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Potential impact of the sewer system on the applicability of alcohol and tobacco biomarkers in wastewater‐based epidemiology

doi: 10.1002/dta.2246
pmid: 28688172
AbstractUnderstanding the actual consumption of alcohol and tobacco in the population is important for forming public health policy. For this purpose, wastewater‐based epidemiology has been applied as a complementary method to estimate the overall alcohol and tobacco consumption in different communities. However, the stability of their consumption biomarkers – ethyl sulfate, ethyl glucuronide, cotinine, and trans‐3′‐hydroxycotinine – in the sewer system has not yet been assessed. This study aimed to conduct such assessment using sewer reactors mimicking conditions of rising main, gravity sewer, and wastewater alone, over a 12‐hour period. The results show that cotinine and trans‐3′‐hydroxycotinine are relatively stable under all sewer conditions while ethyl sulfate was only stable in wastewater alone and gradually degraded in rising main and gravity sewer conditions. Ethyl glucuronide quickly degraded in all reactors. These findings suggest that cotinine and trans‐3′‐hydroxycotinine are good biomarkers to estimate tobacco consumption; ethyl sulfate may be used as a biomarker to estimate alcohol consumption, but its in‐sewer loss should be accounted for in the calculation of consumption estimates. Ethyl glucuronide, and probably most of glucuronide compounds, are not suitable biomarkers to be used in wastewater‐based epidemiology due to their in‐sewer instability.
- University of Queensland Australia
- University of Queensland Australia
- University of Queensland Australia
- Queensland Government Australia
- University of Antwerp Belgium
Nicotiana, Alcohol Drinking, 3003 Pharmaceutical Science, Sewer biofilms, 1607 Spectroscopy, 610, Glucuronates, wastewater analysis, Sulfuric Acid Esters, Wastewater, 310, Degradation, Tobacco Use, Sewer reactor, sewer reactor, Humans, Cotinine, degradation, 1602 Analytical Chemistry, Ethanol, Sewage, Wastewater analysis, 600, stability, sewer biofilms, 2304 Environmental Chemistry, Stability, Biomarkers, Water Pollutants, Chemical
Nicotiana, Alcohol Drinking, 3003 Pharmaceutical Science, Sewer biofilms, 1607 Spectroscopy, 610, Glucuronates, wastewater analysis, Sulfuric Acid Esters, Wastewater, 310, Degradation, Tobacco Use, Sewer reactor, sewer reactor, Humans, Cotinine, degradation, 1602 Analytical Chemistry, Ethanol, Sewage, Wastewater analysis, 600, stability, sewer biofilms, 2304 Environmental Chemistry, Stability, Biomarkers, Water Pollutants, Chemical
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