Ketamine-dependent patients with persistent psychosis have higher neurofilament light chain levels than patients with schizophrenia.
An-Nie Chung, Ming-Chyi Huang, Tung-Hsia Liu, Hu-Ming Chang, Po-Yu Chen, Yu-Li Liu, Francesco Bavato
Asian Journal of Psychiatry October 1, 2024 DOI: 10.1016/j.ajp.2024.104167 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Cross-sectional study Peer reviewed |
|---|---|
| Sample size | 181 |
| Population | Treatment-seeking ketamine-dependent patients, medication-free patients with schizophrenia, and healthy controls |
| Topics | Esketamine Ketamine |
| Keywords | Ketamine dependence Ketamine psychosis Neurofilament light chain Persistent psychosis Schizophrenia Ketamine addiction K addiction Nfl |
| Citations | 5 |
| Key findings | Ketamine-dependent patients with persistent psychosis had the highest blood NFL levels, significantly exceeding those in ketamine-dependent patients without persistent psychosis, schizophrenia patients, and healthy controls. |
Abstract
Ketamine can induce persisting psychosis in a subset of individuals who use it chronically and heavily. Previously, we found that the psychopathology and cognitive impairments in patients with ketamine dependence (KD) exhibiting persistent psychosis (KPP) bear resemblances with schizophrenia, albeit with less severity in those with no persistent psychosis (KNP). Furthermore, we also showed that patients with KD had higher blood levels of neurofilament light chain (NFL), a biomarker for neuroaxonal injury, compared to healthy controls. In this study, we aimed to investigate the differences in NFL levels between patients with KPP and KNP while comparing the levels of individuals with schizophrenia and healthy controls. We enrolled 64 treatment-seeking ketamine-dependent patients (53 with KNP and 11 with KPP), 37 medication-free patients with schizophrenia, and 80 healthy controls. Blood NFL levels were measured by single molecule array immunoassay. NFL levels were highest in the KPP subgroup, followed by the KNP subgroup, and then the schizophrenia and control groups (mean ± SD: 24.5 ± 24.7, 12.9 ± 10.9, 9.2 ± 12.2, and 6.2 ± 2.2 pg/mL, respectively), with no significant difference observed between the schizophrenia and control groups. We found that KD is associated with higher NFL levels compared to schizophrenia, with the KPP subgroup showing the most consistent alterations. The observation of accentuated neuroaxonal pathology in individuals with KPP implies that this clinical manifestation is associated with a specific neurobiological phenotype, despite prior evidence suggesting syndromal similarity between schizophrenia and KPP.