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Ketamine, a new (or old) kid on the block: A comprehensive three-year spatio-temporal study in Belgium through wastewater-based epidemiology.

Natan Van Wichelen, Tim Boogaerts, Maarten Quireyns, Rania Dermitzaki, Peter Delputte, Noor Ul Hudda, Naomi De Roeck, Bavo Verhaegen, Koenraad Van Hoorde, Hadrien Maloux, Veronik Hutse, Celine Gys, Adrian Covaci, Alexander L N van Nuijs

Water research May 15, 2025 DOI: 10.1016/j.watres.2025.123269 via PubMed

Summary

AI-generated from the abstract

Ketamine use is widespread across northern Belgium, with consumption levels 7 to 11 times higher in 2023 than in 2012. Analysis of wastewater from 26 locations in Flanders and Brussels detected ketamine in 98% of samples, its metabolite norketamine in 96%, and dehydronorketamine in 76%. Higher population-normalized mass loads appeared in major cities and eastern Flanders. Weekend consumption increased, suggesting recreational use, while no seasonal trends were observed. By examining the ratio of ketamine to norketamine, researchers distinguished actual consumption from direct disposal. The findings indicate a stable, year-round pattern of ketamine use, and future monitoring should measure both parent drug and metabolite to avoid misinterpreting dumping events.

Study at a glance

Characteristics Observational cohort Peer reviewed
Sample size 716
Population Influent wastewater from 26 locations across northern Belgium (Flanders and Brussels region)
Duration 2021-2023, with daily samples from Leuven and Brussels in 2021-2022 and twice-weekly samples from 26 locations in 2023
Topics Ketamine
Keywords Dumping events Influent wastewater Norketamine Parent-to-metabolite p:m ratio Spatio-temporal trends
Citations 4
Key finding Ketamine consumption in northern Belgium increased 7- to 11-fold from 2012 to 2023, with widespread use in urban and rural areas and higher weekend loads indicating recreational use.

Abstract

Based on reports of ketamine seizures, self-reported consumption and harmful associated health effects, there are signs of increased ketamine use. However, monitoring population-level consumption patterns remains difficult. This study employed wastewater-based epidemiology (WBE) to address this challenge by analysing influent wastewater (IWW) from Belgium for biomarkers of ketamine consumption to evaluate spatio-temporal trends. Daily 24-h composite IWW samples were collected from 26 locations across the northern part of Belgium (Flanders and Brussels region), every Monday and Wednesday in 2023 (n = 716). Additionally, a temporal dataset from daily IWW samples from Leuven (n = 399) and Brussels (n = 285) in 2021 and 2022 was evaluated using time series analysis. Measured concentrations of ketamine, norketamine and dehydronorketamine in IWW were transformed to population-normalised mass loads (PNML, expressed in mg/day/1000 inhabitants) to assess ketamine consumption patterns. Ketamine, norketamine and dehydronorketamine were detected in respectively 98%, 96%, and 76% of all samples. Substantial consumption was observed in both urban and rural areas, with higher PNMLs in major cities and the east of Flanders. Temporal analysis showed no seasonal trends but an increase in weekend consumption, likely linked to recreational use. PNMLs increased 7- to 11-fold compared to available data in 2012. Actual consumption and direct disposal down the drain could be differentiated by the investigation of the ketamine to norketamine ratio. Ketamine use is widespread across the north of Belgium, encompassing a relatively stable, year-round consumption. In future WBE studies, it is recommended to measure both norketamine and ketamine to assess ketamine consumption and to rule out any dumping events.

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