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4-HO-DET, chemically designated as 4-hydroxy-N,N-diethyltryptamine, represents a prominent synthetic indole alkaloid belonging to the substituted tryptamine class. Researchers recognize this compound under historical codenames Ethocin and CZ-74. Our catalog at Trusted Meds Store supplies high grade analytical reference standards suited for certified laboratory environments and chemical analysis. Qualified researchers seeking to buy 4-HO-DET receive reference materials produced under strict protocol controls to ensure batch consistency and structural stability.
Chemical Profile and Structure of 4-HO-DET
Structural characterization shows 4-HO-DET possessing a bicyclic indole core linked at position R3 to an amino group via an ethyl side chain. The molecule contains a hydroxyl functional group attached at position R4 of the indole ring, along with two ethyl groups attached to the terminal nitrogen atom. As a lower homologue of 4-AcO-DET and an N-substituted diethyl analog of psilocin, this substance exhibits distinct physical characteristics appropriate for comparative evaluation within Research Chemicals studies.
| Property | Specification |
|---|---|
| Systematic IUPAC Name | 3-[2-(diethylamino)ethyl]-1H-indol-4-ol |
| Common Synonyms | 4-HO-DET, Ethocin, CZ-74 |
| CAS Registry Number | 22204-89-3 |
| Molecular Formula | C14H20N2O |
| Formula Mass | 232.32 g/mol |
| Chemical Classification | Substituted Tryptamine |
Historical Background and Scientific Discovery
First synthesized during the late 1950s by Swiss researchers Albert Hofmann and Franz Troxler at Sandoz laboratories, CZ-74 served as a principal focus in early psycholytic clinical investigations. Human clinical evaluations conducted during the 1960s by German researchers Hanscarl Leuner and Gerhard Baer explored 4-HO-DET alongside its phosphorylated derivative CEY-19. Scientific records archived on Wikipedia 4-HO-DET Documentation outline these early clinical protocols, providing valuable documentation for contemporary researchers studying structural relationship models across tryptamine derivatives.
Pharmacological Receptor Binding Actions
In vitro binding assays document 4-HO-DET acting as a non-selective agonist across 5-HT2A, 5-HT2B, and 5-HT2C serotonin receptors. Scientific data compiled in the PubChem Compound Record verify high affinity toward central serotonergic sites. Comparative pharmacological studies published in PMC Receptor Studies detail how replacing methyl substitutions with ethyl substitutions on the terminal nitrogen atom alters metabolic stability and receptor engagement profiles in contrast to psilocin.
- Interaction profile focused on central 5-HT2A serotonin receptor binding
- Diethyl substitution pattern on the terminal amine core
- Distinct chemical stability profile relative to 4-AcO-DET prodrug forms
- Full compatibility with analytical HPLC and GC-MS testing methods
Specifications and Quality Assurance
Laboratory research teams sourcing supplies through our Shop receive fully verified materials accompanied by comprehensive chemical identity documentation. Every lot undergoes testing to verify exact molecular composition, moisture thresholds, and baseline purity parameters.
- Available Formats: Crystalline powder or 4-HO-DET tablets formats
- Storage Requirements: Cool, dry environment sealed against light exposure
- Purity Benchmark: Exceeds 98 percent analytical standard
- Intended Application: In vitro scientific laboratory research only
Storage and Handling Guidelines
Preserving compound integrity requires maintaining 4-HO-DET in airtight containers under inert atmosphere at low temperatures. Ambient humidity, elevated temperatures, or light exposure accelerate oxidative degradation of the 4-hydroxy functional group. Laboratory staff handling this reagent must maintain standard personal protective gear, including protective gloves, safety glasses, and adequate fume hood ventilation according to institutional guidelines.
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