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Psychedelic N,N-dimethyltryptamine and 5-methoxy-N,N-dimethyltryptamine modulate innate and adaptive inflammatory responses through the sigma-1 receptor of human monocyte-derived dendritic cells.

Attila Szabo, Attila Kovács, Ede Frecska, Éva Rajnavölgyi

PloS one January 1, 2014 DOI: 10.1371/journal.pone.0106533 via PubMed

Summary

AI-generated from the abstract

The sigma-1 receptor, a protein found in the central nervous system and immune cells, can be activated by the psychedelic compounds N,N-dimethyltryptamine (NN-DMT) and 5-methoxy-N,N-dimethyltryptamine (5-MeO-DMT) to dampen inflammatory responses in human immune cells. When human dendritic cells were exposed to inflammatory triggers along with these compounds, production of pro-inflammatory cytokines IL-1β, IL-6, TNFα, and chemokine IL-8 decreased, while the anti-inflammatory cytokine IL-10 increased. The compounds also reduced the cells' ability to activate inflammatory T-cells. This suggests dimethyltryptamines may act as endogenous regulators of inflammation and immune balance, pointing toward potential treatments for autoimmune and chronic inflammatory conditions.

Study at a glance

Characteristics In vitro study Peer reviewed
Population Human primary monocyte-derived dendritic cells
Interventions N N-dimethyltryptamine (NN-DMT) 5-methoxy-N N-dimethyltryptamine (5-MeO-DMT) PRE-084 hydrochloride
Topics 5-MeO-DMT
Keywords Psychedelic Compounds DMT 5-Methoxy-DMT These compounds These molecules
Citations 191
Key finding NN-DMT and 5-MeO-DMT inhibit pro-inflammatory cytokine production and T-cell activation in human dendritic cells via the sigma-1 receptor, demonstrating immunomodulatory potential.

Abstract

The orphan receptor sigma-1 (sigmar-1) is a transmembrane chaperone protein expressed in both the central nervous system and in immune cells. It has been shown to regulate neuronal differentiation and cell survival, and mediates anti-inflammatory responses and immunosuppression in murine in vivo models. Since the details of these findings have not been elucidated so far, we studied the effects of the endogenous sigmar-1 ligands N,N-dimethyltryptamine (NN-DMT), its derivative 5-methoxy-N,N-dimethyltryptamine (5-MeO-DMT) and the synthetic high affinity sigmar-1 agonist PRE-084 hydrochloride on human primary monocyte-derived dendritic cell (moDCs) activation provoked by LPS, polyI:C or pathogen-derived stimuli to induce inflammatory responses. Co-treatment of moDC with these activators and sigma-1 receptor ligands inhibited the production of pro-inflammatory cytokines IL-1β, IL-6, TNFα and the chemokine IL-8, while increased the secretion of the anti-inflammatory cytokine IL-10. The T-cell activating capacity of moDCs was also inhibited, and dimethyltryptamines used in combination with E. coli or influenza virus as stimulators decreased the differentiation of moDC-induced Th1 and Th17 inflammatory effector T-cells in a sigmar-1 specific manner as confirmed by gene silencing. Here we demonstrate for the first time the immunomodulatory potential of NN-DMT and 5-MeO-DMT on human moDC functions via sigmar-1 that could be harnessed for the pharmacological treatment of autoimmune diseases and chronic inflammatory conditions of the CNS or peripheral tissues. Our findings also point out a new biological role for dimethyltryptamines, which may act as systemic endogenous regulators of inflammation and immune homeostasis through the sigma-1 receptor.

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