Psychedelics in developmental stuttering to modulate brain functioning: a new therapeutic perspective?
Giuseppe Pasculli, Pierpaolo Busan, Eric S. Jackson, Per A. Alm, Danilo De Gregorio, Gerald A. Maguire, Guy M. Goodwin, Gabriella Gobbi, David Erritzøe, Robin L. Carhart-Harris
Front Hum Neurosci June 19, 2024 DOI: 10.3389/fnhum.2024.1402549 via PubMed Central
Summary
AI-generated from the abstractDevelopmental stuttering involves speech-motor disruptions linked to metabolic and network anomalies in the brain, particularly in the default mode and social-cognitive networks. These networks also influence social anxiety and avoidance, which often accompany persistent stuttering. Psychedelic compounds can modify brain metabolism and connectivity in these networks and have shown clinical benefits for conditions like depression and PTSD that share features such as rumination and social anxiety. Although no controlled trials have been conducted, anecdotal reports suggest psychedelics might alleviate stuttering and its associated symptoms. The authors argue that psychedelics warrant investigation in randomized clinical trials for developmental stuttering.
Study at a glance
| Characteristics | Review Randomized Peer reviewed |
|---|---|
| Topics | Neuroplasticity |
| Keywords | Psychedelics Speech disorders Neuroscience Stuttering therapy |
| Citations | 5 |
| Key finding | Psychedelic compounds may have therapeutic potential for developmental stuttering by modifying brain metabolic and default mode/social-cognitive network anomalies that underlie the disorder and its associated social anxiety. |
Abstract
Developmental stuttering (DS) is a neurodevelopmental speech-motor disorder characterized by symptoms such as blocks, repetitions, and prolongations. Persistent DS often has a significant negative impact on quality of life, and interventions for it have limited efficacy. Herein, we briefly review existing research on the neurophysiological underpinnings of DS -specifically, brain metabolic and default mode/social-cognitive networks (DMN/SCN) anomalies- arguing that psychedelic compounds might be considered and investigated (e.g., in randomized clinical trials) for treatment of DS. The neural background of DS is likely to be heterogeneous, and some contribution from genetically determinants of metabolic deficiencies in the basal ganglia and speech-motor cortical regions are thought to play a role in appearance of DS symptoms, which possibly results in a cascade of events contributing to impairments in speech-motor execution. In persistent DS, the difficulties of speech are often linked to a series of associated aspects such as social anxiety and social avoidance. In this context, the SCN and DMN (also influencing a series of fronto-parietal, somato-motor, and attentional networks) may have a role in worsening dysfluencies. Interestingly, brain metabolism and SCN/DMN connectivity can be modified by psychedelics, which have been shown to improve clinical evidence of some psychiatric conditions (e.g., depression, post-traumatic stress disorder, etc.) associated with psychological constructs such as rumination and social anxiety, which also tend to be present in persistent DS. To date, while there have been no controlled trials on the effects of psychedelics in DS, anecdotal evidence suggests that these agents may have beneficial effects on stuttering and its associated characteristics. We suggest that psychedelics warrant investigation in DS.