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R-MDDMA is a Safer Analogue of MDMA with Therapeutic Potential.

Maxemiliano V Vargas, Cassandra J Hatzipantelis, Lee E Dunlap, Robert J Tombari, Arabo A Avanes, Sam Vaillancourt, Pierre Llorach, Juliana S Salgado, Boris D Heifets, David E Olson

ACS chemical neuroscience May 6, 2026 DOI: 10.1021/acschemneuro.5c00891 via PubMed

Summary

AI-generated from the abstract

A safer analogue of MDMA, called R-MDDMA, shows promise for treating PTSD and depression without the abuse potential of MDMA. Unlike MDMA, R-MDDMA does not activate 5-HT2B receptors, induce serotonin release, cause head-twitch responses, affect body temperature, or increase locomotion at therapeutic doses. However, it still promotes structural neuroplasticity in cortical neurons, facilitates fear extinction learning, and produces sustained antidepressant-like effects. These results suggest that R-MDDMA might be a safer MDMA analogue with similar therapeutic properties.

Study at a glance

Characteristics Preclinical study Peer reviewed
Population Rats (implied)
Interventions R-MDDMA MDMA enantiomers MDDMA
Topics Depression MDMA PTSD
Keywords Mddma Entactogen
Key finding R-MDDMA promotes neuroplasticity, fear extinction learning, and antidepressant-like effects without the abuse-related effects of MDMA.

Abstract

Recent clinical evidence suggests that racemic 3,4-methylenedioxymethamphetamine (MDMA) might be useful for treating a range of neuropsychiatric diseases including post-traumatic stress disorder (PTSD) and depression. However, concerns about its abuse potential stemming from its monoamine releasing properties have hampered its clinical development. Thus, safer analogues of racemic MDMA with comparable therapeutic effects are highly desirable. Here, we compare the pharmacological effects of MDMA enantiomers with those of its methylated analogue 3,4-methylenedioxy-N,N-dimethylamphetamine (MDDMA). We found that R-MDDMA did not directly activate 5-HT2B receptors, induce serotonin efflux, produce a head-twitch response, impact body temperature, or induce hyperlocomotion at therapeutically relevant doses. However, it still promoted structural neuroplasticity in cortical neurons, facilitated fear extinction learning, and produced sustained antidepressant-like effects. Taken together, our results suggest that R-MDDMA might be a safer MDMA analogue with similar therapeutic properties.

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