Buy DeschloroEtizolam 5 MG Pellets Online
Buy DeschloroEtizolam 5 MG Pellets is a thienodiazepine derivative and close analogue of the widely researched etizolam. Known for its potent sedative, anxiolytic, and hypnotic properties, DeschloroEtizolam acts on GABA-A receptors in the brain, enhancing the effects of GABA (gamma-aminobutyric acid), the brain’s primary inhibitory neurotransmitter. This makes it a valuable compound for scientific research focused on anxiety, sedation, and central nervous system regulation.
Each DeschloroEtizolam 5 MG Pellets contains 5 mg of pure DeschloroEtizolam, formulated for precision dosing and accurate experimental results. These pellets are ideal for researchers studying benzodiazepine-like effects on anxiety, sedation, and receptor activity in laboratory settings.
Chemical Structure and Properties
- IUPAC Name: 4-(2-methylphenyl)-2H,6H,7H-thieno[3,2-e]-1,2,4-triazolo[4,3-a][1,4]diazepine
- Molecular Formula: C16H15N3S
- Molecular Weight: 281.38 g/mol
DeschloroEtizolam is structurally similar to etizolam, with the key difference being the absence of a chlorine atom, which alters its receptor binding characteristics. As a thienodiazepine, it has a fused thiophene ring rather than a benzene ring found in traditional benzodiazepines, influencing its potency and interaction with GABA-A receptors. DeschloroEtizolam 5 MG Pellets offer researchers a stable, precision-dosed formulation for studying these unique interactions.
Order DeschloroEtizolam 5 MG Pellets Online
DeschloroEtizolam 5 MG Pellets are designed for precision dosing in controlled research environments. These pellets are typically used in in vivo studies focused on anxiety, sedation, and GABA receptor activity. Researchers should follow proper safety protocols and dosage guidelines to ensure reliable and accurate results.
Potential Applications of DeschloroEtizolam 5 MG Pellets
- GABA Receptor Research: DeschloroEtizolam acts on GABA-A receptors, enhancing the inhibitory effects of GABA. Researchers can use DeschloroEtizolam 5 MG Pellets to investigate how thienodiazepines modulate GABAergic activity, with applications in anxiety studies, sedation, and central nervous system regulation.
- Anxiolytic and Sedative Studies: DeschloroEtizolam’s sedative and anxiolytic effects make it a valuable compound for research focused on stress response, anxiety disorders, and sleep regulation. These pellets allow for precise dosing in experiments aimed at understanding the pharmacological mechanisms of anxiolysis and sedation.
- Neuropharmacology and Receptor Binding: The interaction between DeschloroEtizolam and GABA-A receptors provides insight into how benzodiazepine analogs affect neurotransmitter modulation and receptor binding. Researchers studying the pharmacodynamics of thienodiazepines can use DeschloroEtizolam 5 MG Pellets to explore these effects in neurochemical and behavioral studies.
Safety and Handling
Due to the potent sedative and anxiolytic properties of DeschloroEtizolam, researchers must handle DeschloroEtizolam 5 MG Pellets with care in a laboratory setting:
- Psychoactive Properties: DeschloroEtizolam has strong effects on the central nervous system, including sedation, muscle relaxation, and anxiety reduction. Researchers should ensure that all work is conducted in a controlled environment to prevent accidental exposure or misuse.
- Handling Precautions: Always wear appropriate personal protective equipment (PPE), including gloves, safety goggles, and lab coats, when handling DeschloroEtizolam 5 MG Pellets. Research should be conducted in well-ventilated areas or under fume hoods to avoid accidental inhalation or skin contact. Follow institutional safety protocols in the event of accidental exposure.
Potential Side Effects of DeschloroEtizolam 5 MG Pellets
While DeschloroEtizolam 5 MG Pellets are strictly for research purposes and not for human consumption, researchers should be aware of potential side effects in biological models:
- Sedation and Drowsiness: DeschloroEtizolam can produce significant sedation and drowsiness due to its action on GABA-A receptors. These effects are valuable for studying the sedative properties of thienodiazepines.
- Anxiety Reduction and Muscle Relaxation: DeschloroEtizolam’s anxiolytic properties may lead to reduced anxiety and muscle relaxation in test subjects, making it ideal for studies on the management of stress and anxiety disorders.
- Respiratory Depression: As with other GABAergic compounds, DeschloroEtizolam may cause respiratory depression, especially at higher doses. Researchers should monitor respiratory function, heart rate, and blood pressure during in vivo studies to ensure the safety of their models.
- Potential for Tolerance and Dependence: Long-term exposure to benzodiazepine analogs can result in tolerance and dependence. Researchers conducting chronic studies should be aware of the potential for altered receptor sensitivity and withdrawal symptoms in their experimental models.
Why Choose To Buy DeschloroEtizolam 5 MG Pellets for Your Research?
- Precision Dosing: Each pellet contains exactly 5 mg of DeschloroEtizolam, ensuring accurate and controlled dosing in scientific studies. This precision allows researchers to conduct dose-response experiments and achieve reproducible results in their research.
- High Purity: Our DeschloroEtizolam 5 MG Pellets are manufactured to the highest standards of purity and quality. Each batch is rigorously tested for consistency and performance, ensuring reliable outcomes for laboratory research.
- Convenient Pellet Form: The pellet form simplifies handling, administration, and dosing, making it ideal for long-term studies or experiments that require consistent and repeatable measurements.
Legal Disclaimer
DeschloroEtizolam 5 MG Pellets are intended strictly for research and analytical purposes. They are not for human consumption or recreational use. Researchers must comply with all local, national, and international laws regarding the handling, storage, and use of this compound. Proper safety protocols must be followed at all times in laboratory environments.
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