Chem-mist 2F-DCK 20% Spray

29.40

Description

Introduction

The Chem-mist 2F-DCK 20% Spray is a specialized research quality formulation of 20 % (w/v) by 2-fluorodeschloroketamine (2F-DCK) Dissolved in a suitable solvent base. Designed exclusively for laboratory and analytical use, this product enables precise and controlled dosing and supports research into dissociative pharmacology under strictly regulated conditions. Chem-mist 2F-DCK 20% Spray

2F-DCK is a ketamine analog of the arylcyclohexylamine class. It is chemically similar to deschloroketamine (DCK) and ketamine, with a fluorine substitution on the phenyl ring. Due to its relatively recent appearance, much of its pharmacology has not been extensively studied, but it is believed to function as NMDA receptor antagonist, with dissociative and anesthetic-like effects in model studies.


Key Features

  • 20 % Active Concentration — A robust formulation that provides sufficient concentration for experimental use.

  • Metered Spray Delivery — Ensures consistent and reproducible microdosing in experimental systems.

  • Analytical Purity — Produced to strict laboratory standards to minimize impurities and batch variations.

  • Stability-optimized Medium — Formulated with solvents and stabilizers to maintain chemical integrity.

  • Compact Application Form — Supplied in a sealed spray bottle to support safe, controlled use in the lab. Chem-mist 2F-DCK 20% Spray


Advantages

  • Makes precise dosage control possibly in behavioral or receptor binding studies.

  • Supports comparative research with ketamine, DCK and other dissociatives.

  • Facilitates rapid absorption and dispersion in solution-based assays.

  • Reduces handling of powdered substances, which safety and convenience increases.

  • Ideal for pharmacodynamic, metabolic and toxicological studies in consistent form.


Usage

  1. Shake gently of the bottle before use to ensure homogeneity.

  2. Activate the spray to administer a predetermined microdose of 2F-DCK into your experimental setup (e.g., metered medium, buffer solution, or administration reservoir).

  3. Document accurately the volume and time of application for reproducibility.

  4. Keep the spray on a cool, dark, dry place, preferably below 25 °C, protected from light and moisture.

  5. Store and remove leftovers according to your laboratory's usual chemical waste protocols.

⚠️ For laboratory and analytical use only. Not suitable for human or veterinary use.


3 Frequently Asked Questions (FAQ)

Q1. What is the mechanism of action of 2F-DCK?
Although research is limited, it is believed that 2F-DCK Blocks NMDA (N-methyl-D-aspartate) receptors, similar to ketamine and related dissociatives, affecting excitatory neurotransmission and producing dissociative effects in model systems.

Q2. Are there any known risks or toxicity data?
Preliminary studies and forensic reports indicate that 2F-DCK may decreased consciousness, agitation and hallucinations can cause, and in some cases fatal intoxications have been reported. Due to its structural similarity to ketamine, it may have a similar abuse potential and side effects to share.

Q3. How stable is the 20 % formulation over time?
The formulation is stabilized for a reasonable shelf life when stored correctly (cool, dark, dry). However, it is recommended to check regularly quality controls (e.g. HPLC, GC) to confirm concentration and purity over time.


Warning & Legal Notice

  • 2F-DCK is a new psychoactive substance (NPS) and is subject to legal regulation or prohibition in many jurisdictions.

  • Always check the local regulations prior to purchase or use.

  • Follow strict safety, handling and waste protocols according to your setting.


Conclusion

The Chem-mist 2F-DCK 20% Spray is an advanced, laboratory-ready solution designed for precise studies of dissociative anesthetics and NMDA receptor antagonists. Its metered spray format, high concentration, and analytical purity make it a valuable tool in laboratories investigating the pharmacology, metabolism, toxicity, and structure-activity relationships of ketamine analogs.

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