Skip to content

Components of Banisteriopsis caapi, a Plant Used in the Preparation of the Psychoactive Ayahuasca, Induce Anti-Inflammatory Effects in Microglial Cells

Beatriz Werneck Lopes Santos, Daniel C. Moreira, Tatiana Karla Dos Santos Borges, Eloísa Dutra Caldas

Molecules April 13, 2022 DOI: 10.3390/molecules27082500 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics In vitro study Peer reviewed
Population BV-2 microglial cells
Interventions harmine harmaline tetrahydroharmine
Duration 2-hour and 24-hour treatment periods
Topics Ayahuasca
Keywords Harmine Harmaline Pharmacology In vivo Proinflammatory cytokine Viability assay Anti-inflammatory In vitro Traditional medicine Biochemistry Inflammation Immunology Alkaloids
Citations 25
Key points Harmaline, tetrahydroharmine, and fraction F5 from Banisteriopsis caapi extract reduced proinflammatory cytokine production in BV-2 microglial cells.

Abstract

Banisteriopsis caapi is used to prepare the psychoactive beverage ayahuasca, and both have therapeutic potential for the treatment of many central nervous system (CNS) conditions. This study aimed to isolate new bioactive compounds from B. caapi extract and evaluate their biological activity, and that of the known β-carboline components of the plant (harmine, harmaline, and tetrahydroharmine), in BV-2 microglial cells, the in vivo activation of which is implicated in the physiopathology of CNS disorders. B. caapi extract was fractionated using semipreparative liquid chromatography (HPLC-DAD) and the exact masses ([M + H]+m/z) of the compounds in the 5 isolated fractions were determined by high-resolution LC-MS/MS: F1 (174.0918 and 233.1289), F2 (353.1722), F3 (304.3001), F4 (188.1081), and F5 (205.0785). Harmine (75.5–302 µM) significantly decreased cell viability after 2 h of treatment and increased the number of necrotic cells and production of reactive oxygen species at equal or lower concentrations after 24 h. F4 did not impact viability but was also cytotoxic after 24 h. Most treatments reduced proinflammatory cytokine production (IL-2, IL-6, IL-17, and/or TNF), especially harmaline and F5 at 2.5 µM and higher concentrations, tetrahydroharmine (9.3 µM and higher), and F5 (10.7 µM and higher). The results suggest that the compounds found in B. caapi extract have anti-inflammatory potential that could be explored for the development of treatments for neurodegenerative diseases.

Explore topics