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Reaction of N,N‑Dimethyltryptamine with Dichloromethane Under Common Experimental Conditions

Lee E. Dunlap, David E. Olson

ACS Omega May 7, 2018 DOI: 10.1021/acsomega.8b00507 via DOAJ

Summary

AI-generated from the abstract

The quaternary ammonium salt byproduct forms at an exceedingly slow rate when DMT is exposed to dichloromethane (DCM), only accumulating significantly after prolonged contact. The byproduct is readily extracted into water. DMT can be exposed to DCM for less than 30 minutes with minimal risk of degradation, and the byproduct is not observed after aqueous extraction. Alternative solvents should be used for longer contact times. These findings have implications for preparing pharmaceuticals with the DMT structural core in high yields and purities.

Study at a glance

Characteristics Experimental study Peer reviewed
Citations 15
Key finding The quaternary ammonium salt byproduct forms slowly and is removed by aqueous extraction, so DMT can be safely exposed to DCM for short periods (<30 min) without significant degradation.

Abstract

-dimethyltryptamine (DMT) structural core. Previous reports have described the reaction of this motif with dichloromethane (DCM), a common laboratory solvent used during extraction and purification, leading to the formation of an undesired quaternary ammonium salt byproduct. However, the kinetics of this reaction under various conditions have not been thoroughly described. Here, we report a series of experiments designed to simulate the exposure of DMT to DCM that would take place during extraction from plant material, biphasic aqueous work-up, or column chromatography purification. We find that the quaternary ammonium salt byproduct forms at an exceedingly slow rate, only accumulates to a significant extent upon prolonged exposure of DMT to DCM, and is readily extracted into water. Our results suggest that DMT can be exposed to DCM under conditions where contact times are limited (<30 min) with minimal risk of degradation and that this byproduct is not observed following aqueous extraction. However, alternative solvents should be considered when the experimental conditions require longer contact times. Our work has important implications for preparing a wide-range of pharmaceuticals bearing the DMT structural motif in high yields and purities.

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