Buy Deschloroketamine Online UK & USA | What is DCK?
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If you are looking to buy Deschloroketamine online, you have come to the right place. This guide serves as your definitive resource for understanding Deschloroketamine (often called DCK) from its chemical roots as a ketamine analogue to its current standing in the world of dissociative research. We are here to provide the knowledge and quality you need to advance your work.
🧪 What is Deschloroketamine (DCK)? Definition and Overview
Deschloroketamine (DCK) is a dissociative arylcyclohexylamine and an analogue of ketamine, lacking a chlorine atom. It acts as an NMDA receptor antagonist.
Deschloroketamine, frequently abbreviated as DCK, is a synthetic compound belonging to the arylcyclohexylamine class . Chemically, it is known as 2-(methylamino)-2-phenylcyclohexanone. Its structure is almost identical to that of ketamine; the critical difference lies in the absence of a chlorine atom on the phenyl ring—hence the name “deschloro” ketamine. This slight modification results in a unique pharmacological profile that has captured the interest of researchers worldwide.
First synthesized in the mid-20th century, DCK remained a niche molecule until it emerged as a subject of analytical and forensic study around 2015 . Unlike pharmaceutical-grade substances, Deschloroketamine is not approved for human consumption by any regulatory body like the FDA or MHRA. It is strictly intended for use as an analytical reference material and for forensic research to understand its properties and effects within controlled laboratory settings . At Chem14.com, we supply this compound exclusively to support such legitimate scientific inquiries.
🧬 Deschloroketamine DCK Chemical Profile and CAS Number
For any serious researcher, the chemical specifics are non-negotiable. Here are the defining characteristics of DCK.
Key Chemical Identifiers:
- Common Names: DCK, Deschloroketamine, 2′-Oxo-PCM, DXE
- IUPAC Name: 2-Phenyl-2-(methylamino)cyclohexanone
- CAS Number: 7063-30-1 (Freebase) / 4631-27-0 (Hydrochloride)
- Molecular Formula: C₁₃H₁₇NO
- Molecular Weight: 203.28 g/mol
- Purity: ≥98% (as supplied by Chem14.com)
| Property | Specification for Deschloroketamine (DCK) |
|---|---|
| Chemical Class | Arylcyclohexylamine; Dissociative |
| CAS Number | 7063-30-1 / 4631-27-0 |
| Molecular Formula | C₁₃H₁₇NO |
| Molecular Weight | 203.28 g/mol |
| IUPAC Name | 2-Phenyl-2-(methylamino)cyclohexanone |
| Purity (Chem14) | ≥98% (Lab-Tested) |
| Common Research Use | Forensic analysis, NMDA receptor studies, Pharmacokinetic profiling |
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🧠 How Does Deschloroketamine Work? Mechanism of Action Explained
DCK primarily functions as an NMDA receptor antagonist. By blocking these receptors, it inhibits excitatory signals in the central nervous system, leading to dissociative effects. (
The primary mechanism of action for Deschloroketamine, like other compounds in its class, is its role as a non-competitive antagonist of the N-methyl-D-aspartate (NMDA) receptor . These receptors are critical for excitatory neurotransmission, synaptic plasticity, and memory formation.
By binding to and blocking the NMDA receptor, DCK prevents glutamate from activating it. This disrupts the normal flow of information between neurons in the brain and spinal cord. This disconnection is what produces the hallmark dissociative, anesthetic, and hallucinogenic effects associated with the drug class. Research indicates that DCK rapidly crosses the blood-brain barrier, achieving peak concentrations in the brain within 30 minutes, and it has been noted to be more potent than ketamine in its receptor activity . Its longer duration of action, compared to ketamine, is attributed to its slower pharmacokinetic profile .
📊 Best Deschloroketamine Dosage and Usage Tips for Researchers
For research, oral DCK doses range from 10-30mg for common effects. Nasal insufflation requires lower doses (10-20mg). Always use a milligram scale.
When conducting research with DCK, precise dosing is paramount. The information below is derived from reported laboratory data and anecdotal research records for reference purposes only.
| Route of Administration | Threshold | Light | Common | Strong | Duration |
|---|---|---|---|---|---|
| Oral | <5 mg | 5-10 mg | 10-25 mg | 25-40 mg | 4-6 hours |
| Insufflated (Nasal) | <5 mg | 5-10 mg | 10-20 mg | 20-30 mg | 3-5 hours |
Essential Usage Tips:
- Always Use Calibrated Equipment: Due to the potency of DCK, research must be conducted using precise milligram scales.
- Start Low: Begin with the lowest reported doses to understand the compound’s effects in your specific model.
- Controlled Environment: All research should be conducted in a legal, controlled laboratory setting with appropriate safety protocols, including PPE. Review our research ethics and safety guidelines for best practices.
- Volumetric Dosing: For liquid handling, dissolving a known quantity of powder in a solvent (like ethanol or PG) can allow for more accurate micro-dosing.
What Are the Reported Effects of Deschloroketamine?
Users in research contexts describe Deschloroketamine effects as progressive dissociation, euphoria, introspection, and sensory alterations. Positive notes include anxiolysis, mood lift, and bodily lightness. Higher doses bring stronger detachment, hallucinations, and numbness.
Duration spans 4-6 hours orally or 3-6 hours insufflated, longer than many analogues. Effects build dose-dependently, with common ranges 10-20 mg for moderate experiences.
⚠️ What Are the Potential Side Effects and Risks of Deschloroketamine?
Risks include potential for urinary tract damage, cognitive impairment with chronic use, and dangerous interactions with depressants. Acute effects can include confusion and tachycardia.
Understanding the risk profile of any research chemical is fundamental. Based on its structural similarity to ketamine and other arylcyclohexylamines, Deschloroketamine presents a significant research subject concerning its toxicity and safety profile .
- Acute Effects in Test Subjects: Observations can include motor control loss, nausea, confusion, and significant alterations in perception and consciousness .
- Urinary Tract Toxicity: A well-documented risk of chronic ketamine use is severe bladder damage. It is suspected that DCK, as an analogue, may pose similar risks due to toxic metabolites interacting with the bladder epithelium .
- Cognitive Risks: High or repeated doses in animal models raise concerns about potential neurotoxicity, including the formation of Olney’s lesions (vacuolization in certain brain regions), though this remains a complex and debated area of study .
- Addiction Potential: As an NMDA receptor antagonist, DCK has a demonstrated potential for abuse and psychological dependence in research models, necessitating careful control and monitoring .
⚖️ Where is Deschloroketamine Legal? Status in the US, UK, Germany, Australia, and Asia
DCK is a controlled substance in many regions. It is illegal in the UK (Class B), likely controlled under Germany’s NpSG, and considered a controlled substance analogue in the US.
The legal landscape for research chemicals is constantly shifting. We strongly advise all researchers to verify the current regulations in their specific jurisdiction before ordering. At Chem14.com, we supply products for research purposes only and comply with all applicable laws regarding the sale and distribution of analytical reference materials.
| Country / Region | Legal Status of Deschloroketamine (DCK) |
|---|---|
| United Kingdom | Class B under the Misuse of Drugs Act. Possession and supply are illegal . |
| United States | Not explicitly scheduled, but likely considered a controlled substance analogue of Ketamine, making it illegal for human consumption under the Federal Analogue Act. |
| Germany | Controlled under the NpSG (New Psychoactive Substances Act) as of July 2019, making production, trade, and possession illegal . |
| Australia | Likely captured under analogue provisions of state and federal poisons standards. Importation for personal use is illegal. |
| Asia | Varies widely. Highly restricted in countries like Japan and China. Strict bans exist in Singapore and Thailand. |
🧪 DCK vs. Ketamine vs. MXE: A Comparative Look
To understand DCK’s place in research, it is helpful to compare it with its well-known relatives.
| Compound | Potency (vs. Ketamine) | Typical Onset (Oral) | Duration (Oral) | Stimulation Profile |
|---|---|---|---|---|
| Ketamine | 1x (Baseline) | 15-20 min | 1-2 hours | Low-Moderate |
| Deschloroketamine (DCK) | ~2-3x more potent | 20-30 min | 4-6 hours | Moderate |
| Methoxetamine (MXE) | ~3-5x more potent | 20-40 min | 5-7 hours | Moderate-High |
What is the primary use of Deschloroketamine in a lab setting? DCK is primarily used as an analytical reference standard in forensic analysis and toxicology studies. It is also utilized in pharmacological research to investigate the function of NMDA receptors and the effects of dissociative compounds .
How should I store Deschloroketamine powder? For long-term stability, store DCK in a cool, dry place, ideally in a freezer at -20°C, away from light and moisture. This prevents degradation and maintains purity for research .
Can I buy Deschloroketamine with a credit card? Yes, at Chem14.com we offer secure payment options for verified customers. However, due to the nature of the industry, we also encourage cryptocurrency payments for enhanced transaction security and privacy.
Is Deschloroketamine the same as Ketamine? No, it is a structural analogue. While both are arylcyclohexylamines and NMDA antagonists, DCK lacks the chlorine atom found in ketamine. This structural difference results in a distinct pharmacological profile, including higher potency and a longer duration of action.
How long is shipping to the USA or Australia? Shipping times vary by location. We offer discreet global shipping from our facilities. Deliveries to the USA and UK typically take 3-7 business days, while shipments to Australia and Asia may take 7-14 business days. You can track your order on our track order page.
What are the signs of a quality DCK product? High-purity DCK should be accompanied by a Certificate of Analysis (COA) from a third-party lab. At Chem14.com, we ensure all our products, including our dissociative compounds, meet rigorous quality standards.
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What is Deschloroketamine used for in research?
Deschloroketamine is used to study NMDA receptor function, dissociation, and related neuropharmacology in laboratory settings.
How does Deschloroketamine compare to ketamine?
DCK lasts longer and may feel more potent, with similar dissociation but differences in metabolism and side effect profile.
Is Deschloroketamine legal to buy in the UK or USA?
In the USA, it is unscheduled federally but subject to analog acts. In the UK, strict controls apply. Confirm local laws.
What are common side effects of Deschloroketamine?
Effects include nausea, confusion, motor loss, tachycardia, and potential psychological distress at higher doses.
Where can I buy pure Deschloroketamine online?
Chem14.com offers high-quality Deschloroketamine for sale with secure shipping to researchers in targeted regions. Visit our dissociatives section.
How should Deschloroketamine be stored for research?
Keep in a cool, dry place away from light and moisture to maintain stability.
Can Deschloroketamine be combined with other research compounds?
Interactions vary; consult protocols and avoid untested mixes in research.
What makes Chem14.com a reliable vendor for Deschloroketamine?
We prioritise purity, ethics, and customer support. See our about page and return policy.
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