Molecular design of a therapeutic LSD analogue with reduced hallucinogenic potential
Jeremy R Tuck, Lee E Dunlap, Yara A Khatib, Cassandra J Hatzipantelis, Sammy Weiser Novak, Rachel M Rahn, Alexis R Davis, Adam Mosswood, Anna M M Vernier, Ethan M Fenton, Isak K Aarrestad, Robert J Tombari, Samuel J Carter, Zachary Deane, Yuning Wang, Arlo Sheridan, Monica A Gonzalez, Arabo A Avanes, Noel A Powell, Milan Chytil, Sharon Engel, James C Fettinger, Amaya R Jenkins, William A Carlezon, Alex S Nord, Brian D Kangas, Kurt Rasmussen, Conor Liston, Uri Manor, David E Olson
Proceedings of the National Academy of Sciences April 14, 2025 DOI: 10.1073/pnas.2416106122 via OpenAlex
Summary
AI-generated from the abstractA newly designed compound, (+)-JRT, structurally similar to LSD but with reduced hallucinogenic effects, promotes the growth of dendritic spines in the cortex—a process that is diminished in neuropsychiatric diseases such as depression, addiction, and schizophrenia. In behavioral tests, (+)-JRT showed antidepressant-like and cognition-enhancing effects without worsening signs related to psychosis. This suggests that nonhallucinogenic compounds that promote neuroplasticity could be safer alternatives to psychedelics for treating conditions where psychedelics pose risks.
Study at a glance
| Characteristics | Preclinical study Peer reviewed |
|---|---|
| Population | Rodents (rats and/or mice, implied by behavioral assays) |
| Intervention | (+)-JRT |
| Topics | LSD Neuroplasticity |
| Keywords | Neuropsychiatric disease Nonhallucinogenic Psychedelics hallucinogens |
| Citations | 32 |
| Key finding | The nonhallucinogenic LSD analogue (+)-JRT promotes cortical spinogenesis and produces therapeutic effects in behavioral assays relevant to depression and cognition without exacerbating psychosis-related signatures. |
Abstract
Decreased dendritic spine density in the cortex is a key pathological feature of neuropsychiatric diseases including depression, addiction, and schizophrenia (SCZ). Psychedelics possess a remarkable ability to promote cortical neuron growth and increase spine density; however, these compounds are contraindicated for patients with SCZ or a family history of psychosis. Here, we report the molecular design and de novo total synthesis of (+)-JRT, a structural analogue of lysergic acid diethylamide (LSD) with lower hallucinogenic potential and potent neuroplasticity-promoting properties. In addition to promoting spinogenesis in the cortex, (+)-JRT produces therapeutic effects in behavioral assays relevant to depression and cognition without exacerbating behavioral and gene expression signatures relevant to psychosis. This work underscores the potential of nonhallucinogenic psychoplastogens for treating diseases where the use of psychedelics presents significant safety concerns.