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Rat Cannabinoid

Updated: 2026-07-21

Overview

Rat cannabinoids are specialized compounds designed to interact with the endocannabinoid system in laboratory rats, mimicking the effects of natural cannabinoids like THC or CBD. These synthetic analogs are critical tools in preclinical research, enabling scientists to study receptor mechanisms, neuroprotection, and behavioral responses. Common examples include WIN 55,212-2, CP 55,940, and HU-210, each with distinct receptor affinities. Their use is tightly regulated due to their psychoactive potential, requiring institutional approvals and controlled handling protocols.

Physical and Chemical Properties

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Rat cannabinoids are typically lipophilic compounds with low water solubility, necessitating dissolution in solvents like DMSO for laboratory use. Their stability varies; some degrade under light or heat, emphasizing the need for proper storage. Molecular weights and structures differ by compound. For instance, WIN 55,212-2 has a molecular formula of C38H38N2O3 and binds non-selectively to CB1 and CB2 receptors. Such properties dictate their experimental applications, from in vitro assays to in vivo behavioral studies.

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Main Applications

These compounds are primarily used in neuroscience to map the endocannabinoid system's role in pain, memory, and addiction. For example, WIN 55,212-2 is employed in models of neuropathic pain, while HU-210 is studied for its neuroprotective effects. Pharmaceutical companies also utilize rat cannabinoids to screen potential therapeutics targeting cannabinoid receptors. Their ability to modulate appetite, anxiety, and motor control makes them valuable for developing treatments for conditions like epilepsy or multiple sclerosis.

Safety and Storage

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Due to their psychoactive nature, rat cannabinoids require strict handling under fume hoods with personal protective equipment (PPE). Spills must be neutralized with absorbent materials and disposed of as hazardous waste. Long-term stability is ensured by storage at -20°C in amber vials with desiccants. Researchers must adhere to institutional biosafety guidelines and local drug enforcement regulations to prevent unauthorized use or diversion.

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B2B Procurement Guide

Buyers should prioritize suppliers with ISO certifications and detailed product documentation, including HPLC purity reports and solubility data. Bulk purchases may qualify for discounts, but verify cold-chain shipping options for temperature-sensitive compounds. Legal compliance is paramount; ensure vendors provide export licenses for international shipments. Some compounds may require DEA or equivalent approvals, so consult legal teams before procurement.

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