Does Trema micranthum (L.) Blume Produce Cannabinoids?

Author:

Oliveira Gerlon de Almeida Ribeiro1ORCID,Estrada-Semprun Omar Enrique1ORCID,Arantes Luciano Chaves2ORCID,Rodrigues Patrícia Marques1ORCID,Ribeiro Rebekah Alves1,Fagg Christopher William3ORCID,Magalhães Pérola Oliveira1ORCID,Fonseca-Bazzo Yris Maria1ORCID,Silveira Damaris1ORCID

Affiliation:

1. Pharmacy Department, Health Sciences School, University of Brasília, Brasilia 70910-900, Brazil

2. Laboratory of Forensic Chemistry and Physics, Institute of Criminalistics, Civil Police of the Federal District, Brasilia 70610-907, Brazil

3. Department of Botany, Institute of Biological Sciences, University of Brasília, Brasilia 70910-900, Brazil

Abstract

There are inconclusive claims in the scientific literature that the species Trema micranthum, widely distributed throughout the Brazilian territory, may produce phytocannabinoids, potentially serving as an alternative to Cannabis sativa. In this study, we conducted a comprehensive investigation to assess the presence of phytocannabinoids in two Trema micranthum samples collected in the Midwest region of Brazil. In trying to detect cannabinoids in T. micranthum, a recommended cannabis screening test was employed, the Fast Blue BB Salt (FBBBS) colorimetric assay, followed by thin-layer chromatography (TLC) and instrumental techniques: high-performance liquid chromatography coupled to diode array detector (HPLC-DAD) and gas chromatography coupled to mass spectrometry (GC-MS). When employed without chloroform extraction, the FBBBS reagent yielded positive results for extracts from all parts of T. micranthum (leaves, branches, fruits, and inflorescences). However, these initial positive results from the FBBBS test, suggesting the presence of cannabinoids, were not corroborated by FBBBS followed by chloroform extraction, TLC, or the instrumental techniques used in this study. These additional outcomes suggest that the positive FBBBS test results were likely due to the presence of other phenolic compounds rather than phytocannabinoids. For example, the presence of vitexin-like compounds in T. micranthum extracts might explain the positive FBBBS test results. Therefore, new assertions that T. micranthum produces cannabinoids will require the support of more selective experiments to avoid false-positive claims based on less selective screening tests.

Funder

Brazilian Federal Agency

National Council

Federal District Foundation

University of Brasilia

Institute of Criminalistics of the Civil Police of the Federal District of Brazil

Publisher

MDPI AG

Reference43 articles.

1. Cannabinoids;Slikker;Advances in Neurotoxicology,2022

2. An Introduction to the Endogenous Cannabinoid System;Lu;Biol. Psychiatry,2016

3. Cannabis and cannabinoids: Pharmacology and therapeutic potential;Neurol Neurochir. Pol.,2022

4. UN (1999). Single convention on narcotic drugs, 1961. Done at New York on 30 March 1961. Treaty Series 1566, United Nations Office of Legal Affairs. Number 7515.

5. UN (2021). The International Drug Control Conventions Schedules of the Single Convention on Narcotic Drugs of 1961 as Amended by the 1972 Protocol, as at 22 January 2021, United Nations.

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