Buy 5fur-144 CRYSTAL
Embark on an exploration into the realm of Buy 5fur-144 CRYSTAL, also known as XLR-11 or 5?-fluoro-UR-144, a potent agonist for cannabinoid receptors CB1 and CB2. Uncover the chemical intricacies, physiological effects, and the regulatory landscape surrounding this compound that has left its mark on the synthetic cannabinoid domain.
Chemical Symphony: 5fur-144 CRYSTAL, a derivative of 3-(tetramethylcyclopropylmethanoyl)indole, shares its lineage with compounds like UR-144, A-796,260, and A-834,735. While not explicitly listed alongside these in patent or scientific literature, it aligns with their structural traits. Despite not being part of Abbott Laboratories’ earlier creations, its potency, comparable to APICA and STS-135, is evident through its ability to produce rapid, short-lived hypothermic effects in rats.
Molecular Identity: Encapsulated by the formula C21H28FNO and a molar mass of 329.459 g·mol?1, Buy 5fur-144 CRYSTAL manifests as a chemical entity with distinctive properties. The forensically available standard and mass spectrum contribute to the analytical toolkit for researchers.
Effects and Risks: Beyond its pharmacological impact, XLR-11 has been associated with hospitalizations, highlighting its potential risks. Instances of acute kidney injury, often in conjunction with AM-2201, underscore the need for cautious exploration in research.
Legal Tapestry: Unravel the legal status of XLR-11, where it faced a ban in New Zealand, the United States, and various states including Florida and Arizona. Its inclusion in controlled substance schedules in China and the Czech Republic further emphasizes the global regulatory stance against its use.
Collateral Notables: Within the synthetic cannabinoid family, XLR-11 finds companionship with compounds like FAB-144, JWH-018, STS-135, UR-144, and XLR-12, contributing to the broader landscape of research and exploration.
As you venture into the enigmatic world of Buy 5fur-144 CRYSTAL, let the interplay of curiosity and caution guide your exploration. Unravel its chemical symphony, respect its potential risks, and navigate the intricate legal tapestry that shapes the boundaries of its research and application.
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