What Chemsex does to the brain - neural correlates (ERP) regarding decision making, impulsivity and hypersexuality.
Johanna Schwarz, Marcus Gertzen, Andrea Rabenstein, Moritz Straßburger, Alana Horstmann, Oliver Pogarell, Tobias Rüther, Susanne Karch
European archives of psychiatry and clinical neuroscience February 1, 2025 DOI: 10.1007/s00406-024-01856-2 via PubMed
Summary
AI-generated from the abstractChemsex users—men who have sex with men who use substances like methamphetamine, GHB, mephedrone, or ketamine to enhance sex—show more depression, hypersexuality, and sexual risk behavior than non-users. Their brain activity during a decision-making task revealed reduced N2 responses in fronto-central regions, indicating impaired executive function and inhibitory control. P3 amplitudes did not differ between groups. These deficits may contribute to greater risk of drug abuse and hypersexuality, and understanding them could inform interventions to reduce harm and improve well-being.
Study at a glance
| Characteristics | Observational cohort with EEG paradigm Peer reviewed |
|---|---|
| Sample size | 29 |
| Population | Men who have sex with men, including 15 Chemsex users and 14 matched controls |
| Keywords | Chemsex Executive functions Hypersexuality Inhibition Neurophysiological correlates |
| Citations | 14 |
| Key finding | Chemsex users exhibited decreased N2 responses in fronto-central brain regions during decision-making, indicating compromised executive function and inhibitory control, while P3 amplitudes did not differ significantly between groups. |
Abstract
Chemsex describes the use of specific substances (methamphetamine, GHB/GBL, mephedrone, ketamine) which initiate or enhance sexual experiences and is mainly prevalent among men who have sex with men. Many Chemsex users experience somatic complications (for example sexually transmitted diseases) and sometimes adverse sociological, psychological, and neurological symptoms, such as depression, impulse control disorders or hypersexuality. Changes in impulsivity and deficits in executive functions have demonstrated to be associated with addiction and impulse control disorders as well as frontal brain dysfunction and behavioral control deficits. This study aims to explore the effects of neurophysiological correlates of inhibition and decision making in Chemsex users with an EEG paradigm using event-related potentials (N2, P3). 15 Chemsex users and 14 matched control subjects, all of them men who have sex with man, participated in an auditory Go/NoGo/Voluntary Selection EEG paradigm. In addition, clinical data (e.g. regarding depression), demographic information as well as measures of well-being and sexual behavior were collected. The results demonstrated that clinical symptoms, hypersexuality, and sexual risk behavior were more pronounced in Chemsex users compared to non-users. P3 amplitudes did not differ significantly between groups. However, the Chemsex users showed decreased electrophysiological N2 responses in fronto-central brain regions during decision-making, indicating compromised executive function and inhibitory control. The observed impairments may lead to increased risk behavior regarding drug abuse and hypersexuality. Understanding the neurobiological mechanisms can contribute to targeted interventions in order to mitigate the negative consequences of engaging in Chemsex and improve general well-being.