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基于大麻环醇类似物的大麻色烯消旋化和绝对立体化学

Cannabichromene Racemization and Absolute Stereochemistry Based on a Cannabicyclol Analog.

作者信息

Agua Alon R, Barr Philip J, Marlowe Charles K, Pirrung Michael C

机构信息

Department of Chemistry, University of California, Riverside, California 92521, United States.

BayMedica, 458 Carlton Court, South San Francisco, California 94080, United States.

出版信息

J Org Chem. 2021 Jun 18;86(12):8036-8040. doi: 10.1021/acs.joc.1c00451. Epub 2021 Jun 2.

Abstract

Cannabichromene (CBC) is unusual among cannabinoids in having been described as both a racemic and a scalemic compound from natural sources. Several explanations are available for this circumstance, including facile racemization. Cannabichromene was resolved chromatographically, and the enantiomer matching CBC from local was identified. To preclude racemization, CBC was converted to cannabicyclol for further stereochemical analysis. This permitted the () absolute stereochemistry to be assigned to natural CBC based on chiroptical data for related natural products and the absolute configuration of a cannabicyclol analog determined by X-ray crystallography. The racemization of CBC was found to be rather slow in the laboratory, but handling practices for natural cannabis products can be inferred to promote the process.

摘要

大麻色烯(CBC)在大麻素中较为特殊,因为它被描述为一种既可以从天然来源获得外消旋体又可以获得非外消旋体的化合物。对于这种情况有几种解释,包括容易发生消旋化。大麻色烯通过色谱法拆分,并鉴定出与当地来源的CBC相匹配的对映体。为了防止消旋化,将CBC转化为大麻二环醇以进行进一步的立体化学分析。基于相关天然产物的手性光学数据以及通过X射线晶体学确定的大麻二环醇类似物的绝对构型,这使得能够确定天然CBC的()绝对立体化学。在实验室中发现CBC的消旋化相当缓慢,但可以推断天然大麻产品的处理方式会促进这一过程。

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