Hallucinogenic Therapy in Alzheimer's Disease targeting Mitochondria-Associated Membranes.
Fernando Minauro-Sanmiguel, Hector Vargas-Perez
Neuroscience April 6, 2026 DOI: 10.1016/j.neuroscience.2026.02.028 via PubMed
Summary
AI-generated from the abstractMitochondrial dysfunction is a key driver of Alzheimer's disease, fueling neuroinflammation, synaptic failure, and energy collapse. Emerging preclinical evidence suggests that classic hallucinogens like psilocybin, LSD, DMT, and mescaline may restore mitochondrial integrity by activating serotonin 2A and sigma-1 receptors. In experimental models, these pathways enhance mitochondrial biogenesis, reduce oxidative stress, and preserve ER-mitochondrial coupling. DMT and 5-MeO-DMT specifically engage sigma-1 receptors at mitochondria-associated membranes, improving calcium homeostasis and cellular resilience. However, evidence for clinical efficacy in Alzheimer's remains limited and largely preclinical. This framework is presented as a hypothesis-generating model, emphasizing that neuropsychiatric safety, patient selection, and translational feasibility must be carefully addressed.
Study at a glance
| Characteristics | Theoretical or philosophical paper Peer reviewed |
|---|---|
| Population | Preclinical models of Alzheimer's disease |
| Interventions | Psilocybin LSD DMT Mescaline 5-MeO-DMT |
| Topics | Neuroplasticity Serotonin |
| Keywords | Alzheimer’s disease Mitochondria Neuroinflammation Psychedelics |
| Key finding | Classic hallucinogens may restore mitochondrial integrity in Alzheimer's disease by activating 5-HT2A and sigma-1 receptors, but clinical evidence remains preclinical and hypothesis-generating. |
Abstract
Mitochondrial dysfunction is increasingly recognized as a central driver of Alzheimer's disease (AD), contributing to neuroinflammation, synaptic failure, and energy collapse.Emerging preclinical evidence suggests that classic hallucinogens, such as psilocybin, lysergic acid diethylamide (LSD), N,N-dimethyltryptamine (DMT), mescaline, may restore mitochondrial integrity by activating Serotonin 2A (5-HT2A) and sigma-1(Sig-1R) receptors. In experimental models, these pathways are associated with enhanced mitochondrial biogenesis, reduced oxidative stress, and preservation of ER-mitochondrial coupling. DMT and 5-methoxy-N,N-dimethyltryptamine (5-MeO-DMT) specifically engage Sig-1R at mitochondria-associated membranes, improving calcium homeostasis and cellular resilience. While these mechanisms are mechanistically compelling, evidence for clinical efficacy in AD remains limited and largely preclinical. Accordingly, this framework is presented as a hypothesis-generating model suggesting that mitochondrial-centered psychedelic mechanisms warrant further investigation,provided that neuropsychiatric safety, patient selection, and translational feasibility are carefully addressed.