string(2) "en" array(14) { [1]=> string(2) "en" [2]=> string(2) "fr" [10]=> string(2) "de" [4]=> string(2) "es" [5]=> string(2) "it" [6]=> string(2) "el" [8]=> string(2) "hu" [12]=> string(2) "nl" [3]=> string(2) "pl" [7]=> string(2) "ro" [14]=> string(5) "sv-se" [15]=> string(2) "bg" [13]=> string(2) "hr" [11]=> string(2) "da" }
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3-CPM

3-CPM


Definition and Classification

3-CPM, short for 3-Chlorophenmetrazine, belongs to the class of research chemicals known as phenmetrazine derivatives. These substances are synthetic compounds designed for scientific study and are not intended for human consumption. As a novel psychoactive substance (NPS), 3-CPM falls under the broader category of designer drugs, created to mimic the effects of controlled substances while potentially circumventing legal restrictions.

Chemical Structure and Properties

The molecular structure of 3-CPM features a phenmetrazine core with a chlorine atom substituted at the 3-position of the phenyl ring. This modification alters its pharmacological profile compared to the parent compound. 3-CPM typically appears as a white crystalline powder, though its physical characteristics may vary depending on synthesis methods and purity. Its solubility and stability properties are of particular interest to researchers studying its behavior in various environments.

Research Applications and Considerations

Scientists utilize 3-CPM in laboratory settings to investigate its pharmacodynamics, potential therapeutic applications, and toxicological effects. However, it's crucial to note that research on 3-CPM and similar compounds is still in its early stages. The lack of comprehensive data on long-term effects and interactions necessitates extreme caution in handling and studying these chemicals. Researchers must adhere to strict protocols and ethical guidelines when working with 3-CPM to ensure safety and scientific integrity.

Chemical Structure and Properties

3-CPM, or 3-Chlorophenmetrazine, is a novel psychoactive substance belonging to the phenmetrazine class of stimulants. Its molecular structure features a chlorine atom at the 3-position of the phenyl ring, which distinguishes it from related compounds. This unique arrangement contributes to its specific pharmacological profile and effects on the human body.

Neurochemical Interactions

The primary mechanism of action for 3-CPM involves its interaction with monoamine neurotransmitter systems in the brain. It acts as a potent releaser and reuptake inhibitor of dopamine and norepinephrine, while also affecting serotonin to a lesser extent. These neurotransmitters play crucial roles in regulating mood, attention, and energy levels.

Physiological and Psychological Effects

Users of 3-CPM typically report stimulant effects similar to those of amphetamines, including increased energy, focus, and euphoria. However, the compound's unique chemical structure may lead to subtle differences in its effects profile compared to more well-known stimulants. Potential side effects can include increased heart rate, elevated blood pressure, and appetite suppression. It's important to note that due to its status as a research chemical, long-term effects and safety profiles remain largely unknown.


Neuropharmacological Research

3-CPM compounds offer intriguing possibilities for neuropharmacological research. These chemicals may provide valuable insights into the mechanisms of neurotransmitter function, particularly in relation to monoamine systems. By studying the interactions of 3-CPM with various receptors and transporters, researchers can potentially uncover new pathways for treating neurological and psychiatric disorders.

Potential Therapeutic Applications

While still in the early stages of investigation, 3-CPM compounds show promise for potential therapeutic applications. Some researchers speculate that these chemicals could be developed into novel treatments for conditions such as depression, anxiety, or attention deficit disorders. However, it's crucial to note that extensive clinical trials and safety studies would be necessary before any such applications could be considered.

Chemical Structure Analysis

The unique structure of 3-CPM compounds presents opportunities for chemists to study structure-activity relationships. By examining how slight modifications to the 3-CPM molecule affect its properties and interactions, researchers can gain valuable knowledge about chemical bonding and molecular behavior. This information could potentially lead to the development of new classes of compounds with tailored properties for specific research or industrial applications.


Proper Storage and Handling

Store 3-CPM research chemicals in a cool, dry place away from direct sunlight and heat sources. Keep them in airtight containers clearly labeled with the compound name and safety warnings. Restrict access to authorized personnel only, and maintain a detailed inventory of all chemicals present in the laboratory.

Emergency Preparedness

Familiarize yourself with the Material Safety Data Sheet (MSDS) for 3-CPM compounds. Have appropriate first aid supplies and emergency equipment readily available. Establish clear protocols for accidental exposure or spills, and ensure all lab personnel are trained in emergency procedures.

Legal and Ethical Considerations

Be aware of the legal status of 3-CPM research chemicals in your jurisdiction. Adhere to all relevant regulations and obtain necessary permits before conducting research. Always prioritize ethical considerations and ensure your work aligns with established scientific and ethical standards in the field. This product is for laboratory research only, strictly not for human consumption.

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3-CPM

  • Brand: Research Chemicals
  • Product Code: 3-CPM
  • Only Ships to: Worldwide (Excluding USA and UK)
  • Availability: Out Of Stock
  • £28.00


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