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Buy DCK, also known as Deschloroketamine, is a synthetic arylcyclohexylamine dissociative anesthetic that is structurally related to Ketamine. As a NMDA receptor antagonist, DCK inhibits excitatory signals in the brain, producing dissociative effects and reducing pain perception. DCK is used widely in neurochemical research to study anesthesia, dissociation, and neuroprotection.
Researchers studying NMDA receptor modulation, dissociative states, and the mechanisms of anesthesia often rely on DCK due to its similarities to ketamine, but with unique properties resulting from the absence of a chlorine atom on the molecule.
At Chems MDPHP Shop, we provide high-purity DCK designed specifically for advanced preclinical research, ensuring precise control and accurate results in your studies.
Chemical Information:
- Chemical Name: Deschloroketamine (DCK)
- Molecular Formula: C13H17NO
- Molecular Weight: 203.28 g/mol
- Form: Powder or pellets
- Purity: >98%
- Appearance: White or off-white crystalline powder or pellets
Research Applications of DCK
DCK is an essential research compound for scientists exploring NMDA receptor antagonists and their effects on neurochemical processes. As a dissociative anesthetic, DCK is known for its ability to induce dissociative states and altered perception, making it useful in studies focused on consciousness, pain modulation, and psychoactive effects.
Key research areas include:
- NMDA Receptor Studies: Investigating DCK’s ability to inhibit NMDA receptor activity, reducing excitatory neurotransmission and producing dissociative and anesthetic effects.
- Anesthesia Research: Exploring the potential of DCK as a model for studying anesthesia and its impact on pain perception and neurological responses.
- Neuroprotection: Examining how DCK can protect neurons from excitotoxic damage, which is relevant in studies related to neurodegenerative diseases.
- Behavioral Dissociation: Researching the effects of DCK on cognition, motor control, and perception, including its dissociative properties and influence on sensory processing.
- Pharmacokinetics and Metabolism: Studying the absorption, distribution, and metabolic breakdown of DCK, particularly how it compares to other dissociatives like ketamine.
Key Benefits of DCK
DCK offers researchers several key benefits when studying dissociative anesthetics and NMDA antagonists. It provides a versatile tool for exploring a wide range of neuropharmacological and behavioral effects.
Advantages of DCK:
- Unique Dissociative Properties: DCK provides profound dissociative effects similar to ketamine, offering insights into altered states of consciousness and anesthesia mechanisms.
- High Purity: Our DCK is produced with a purity exceeding 98%, ensuring accurate, reliable results in your research.
- Multiple Forms: Available in both powder and pellet form, DCK can be easily administered in various experimental settings.
- NMDA Receptor Antagonist: DCK’s interaction with NMDA receptors makes it ideal for studying neuroprotection, anesthesia, and pain modulation.
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Although DCK is intended strictly for research purposes and not for human consumption, it is essential for researchers to understand the potential side effects observed in preclinical studies. As a dissociative anesthetic, DCK can produce profound alterations in perception and behavior, and researchers should be aware of these effects when designing experiments.
Possible Side Effects:
- Dissociative States: DCK may cause severe dissociation, characterized by a sense of detachment from the body, altered perception of time and space, and changes in sensory input.
- Cognitive Impairment: Research models exposed to DCK may exhibit memory disruptions, confusion, and impaired cognitive function, similar to other NMDA antagonists.
- Motor Incoordination: DCK’s effects on motor control may lead to reduced coordination or ataxia, impacting movement and reflexes in animal models.
- Respiratory Depression: In high doses, DCK may cause respiratory depression, which should be carefully monitored during preclinical experiments.
- Neurological Effects: Prolonged or excessive exposure to dissociative anesthetics like DCK can result in neurotoxicity, making dose control critical in research.
Handling and Safety Protocols
Proper safety protocols should be followed when handling DCK to ensure safe laboratory practices and maintain the integrity of your research:
- Use PPE: Always wear gloves, lab coats, and protective eyewear when working with DCK to avoid skin or eye contact.
- Work in a Ventilated Space: Ensure proper ventilation when handling DCK powder to avoid inhalation, and use a fume hood if available.
- Storage: Keep DCK in a cool, dry environment, away from moisture and light, to maintain its stability and potency over time.
Legal Status of DCK
The legal status of DCK (Deschloroketamine) varies depending on country and jurisdiction. Researchers should verify the legality of DCK in their location and ensure compliance with all applicable local and international regulations. DCK is intended strictly for research purposes and is not approved for human use or therapeutic applications.
Where to Buy DCK for Research
At Chems MDPHP Shop, we specialize in providing high-quality research chemicals, including DCK, for researchers conducting advanced neurochemical and behavioral studies. Our products are rigorously tested for purity and consistency, ensuring that you receive the most reliable materials for your experiments.
Why Choose Chems MDPHP Shop To Buy DCK?
- Guaranteed High Purity: Our DCK is manufactured to exceed 98% purity, delivering consistent results for your preclinical research.
- Discreet and Fast Shipping: We offer secure, discreet shipping to research institutions worldwide, ensuring your orders arrive promptly and safely.
- Expert Customer Support: Our knowledgeable team is available to assist with any questions regarding product details, ordering, or your research needs.
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