, including research formulations.
Research Applications
EPT Fumarate is primarily utilized in scientific research to explore its pharmacological properties and potential therapeutic applications. Key research areas include:
- Neuropharmacology: Investigating the compound’s interaction with serotonin receptors and its effects on neurotransmitter systems.
- Psychopharmacology: Examining the psychoactive effects to understand the mechanisms underlying altered states of consciousness.
- Therapeutic Potential: Exploring the potential use of EPT in psychotherapy, particularly for conditions such as depression, anxiety, and PTSD.
Safety and Ethical Considerations
Given the potent nature of psychoactive compounds, it is essential to adhere to stringent safety protocols and ethical guidelines when conducting research with EPT Fumarate. Researchers should be aware of the potential for psychological effects and ensure that studies are conducted responsibly and ethically.
Conclusion
EPT Fumarate is a synthetic tryptamine with significant potential in neuropharmacology and psychopharmacology research. As research progresses, a deeper understanding of its pharmacological properties and therapeutic potential will emerge, contributing to the development of novel treatments for various psychological disorders.
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