Deschloroketamine (DCK), also known as 2′-Oxo-PCM or DXE, is a high-purity arylcyclohexylamine analytical reference standard widely used in forensic toxicology, analytical chemistry, medicinal chemistry, neuropharmacology, and pharmaceutical research. Structurally related to Ketamine, Deschloroketamine differs by the absence of the chlorine substituent on the phenyl ring, making it a valuable compound for comparative structure–activity relationship (SAR) investigations.
Today, DCK is supplied exclusively as an analytical reference material for qualified laboratories conducting scientific, forensic, and educational research.
What is Deschloroketamine?
Deschloroketamine is a synthetic arylcyclohexylamine developed during investigations into compounds related to ketamine. It serves as an important analytical standard for studying NMDA receptor pharmacology, metabolism, analytical detection, and medicinal chemistry.
Its well-characterized molecular structure makes it valuable for forensic laboratories and pharmaceutical researchers investigating dissociative anesthetic analogues.
Chemical Structure and Properties
Deschloroketamine contains several characteristic structural features:
- Arylcyclohexylamine backbone
- Cyclohexanone core
- Methylamino substituent
- Phenyl ring without chlorine substitution
- High chemical stability
- Crystalline laboratory-grade powder
These structural properties support reproducible chromatographic behavior and accurate analytical identification.
Pharmacological Research
Experimental research has shown that Deschloroketamine interacts primarily with the N-methyl-D-aspartate (NMDA) receptor, making it a valuable compound for neuropharmacology and receptor-binding investigations.
Current scientific research includes:
- NMDA receptor pharmacology
- Glutamatergic signaling research
- Neurochemical pathway investigations
- Structure–activity relationship (SAR) analysis
- Medicinal chemistry optimization
- Drug metabolism studies
- Comparative research with ketamine analogues
These studies contribute to a broader understanding of arylcyclohexylamine pharmacology and receptor interactions.
Scientific Research Applications
Deschloroketamine is commonly used in:
- Forensic toxicology laboratories
- Pharmaceutical research
- Academic neuroscience
- Medicinal chemistry programs
- Analytical chemistry laboratories
- Drug metabolism investigations
- Quality assurance laboratories
- Reference standard development
- Neuropharmacology research
Analytical Applications
Professional laboratories utilize Deschloroketamine for:
- LC-MS/MS calibration
- GC-MS analysis
- HPLC method development
- High-Resolution Mass Spectrometry (HRMS)
- Toxicology screening
- Method validation
- Quality control testing
- Analytical reference library development
Its well-characterized analytical profile enables accurate identification and differentiation from structurally related arylcyclohexylamines.
Why Researchers Choose Deschloroketamine
Researchers select Deschloroketamine because it provides:
- Well-characterized molecular structure
- High analytical purity
- Reliable laboratory performance
- Valuable NMDA receptor research model
- Consistent analytical reference material
- Broad forensic applications
- Excellent comparison compound for SAR investigations
These qualities make Deschloroketamine an important analytical standard across multiple scientific disciplines.
Related Research Compounds
Researchers frequently compare Deschloroketamine with:
- Ketamine
- 2-Fluorodeschloroketamine (2-FDCK)
- Methoxetamine (MXE)
- PCP (Phencyclidine)
- Tiletamine
- Fluorexetamine (FXE)
- Other arylcyclohexylamine derivatives
Comparative studies improve understanding of receptor affinity, metabolism, analytical identification, and molecular structure within the arylcyclohexylamine family.
Storage and Handling
For optimal laboratory stability:
- Store in airtight laboratory containers.
- Protect from moisture and humidity.
- Avoid prolonged exposure to light.
- Maintain recommended laboratory storage temperatures.
- Handle using appropriate laboratory PPE.
- Follow institutional laboratory safety procedures.
Frequently Asked Questions
What is Deschloroketamine?
Deschloroketamine (DCK) is an arylcyclohexylamine analytical reference standard used in forensic toxicology, medicinal chemistry, neuropharmacology, and analytical chemistry research.
Which laboratories use Deschloroketamine?
It is commonly used by forensic laboratories, pharmaceutical researchers, academic institutions, medicinal chemists, analytical chemistry laboratories, and toxicology facilities.
Which analytical techniques are suitable for Deschloroketamine?
Researchers commonly analyze Deschloroketamine using LC-MS/MS, GC-MS, HPLC, and HRMS for compound identification, calibration, quality assurance, and analytical method validation.
Why is Deschloroketamine important in research?
Its defined chemical structure, NMDA receptor interaction profile, and analytical consistency make it valuable for pharmacological investigations, forensic studies, and medicinal chemistry research.
Is Deschloroketamine intended only for research?
Yes. This product is supplied exclusively for laboratory, analytical, scientific, and educational research purposes.
Disclaimer
Deschloroketamine (DCK) is supplied strictly for laboratory, analytical, scientific, and educational research purposes only. It is not intended for human consumption, medical treatment, veterinary use, therapeutic applications, or diagnostic purposes. Researchers are responsible for ensuring compliance with all applicable laws, institutional policies, and laboratory safety regulations.





