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Buy PURE HU-210 powder online From a trusted vendor

    Buy PURE HU-210 powder online From a trusted vendor HU-210 is a synthetic cannabinoid that was first synthesized in 1988 from (1R,5S)-myrtenol  by a group led by Raphael Mechoulam at the Hebrew University. HU-210 is 100 to 800 times more potent than natural THC from cannabis and has an extended duration of action. It is usually referred to as a  research chemicals  by most laboratories  HU-210 has a binding affinity of 0.061nM at CB1 and 0.52nM at CB2 in cloned human cannabinoid receptors.  Buy HU-210 powder online Compared to Delta-9-THC of 40.7nM at CB1. HU-210 is the (–)-1,1-dimethylheptyl analog of 11-hydroxy- Δ8- tetrahydrocannabinol; in some references it is called 1,1-dimethylheptyl- 11-hydroxytetrahydrocannabinol. The abbreviation "HU" stands for Hebrew University. HU-210, the (–) enantiomer of 11-OH-D8-THC-DMH, has almost all of the cannabinoid activity, while the (+) enantiomer, known as HU-211, is inactive as a cannabinoid and instead acts as an NMDA antagonist

Buy Research Chemicals online

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  Buy Research Chemicals A research chemical substance , or chemical product (sometimes called a pure substance ), is any sample of matter of defined chemical composition and exhibiting characteristic properties ( color , odor , density , melting point ,  etc. ), regardless of its origin. There are a lot of suppliers online you can  buy research chemicals  from  It is not always easy to give a precise definition of a chemical substance. In general, this concept refers to a product manufactured ( synthesized ) by humans (not existing in nature or copying molecules existing in nature). For the standardized administrative vocabulary of France and the European Union  : “chemical substances” designate “chemical elements and their compounds as they occur in their natural state or as they are obtained by any production process” 1  ; the word “preparation” designates “mixtures or solutions composed of two or more substances Number of different chemicals, and tonnages produced The quantity of t