Buy 3-HO-PCP Powder: Premium Research Chemical for Advanced Dissociative Studies
Introduction to Buy 3-HO-PCP Powder
Buy 3-HO-PCP Powder, also known as 3-Hydroxy-Phencyclidine, is a high-purity arylcyclohexylamine research chemical belonging to the dissociative class. This potent NMDA receptor antagonist is a structural analog of PCP with a hydroxy substitution at the 3-position of the phenyl ring. Researchers select 3-HO-PCP Powder to investigate glutamatergic neurotransmission, dissociative effects, structure-activity relationships (SAR) of hydroxylated arylcyclohexylamines, and neuropharmacological mechanisms in controlled laboratory settings. The fine crystalline powder form allows flexible and accurate dosing for reproducible behavioral and electrophysiological studies. Supplied exclusively for scientific research, 3-HO-PCP Powder supports cutting-edge investigations into dissociative pharmacology, anesthesia-like states, and comparative NMDA antagonism.
Key Features and Benefits of 3-HO-PCP Powder
3-HO-PCP Powder offers excellent chemical stability and high purity in its crystalline form. Key features include the 3-hydroxy substitution on the phenyl ring, which enhances polarity and produces a distinct qualitative dissociative profile compared to PCP or 3-Me-PCP in research models.
Benefits for researchers: reproducible data on NMDA channel blockade, insights into dissociative and anesthetic-like effects, and value for studying motor coordination, sensory processing, and potential neuroprotective mechanisms. 3-HO-PCP Powder enables advanced dissociative SAR research with a clean, potent profile suitable for receptor binding assays, behavioral studies, and comparative pharmacology with PCP, 3-Me-PCP, or 3F-PCP analogs.
Product Specifications
- Chemical Name: 1-(1-(3-Hydroxyphenyl)cyclohexyl)piperidine (3-Hydroxy-Phencyclidine / 3-HO-PCP)
- Form: Fine crystalline powder
- Purity: ≥98% (verified by HPLC)
- Molecular Weight: 245.36 g/mol
- Molecular Formula: C17H23NO
- CAS Number: Not widely assigned (novel research chemical)
- Solubility: Soluble in organic solvents (DMSO, ethanol, acetone); limited water solubility
- Storage: Cool, dry, dark place in airtight container; stable up to 2 years when sealed
3-HO-PCP Powder ships in professional, tamper-evident packaging to preserve purity and stability.
Applications and Usage
In professional laboratories, 3-HO-PCP Powder supports in-vitro NMDA receptor binding and functional assays, electrophysiology studies, locomotor activity and sensory processing models, and investigations into dissociative effects. It aids detailed SAR analyses of hydroxylated arylcyclohexylamines and comparative studies with PCP, 3-Me-PCP, and 3F-PCP. Always use with calibrated analytical equipment and approved research protocols. This product is strictly not for human or animal consumption.
Purity and Testing
Every batch of 3-HO-PCP Powder undergoes rigorous third-party testing via HPLC to confirm ≥98% purity and ensure absence of impurities or contaminants. Full certificates of analysis (CoA) accompany each order, providing researchers with confidence for reproducible, high-quality data in scientific publications.
Safety and Handling
Handle 3-HO-PCP Powder according to standard laboratory safety protocols for potent dissociative compounds. Wear appropriate PPE: nitrile gloves, safety goggles, and lab coat. Avoid inhalation of dust, skin contact, or ingestion. In case of exposure, rinse affected areas thoroughly with water and seek medical advice if irritation occurs. Store securely away from light, moisture, and unauthorized access. Exhibits potent NMDA antagonist activity—handle with extreme caution in research models due to possible dissociative, hallucinogenic, and motor-impairing effects.
Global Shipping and Discreet Delivery
We provide reliable global shipping for 3-HO-PCP Powder with discreet, plain packaging to protect privacy and ensure compliance. Orders placed before cutoff typically ship the same day. Tracking is available, with competitive rates and free shipping on qualifying bulk orders. Customers must verify the legal status of 3-HO-PCP in their jurisdiction prior to purchase.
Why Choose Us for 3-HO-PCP Powder
We differentiate ourselves by supplying lab-verified, high-purity 3-HO-PCP Powder at competitive prices. Researchers trust our fast discreet worldwide delivery, responsive technical support, secure transactions, and flexible wholesale quantities. Our commitment to consistent quality and support for legitimate scientific advancement makes us the preferred partner for dissociative and arylcyclohexylamine research chemicals.
Legal and Safety Disclaimer
3-HO-PCP Powder is sold strictly for research purposes only and is not intended for human or veterinary consumption. As an arylcyclohexylamine dissociative, it may fall under analogue laws or specific controlled substance regulations in many jurisdictions. Legal status varies by country and region; buyers are solely responsible for compliance with all local, national, and international regulations. We do not ship to prohibited destinations.
Frequently Asked Questions (FAQ)
What is 3-HO-PCP Powder? It is 3-Hydroxy-Phencyclidine, a potent arylcyclohexylamine dissociative research chemical used for laboratory studies of NMDA receptor antagonism and dissociative effects.
How does 3-HO-PCP differ from PCP? 3-HO-PCP has a hydroxy group at the 3-position of the phenyl ring, often resulting in altered potency and a more nuanced dissociative profile in research models compared to PCP.
What purity is guaranteed? ≥98% purity with full analytical certificates provided.
Is discreet shipping available? Yes — all packages use plain, unmarked materials for global discreet delivery.
Is 3-HO-PCP legal? Legality depends on your location. Always check current regulations before ordering, as arylcyclohexylamine dissociatives are often heavily restricted or controlled.
Optimize your dissociative and NMDA receptor research with premium 3-HO-PCP Powder. Contact our team today for bulk pricing, technical specifications, or custom inquiries. For scientific use only.




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